Tuesday, May 9, 2017

Comcast and Charter to explore national wireless market cooperation

Regional cable operators Comcast and Charter have announced an agreement to explore potential opportunities for operational cooperation in their respective wireless businesses to help accelerate and enhance each company's ability to address the national wireless marketplace.

Under the agreement, the companies, which have each separately established mobile virtual network operator (MVNO) reseller agreements with Verizon Wireless, will explore cooperation in a number of potential operational areas in the wireless space, including: creating common operating platforms; technical standards development and harmonisation; device forward and reverse logistics; and emerging wireless technology platforms.

The efficiencies created are intended to help deliver greater choice, new products and competitive prices for customers across their respective service footprints. In addition, Comcast and Charter have agreed to work only with each other with respect to national mobile network operators through potential commercial arrangements, including MVNOs and other transactions in the wireless industry, for a period of one year.

Regarding the agreement, Brian L. Roberts, chairman and CEO of Comcast, said, "(Comcast) is launching Xfinity Mobile in the coming weeks and… (will) work with Charter to explore ways it can make the respective wireless initiatives more efficient and cost effective… both companies have regional wireless businesses using the same 4G LTE network, and by working together the goal is to create better experiences for our customers".


* Comcast recently reported that as part of the FCC's Broadcast Incentive Auction, in the reverse auction its broadcasting operation NBC sold spectrum in New York, Philadelphia and Chicago for total proceeds of $481.6 million, while it purchased for $1.7 billion spectrum covering 88% of its service footprint and most of the footprint of its top 25 markets.

* Comcast serves nearly 29 million residential and business customers including over 23 million residential Internet and 10.5 million residential voice subscribers. Charter is the second largest U.S. cable operator, serving nearly 22 million residential broadband Internet customers and nearly 10.5 million residential voice customers.

Verizon selects Prysmian to supply optical cable under $300m 3-year agreement

Italy-based Prysmian Group, a major supplier of cable systems to the energy and telecom industries, announced has been awarded a supply agreement by Verizon Communications to support its U.S. network expansion.

The three-year contract is valued at approximately $300 million and will include the supply of more than 17 million fibre km (10.6 million miles) of ribbon and loose tube cables. To support this contract, as well as demand from other carriers, Prysmian plans to make a significant investment through 2018 in its U.S.-based optical cable operation. Prysmian's telecom division has been qualified as a provider of fibre, optical cable and connectivity solutions to Verizon for over a decade.

Prysmian noted that Verizon is expanding its infrastructure based on a next-generation fibre platform designed to support the deployment of 5G services, as well as enhance 4G LTE and other broadband capacity.

Prysmian added that Verizon believes demand for next-generation PON (NGPON2) technology will extend well beyond 2020 as new technologies such as 5G and the IoT experience increasing adoption.

Prysmian has an established manufacturing base in the U.S. for optical fibre and cable for a range of applications, with three telecom production sites, including two for the production of optical cable and one for optical fibre.



  • In April, Verizon announced a three-year minimum purchase agreement with Corning for the provision of fibre optic cable and associated hardware equipment to ensure coverage and capacity for its nationwide wireless broadband network. Under the agreement, Verizon is to purchase from Corning up to 20 million km (12.4 million miles) of optical fibre in each of the three years from 2018 to 2020, with a minimum purchase commitment of $1.05 billion.


CenturyLink Completes Sale of 57 Data Centers

CenturyLink completed its previously announced sale of its data centers and colocation business on May 1 to funds advised by BC Partners, in a consortium including Medina Capital Advisors and Longview Asset Management. The deal was valued at $1.86 billion. Cyxtera assumes ownership of CenturyLink's portfolio of 57 data centers which includes approximately 195 megawatts of power across 2.6 million square feet of raised floor capacity. Approximately 700 CenturyLink employees will transition to Cyxtera.

"This sale allows CenturyLink to drive greater focus on our network infrastructure while still having the ability to sell colocation services in these data centers," said Glen F. Post III, chief executive officer and president of CenturyLink. "CenturyLink provides reliable and secure network solutions that are critical to the success of businesses which increasingly rely on digital connections to help ensure the growth and success of their operations. Additionally, our hosting and cloud services, combined with our robust IT services and solutions, offer customers an impressive suite of complementary services."

http://www.centurylink.com

Monthly update on the Indian telecommunications market - Part 4

Full article: Part 1Part 2 , Part 3Part 4

Preamble - note on RJIO coverage, update on BharatNet and the DTH market

It will be noted that while in Parts 2 and 3 a fair amount of detail was provided on the complex, wholesale restructuring of the Indian mobile communications market for three out of the four main groups - Bharti Airtel, Vodafone and RCOM - RJIO was covered somewhat peripherally in terms of its actual and potential relationship to RCOM, and there are several reasons for that. Firstly, RJIO is not being restructured, secondly its structure and situation and offer so far are all dramatic but not that complicated, thirdly, the company has been covered in detail from its first moves in 2010 and more specifically over the last 18 months, both in quasi-monthly updates on the market and in at least one dedicated series. In addition, it should be noted that however glorious its future may eventually turn out to be, the current situation is that RJIO is still very much a work in progress with as yet almost no revenue, no meaningful customer service history and no base of committed customers.

While India's mobile market is by far the largest part of its communications systems and OND normally focuses on this currently turbulent sector, the country looks poised for real economic lift-off, and could manage to double its wealth each decade, so that many of its smaller markets will start to be of greater interest.

BharatNet - India's National Optical Fibre Network

This project, launched by the Indian government in October 2011 at a proposed cost of INR 20,000 crore, as the National Optical Fibre Network, to link 250,000 small and medium-sized villages (gram panchayats) to a national fibre backbone and thus bring India's still huge unconnected rural population into one national digital internet community via fixed broadband rates of under INR 150 per month, has constantly missed connectivity targets set for it. This is largely due to difficulties of obtaining rights of way to lay the fibre. As of late February 2015, only 5,000 villages had been connected. In early April 2015, when 20,000 villages were reported to have been connected, the project, expected to cost INR 72,000 crore, was re-launched under the name BharatNet, with a target of completing the 250,000 connections by the end of 2016.

At the end of May 2015 at a meeting in New Delhi of representatives of the majority of Indian states, chaired by Telecom Minister Ravi Shankar Prasad, it was revealed that several states, namely Andhra Pradesh, Haryana, Himachal Pradesh, Madhya Pradesh, Maharashtra, Odisha. Tamil Nadu and West Bengal, all said to be dissatisfied with the rate of progress of implementation of the network (nominally being carried out under the management of SPV Bharat Broadband Network Limited and executed by CPSUs BSNL, RailTel and Powergrid) were considering, had proposed or were already engaged in implementing independent state versions of the network.

Specifically, in mid-January 2015 India's Economic Times had reported that the state government of Andhra Pradesh (with a population of over 53 million, or 4.0% of the national total) planned to provide broadband connections with speeds of up to 15 Mbit/s to 12 million households for a monthly fee of INR150 in the first stage of a local INR 50 billion optical fibre deployment project, and had requested India's federal government hand over its share of funds from the NOFN. Also, in mid-October 2016 the first minister of the State of Maharashtra (population - 121 million, or 9.29% of the national total) Defendra Fadnavis, was quoted by numerous sources as saying that the Maharashtra government was investing around INR 5,000 crore in the Digital Maharashtra project, which in the first phase would digitally connect 29,000 gram panchayats across the state under a program called MahaNet, described as part of BharatNet and designed to ensure education, healthcare, better access to government services and markets.

Similarly, in mid September 2015 NDTV reported that the government of the state of Tamil Nadu (population 78 million, or about 6.0% of the national total) would, using an ISP license obtained from India's Ministry of Communications and an investment of about $452 million, provide Internet services including IPTV via the state-owned CATV operator Tamil Nadu Arasu Cable TV Corporation and implement BharatNet linking over 12,500 local rural bodies in the state. TACTV has signed a pact with RailTel to provide high speed broadband services and 552 local cable operators have been selected for this operation so far. The broadband will be provided by a newly formed company, the Tamil Nadu Fibernet Corporation, which may later offer VoD services as well.

Meanwhile, on February 1, 2017 Finance Minister Arun Jaitley said that the government would allocate INR 10,000 crore ($1.6 billion) to expand the BharatNet project in fiscal 2018. Jaitley added that high-speed broadband over fibre would be available in over 1.5 lakh gram panchayats with hotspots and access to digital services at low tariffs by the end of 2017-18.

Commercial DTH market with 62.65m active subscribers

Since its introduction in 2003, Indian DTH service has displayed a phenomenal growth. DTH has attained a registered pay subscriber base of around 97.05 million (including 62.65 million active subscribers). As on December 2016 there were 6 pay DTH service providers, aside from viewership of the free DTH services of state-owned Doordarshan.

These six private DTH firms are Dish TV, Reliance BIG TV, Tata Sky, Videocon d2h, Sun Direct TV and Bharti Telemedia. State broadcaster Doordarshan also runs a DTH platform for free-to-air channels called DD Free Dish, which some sources claim has around 20-22 million users. Of the pay TV vendors, Dish TV is the market leader with a 25% share, followed by Tata Sky with a 23%, according to data for September 2016 from TRAI. Videocon d2h and Bharti Telemedia have 20% market share each.

In November 2016 Zee Entertainment Enterprises-owned DTH platform Dish TV and the DTH arm of Videocon Industries announced plans to merge into a new 55/45% entity to be renamed as Dish TV Videocon, which based on the most recent TRAI data above would have a 45% market share and serve 27.6 million customers within an overall market of 175 million TV households. Meanwhile, the Competition Commission of India (CCI) has asked TRAI to assess whether this merger will violate any anti-trust laws.

Although the DTH market in India continued to grow during 2026 there is evidence that it is coming under pressure at the top end from OTT services from companies such as Amazon and Netflix, and at the bottom end from Doordarshan, which is believed to have gained customers recently partly due to the impact of India's demonetisation drive on rural populations.

Full article: Part 1Part 2 , Part 3Part 4

Seaborn selects Spread Networks as exclusive sales partner

Seaborn Networks, an independent developer-owner-operator of submarine optical cable systems, announced that Spread Networks is to act as its exclusive channel partner for sales to the financial vertical on Seabras-1, which links New Jersey with Sao Paulo in Brazil.

The agreement covers sales of SeaSpeed, Seaborn's proprietary ultra-low latency (ULL) solution that is claimed to provide the lowest latency connectivity between Carteret, New Jersey and the BM&F Bovespa Stock Exchange in Sao Paulo, Brazil.

Seabras-1, which is scheduled to be ready-for-service in June 2017, is the only direct point to point submarine cable system between metro New York and metro Sao Paulo. Circuits are due to be activated on Seabras-1 for the financial sector in July of this year. The Seaborn Networks cable has been in development for over five years, involving a total project cost of over $520 million.

Seaborn is also engaged in building the ARBR cable system between São Paulo and Buenos Aires, which is expected to be ready-for-service in the fourth quarter of 2018.

Spread Networks is a privately-owned telecommunications provider that has built a fibre network that takes the shortest, most direct route from New York to Chicago to enable low latency together with diversity and reliability. Spread Networks provides secure, low latency fibre-based connectivity between New York and Chicago for carriers, the financial sector, government organisations and the research and education sector.



  • Seaborn announced in April an agreement with Grupo Werthein, an Argentine investment holding company with significant holdings in the telecoms sector, for the construction of a new subsea optical cable system, ARBR, between Argentina and Brazil. The ARBR cable system will also provide onward connectivity via Seabras-1. At that time, Seaborn stated that combined the ARBR and Seabras-1 cables represent a total investment of more than $575 million.

Flex Logix, developer of embedded FPGA technology, raises $5m

Flex Logix Technologies, headquartered in Mountain View, California, a supplier of embedded FPGA IP and software:

a.         Founded in March 2014 to develop solutions for reconfigurable RTL in chip and system designs employing embedded FPGA IP cores and software.

b.         Offering the EFLX technology platform designed to significantly reduce design and manufacturing risks, accelerate technology development and provide greater flexibility for customers' hardware.

c.         Which in October 2015 announced it had raised $7.4 million in a financing round was led by dedicated hardware fund Eclipse Ventures (formerly the Formation 8 hardware fund), with participation from founding investors Lux Capital and the Tate Family Trust.

Announced it has secured $5 million in Series B equity financing in a round led by existing investors Lux Capital and Eclipse Ventures, with participation from the Tate Family Trust.

Flex Logix stated that new funding will be used to expand its sales, applications and engineering teams to meet the growing customer demand for its embedded FPGA platform in applications including networking, government, data centres and deep learning.

Targeting chips in multiple markets, the Flex Logix EFLX platform can be used with networking chips with reconfigurable protocols, data centre chips with reconfigurable accelerators, deep learning chips with real-time upgradeable algorithms, base stations chips with customisable features and MCU/IoT chips with flexible I/O and accelerators. The company noted that EFLX is currently available for popular process nodes and is being ported to further process nodes based on customer demand.

The Flex Logix technology offers high-density blocks of programmable RTL in any size together with the key features customers require. The solution allows designers to customise a single chip to address multiple markets and/or upgrade the chip while in the system to meet to changing standards such as networking protocols. It also allows customers to update chips with new deep learning algorithms and implement their own versions of protocols in data centres.

Regarding the new funding, Peter Hebert, managing partner at Lux Capital, said, "I believe that Flex Logix's embedded FPGA has the potential to be as pervasive as ARM's embedded processors… the company's software and silicon are proven and in use at multiple customers, paving the way to become one of the most widely-used chip building blocks across many markets and for a range of applications".

While Pierre Lamond, partner at Eclipse Ventures, commented, "The Flex Logix platform is the… most scalable and flexible embedded FPGA solution on the market, delivering competitive advantages in time to market, engineering efficiency, minimum metal layers and high density… the patented technology combined with an experienced management team led by Geoff Tate, founding CEO of Rambus, position the company for rapid growth".


Fujitsu and Mirantis partner to deliver OpenStack-based cloud infrastructure

Fujitsu Limited and Mirantis, the managed open cloud company, announced the signing of a global, strategic collaboration agreement designed to facilitate the adoption of open cloud infrastructure based on OpenStack and related open source technologies such as Kubernetes.

Under the agreement, Fujitsu and Mirantis will work together to integrate Mirantis Cloud Platform, which was introduced in April along with a new build-operate-transfer open infrastructure delivery model, with Fujitsu hardware, software and support capabilities. As part of the collaboration, Fujitsu becomes Mirantis' strategic partner for the methodology and will introduce it to customers.

Mirantis noted that its approach to infrastructure delivery differs from the traditional software-centric method based on licensing and support subscriptions. Mirantis is developing an operations-centric approach, whereby open infrastructure is continuously delivered with an operations SLA via a managed service or by the customer. This model means that software updates are implemented incrementally with no down time.

Fujitsu currently offers a range of private cloud offerings, and through the agreement will introduce the new privately managed global OpenStack solution based on Mirantis Cloud Platform from June 2017 in Japan, with plans to expand availability to other regions in the future.

Mirantis released a commercially-supported distribution of OpenStack and Kubernetes, delivered in a single package, as well as the new build-operate-transfer delivery model, in April.

Mirantis Cloud Platform (MCP) 1.0 is an open cloud software offering a single platform for orchestration of VMs, containers and bare metal compute resources that expands Mirantis OpenStack to include Kubernetes for container orchestration. The platform complements virtual compute stacks with open source software defined networking (SDN), specifically Mirantis OpenContrail for VMs and bare metal, and Calico for containers.

The software features DriveTrain, providing the foundation for DevOps style lifecycle management of the open cloud software stack by enabling continuous integration, testing and delivery through a CI/CD pipeline. It also supports availability SLAs via continuous monitoring of the open cloud software stacks through a unified set of software services and dashboards with StackLight.


NEC teams with Red Hat for trial of KDDI next generation enterprise platform

NEC announced that it contributed to a successful trial of a next generation enterprise platform by KDDI of Japan, a telecommunications and ICT solution provider serving around 40 million domestic mobile subscribers and over 2,000 large enterprises, in collaboration with Red Hat K.K.

NEC noted that as adoption of 5G and IoT services increases, it anticipates that rapid and efficient development and operation of services will be required across a larger number of servers and network infrastructure systems. As part of its effort to deliver this, NEC participated in trials with Red Hat designed to verify the feasibility of KDDI's next generation integrated platform, which incorporates infrastructure and IaaS elements, and its ability to operate with multiple types of systems.

The recent trials with KDDI, which were conducted earlier in 2017, confirmed the feasibility of delivering advanced functionality including:

1.         The use of open cloud technology to deliver quality, reliable system infrastructure for telecommunications carriers.

2.         Integrated management of multiple services using simplified infrastructure, flexible services and efficient operations.

3.         The maintenance and replacement of servers and storage devices without service interruptions.

4.         The provision of advanced monitoring utilising distributed technology developed by the KDDI Research Institute.

NEC stated that the trials were based on the Red Hat OpenStack Platform, which was used to create an open cloud environment, with the infrastructure implemented and managed by NEC. NEC plans to continue working with Red Hat to help deliver the performance needed for KDDI's next generation platform.

Zain Saudi Arabia upgrades LTE network using Nokia centralised RAN technology

Nokia and Zain Saudi Arabia, which recently announced the deployment of Nokia's multi-access edge computing (MEC) platform in Mecca, have enhanced network upload speeds at Jeddah's King Abdullah Sports stadium by a claimed up to 50% utilising Nokia centralised RAN technology.

The centralised RAN deployment is designed to improve uplink connectivity and quality of experience for attendees at football matches and other events held at the venue, known as the Al Jawhara Stadium, Jeddah's largest stadium.

Nokia noted that the popularity of events held at the stadium has prompted Zain Saudi Arabia to seek technology to address spikes in uplink data traffic triggered by large numbers of fans sharing photos and videos on social media. Zain selected Nokia's centralised RAN technology to improve uplink performance, specifically by deploying clusters of LTE base stations within the stadium to optimise bandwidth performance and address uplink congestion in the 1800 MHz bands.

The Nokia solution also helps improve smartphone energy efficiency as less power is required when uploading content. For the project, Nokia also provided professional services to support the design, testing and optimisation the performance of the new centralised RAN technology.

The Nokia centralised RAN is deployed on Zain's LTE network that is based on Nokia Flexi Multiradio 10 base station. The Nokia centralised RAN technology enables more than 60,000 fans to share content with up to 50% higher upload speed, with the capacity improvement supporting a claimed 31% increase in uplink traffic for events held at the Al Jawhara Stadium.

Earlier in May, Nokia announced that following a successful trial, Zain had deployed the Nokia MEC platform, combined with Edge Video Orchestration capability, into its network using both macro and small cell base stations to enhance services for Zain's subscribers. The solution leverages Nokia AirFrame data centre technology to support high levels of data processing.

Monday, May 8, 2017

Dell Offers Flexible Models to Counter Public Cloud

Dell Technologies will offer flexible consumption models for its products company-wide. The idea is to let enterprise customers pay for IT products on an as-needed basis similar to public cloud services. The flexible payment model, which is arranged through Dell Financial Services, enable customers to reduce the large up-front costs of on-premises hardware.
tal costs.

The flex pricing is initially available for all Dell EMC storage solutions. Customers pay only for the storage capacity needed, which reduces costs associated with overprovisioning. Importantly, Flex on Demand provides instant access to additional buffer capacity during spikes driven by the business, with payments adjusting to match usage. DFS offers a low capacity commitment and a flexible payment period so customers may pay only for what is consumed, freeing up budgets for other projects.

“Many IT leaders worry about unforeseen costs and risks when adopting new or different technologies, but organizations that do not invest in IT Transformation initiatives risk falling behind their competitors,” said Howard Elias, President, Dell EMC Services and IT. “With flexible, simple and predictable payment solutions, we help organizations adopt the technology—from the desktop to the datacenter—that best suits their business needs today and allows a more pay-as-go model for modernizing and transforming IT.”

http://www.dell.com

Dell Readies its 14G Poweredge Servers

Dell EMC will launch the 14th generation of its Poweredge servers as soon as Intel releases its new Xeon processors.

The new 14G PowerEdge servers will be embedded in storage and data center appliances, hyper-converged appliances and racks, ready nodes, bundles and other Dell EMC solutions. Key enhancements include:

  • Increasde application performance and response time – with 19X more Non-Volatile Memory Express (NVMe) low latency storage than the prior generation.
  • One-click BIOS tuning enables quick-and-easy deployment of many processing-intensive workloads
  • Enhanced storage capacity and flexibility lets customers tailor their storage configurations to their application needs especially in a software-defined-storage (SDS) environment
  • Newly enhanced systems management features embedded in the Dell EMC PowerEdge portfolio uniquely automate productivity and simplify lifecycle management from server deployment to retirement. 

http://www.dell.com

Monthly update on the Indian telecommunications market - Part 3

Full article: Part 1Part 2 , Part 3Part 4

Preamble

Part 2 covered the rapid process of vendor consolidation into four main groups that is taking place in the Indian telecoms market and looked in detail at the activities of the two market leaders, Bharti Airtel's merger with Telenor India and the even larger conjunction of Vodafone India with Idea Cellular, together with related minor acquisitions. Those two companies alone once all proposals have fully closed will, based on December 2016 data and financial sources, account for almost 65% of India's mobile subscribers and in the range 73 to 78% of total communications market revenue. Despite the seemingly very strong position on paper of the new Vodafone-Idea company, which would nominally take over as leader of the Indian telecoms market, there are legitimate doubts about the viability of the union, as covered in Part 2.

The other two groups likely to make up the Top 4 are Reliance Communications (RCOM), run by Anil Ambani, (Mukesh Ambani's younger and very competitive brother) and also Mukesh's own massive $20 billion-funded RJIO, which although still a minnow in revenue terms is eventually likely to dominate the Indian broadband market. There are also issues with both of them.

Despite its dramatic first few months apparent success after its launch in September, which has resulted in it already signing on more than 100 million customers, RJIO still remains something of an unknown quantity commercially, since early customers have been drawn to use its services by attractive initial offers of free voice and free or very cheap data services. How many customers it will retain once it starts to charge market-level prices is still rather uncertain. While due to the constantly extended RJIO launch date, both Bharti Airtel and Vodafone have had time to adjust their pricing, products and marketing approach and are likely to stand firm in competition.

The second uncertainty is what will eventually be the settled relationship between RJIO and RCOM, which have been  drawing steadily closer together via a number of deals involving the sharing of spectrum and networks, but whose ultimate intentions are unclear. At one extreme the deals that have been done may have just been normal commercial deals beneficial to both parties and merely been able to be implemented faster than usual and more economically because of trust within the family. At the other extreme, it is a deliberate long term plan to dominate the market, which will eventually result in a full merger whereby Anil perhaps would become the manager of the combined company within the framework of the RIL conglomerate, managed by Mukesh (who has plenty of other opportunities to take in a fast growing country whose economy is likely to double in the next ten years). What view the TRAI regulator would take on such a proposal remains to be seen.

Group 3 – RCOM, Sistema, Aircel and Tata, plus network sharing with RJIO

Since at least mid-2015 RCOM, at one time a contender on its own account for a Top 3 position in terms of mobile subscriptions, has been in restructuring mode and has also for most of that time been steadily losing organic market share, resulting in a drop in its ranking amongst all 12 mobile operators of two places from No 4 to No 6.

In November 2015 it was announced that in a deal with a headline value of $690 million RCOM would, in exchange for a 10% stake in the merged association, acquire smaller rival Sistema Shyam Teleservices (SSTL), as a result of which it would get an additional 9 million customers and INR 15 billion ($229 million) in annual revenue. Also, RCOM claimed, it would be the largest holder of 800/850 MHz spectrum for 4G. Despite the agreement this deal does not yet seem to have fully closed. In fact, Russia's giant 70,000-employee Sistema Group and RCom only submitted documents for final approval of the transaction by India's DoT in November 2016. In early February 2017 the board chairman of Sistema, Vladimir Evtushenkov, told TASS that he expected the deal to close in March. Because of the long delay some circumstances may have changed. As of December 2016, TRAI only reported 5.9 million customers for Sistema compared to 9 million at the time the deal was first agreed (it is possible that some Sistema customers, by agreement, may already have been transferred to the RCOM network).

In December 2015 RCOM, then India's fourth largest operator in terms of mobile subscribers with around 110.4 million subscribers as of September 2015, announced that it was holding non-binding talks with Aircel’s majority owner Maxis Communications of Malaysia and shareholder Sindya Securities and Investments to merge its mobile business with Aircel, which served just under 84 million. At the time the two companies claimed synergies for the merger would amount to INR 20,000 crore. In September 2016 final details of the agreement were confirmed whereby RCom and Maxis Communications would hold 50% each in a newly created venture with equal representation on the board. Following the merger, the company would have an asset base of more than INR 65,000 crore and net worth of INR 35,000 crore. RCOM's overall debt, including the deferred spectrum payment liability, would be reduced by INR 20,000 crore and Aircel's debt would reduce by INR 4,000 crore upon completion of the transaction. According to their announcement the merged entity would have the second-largest spectrum holding amongst all operators, totalling 448 MHz across 850 MHz, 900 MHz, 1800 MHz and 2100 MHz bands.

As with the SSTL acquisition, this is a complicated agreement and India is a very bureaucratic country where many different approvals have to be obtained for such a deal. In fact the agreement has only just been approved (on April 22nd) by Aircel shareholders and on April 24th 2017 by the shareholders of RCOM.

The company has already received approval from the Securities and Exchange Board of India, BSE, National Stock Exchange of India and Competition Commission of India for the proposed scheme of arrangement but several other approvals are still required.

RCOM itself has, for a variety of reasons, including loss of licences, heavy debt and possibly a management distracted by all its many restructuring arrangements, not being doing that well. In January 2016 RCOM reported for the October to December quarter of 2015, a year on year decline of 2.9% in revenue to INR 5,277 crore and a 15% decline in net profit to INR 171 crore, which it said was mainly due to the expiry of 2G licences in five circles including Bihar, West Bengal and Assam.

As of December 2016, TRAI reported that RCOM now ranked only the sixth largest supplier served 86.5 million mobile subscriptions, a drop of almost 24 million from the 110.4 million at the end of September 2015.

Apart from the other deals, RCOM has concluded several extremely important network and spectrum-sharing agreements with RJIO. RJIO entered into a INR12,000 crore pact with RCOM in June 2013 to utilise the latter's telecom towers for providing broadband digital services. In 2014, RJIO signed a deal with RCOM to share the latter’s optic fibre infrastructure in some 300 cities and towns. In early January 2016, RCOM announced that it would, subject to regulatory approvals, sell its spectrum in the 800 MHz band across 9 circles, to RJIO and both companies would also share their spectrum in 800 MHz band across 17 circles with the eventual aim of sharing that spectrum across all 22 circles.

In late September 2016 speaking to investors Anil Ambani confirmed that RCOM and RJIO had 'all but' merged, saying specifically: 1As far as our 100 million customers are concerned, as far as our 1 million retailers are concerned, as far as our employees are concerned, and as far as our vendors and partners are concerned, there has already been a virtual merger of the two organisations (RCom and Jio)'.

Further comment

Apart from the two state-owned operators BSNL and  MTNL which together own almost 9% of the mobile market and have a dominant share of India's fixed-line market, there is only one other unconsolidated operator left of any significance, Tata Teleservices, which as of December 2016 served just under 53 million mobile subscriptions for a 4.70% market share. In early February 2017, India's Economic Times reported that persons familiar with the matter had told them that Anil Ambani had initiated talks with newly appointed Tata Sons chairman N. Chandrasekharan to explore a possible union. There are, however, two major problems that Tata Teleservices still has to deal with. The first is a massive debt of INR 30,000 crore and the second is an unresolved dispute between Tata and NTT DOCOMO related to their partnership in Tata Tele with a headline value of $1.17 billion. However, at least one source reported on March 14th that following what was described as a 'truce' between Tata and NTT due diligence talks had been started between RCOM and Tata on the possibility of a deal regarding Tata Teleservices.

Full article: Part 1Part 2 , Part 3Part 4

ADVA partners with Brocade on 32G Fibre Channel over 100 km

ADVA Optical Networking announced that it has demonstrated transmission of 32 Gbit/s Fibre Channel over 100 km, which is claimed as an industry first, during a joint field trial that utilised Brocade X6 directors and the ADVA FSP 3000 CloudConnect platform.

The trial was designed to illustrate the ability of ADVA's data centre interconnect (DCI) technology to interoperate seamlessly with Brocade Gen 6 Fibre Channel products. The joint solution will enable enterprise customers to address the demand for higher speed transmission in the data centre, as well as support the transition to flash-based storage solutions.

The combination of Brocade's newly introduced Gen 6 Fibre Channel technology and the ADVA FSP 3000 CloudConnect platform is designed to offer customers increased performance, availability and scalability.

ADVA noted that transmission of 32 Gbit/s Fibre Channel over 100 km represents a key capability for business continuity and disaster recovery planning. As companies move towards a low-cost, high-performance storage model, they require networks that can deliver low-latency and high-capacity bandwidth together with high reliability. This demonstration of 32Gbit/s Fibre Channel connectivity shows that networks can now maximize the performance of flash array technology.

Brocade announced in March the launch of its G610 storage switch as part of the Gen 6 Fibre Channel portfolio that support 32 Gbit/s performance and designed to provide always-on connectivity to the all-flash data centre. The company noted that the transition to flash storage and the emergence of non-volatile memory express (NVMe) requires infrastructure that can optimise application performance and adapt to evolving data centre needs.

The Brocade G610 is an entry-level switch designed for applications ranging from small shared storage fabrics to network edge deployments in data centres. The switch is scalable, offering support for from eight ports up to 24 ports, and features Fabric Vision technology with newly introduced VM Insight functionality providing visibility into VM-level application performance.


Regarding the joint demonstration, Scott Shimomura, senior director, product marketing, Storage Networking at Brocade, said, "A seismic shift is taking place as organisations move from legacy storage to all-flash arrays… but a lack of fast, responsive and reliable connectivity can be a roadblock… the Brocade Gen 6 Fibre Channel portfolio and ADVA FSP 3000 CloudConnect enable the reliable, low-latency Fibre Channel storage networks that data centres need to (support) flash storage".

Equinix provides direct access to Oracle Cloud at Washington DC IBX facility

Equinix, the global interconnection and data centre company and member of Oracle PartnerNetwork, announced the availability of dedicated, private access to the Oracle Cloud Infrastructure IaaS offering via the Equinix Cloud Exchange.

Direct access via Equinix enables enterprise customers to migrate applications and data to Oracle Cloud and gain low latency connectivity for an enhanced user experience. The latest agreement builds on previous collaborations between Equinix and Oracle to enable direct access to Oracle's suite of cloud services, including PaaS and SaaS solutions, in markets worldwide.

Under the new agreement, access to Oracle Cloud Infrastructure will initially be available via the Oracle Cloud Network Service FastConnect in the Equinix Washington, DC International Business Exchange (IBX) data centre; additional markets scheduled to be added during the year.

Equinix noted that leveraging Cloud Exchange and API integration with Oracle's FastConnect, customers are able to establish direct connectivity between on-premises infrastructure and Oracle Cloud environments. This allows customers to adopt a hybrid cloud model, with the ability to reliably and efficiently move application, middleware and database workloads between on-premises systems and the Oracle Cloud.

Equinix cited examples of hybrid deployments enabled by the collaboration including:

1.         Customers wishing to migrate and host complex, multi-tier solutions in the cloud while minimising production downtime.
2.         Customers with the need to perform analytics on large data sets residing in Oracle databases, which can host Oracle solutions on-premises inside Equinix and, via FastConnect on Equinix Cloud Exchange, extend their network into the Oracle Cloud, so removing data size limits, increasing throughput and reducing latency.

3.         Customers wishing to consolidate databases into Oracle Exadata Cloud Service but with limited capacity in their existing data centre, who can place Oracle Exadata racks inside Equinix and connect to Oracle Cloud for high availability.


Oracle FastConnect, offering private access to Oracle Cloud on Equinix Cloud Exchange, is scheduled to be available in six markets, including Washington DC, Chicago, Amsterdam, London and Sydney, by the end of 2017. Equinix Cloud Exchange is currently available in 21 markets worldwide across North America, Europe and Asia.

Zayo Buys Kio data centres in San Diego

Zayo Group announced that it has completed the acquisition for $12 million of Kio Networks' San Diego data centres, specifically two facilities located at 12270 World Trade Drive and 9606 Aero Drive.

Zayo stated that it has experienced increasing demand for data centre and interconnection services in San Diego, driven by customers in the IT, healthcare and professional services sectors. The acquisition of Kio's data centres not only provides capacity to meet this demand, but also an embedded revenue base that supports the financial profile of the deal.

The San Diego facilities will provide extensive interconnection and access to Zayo’s fiber backbone in California, which now encompasses more than 8,000 route miles. Zayo’s high-count fibre also connects to multiple landing stations providing subsea cable access up the California coast and to the Asia Pacific (APAC) region.


Zayo noted that the acquisition builds on its continuing expansion on the West Coast, which includes network assets acquired with Electric Lightwave and recently announced data centres in Santa Clara and Los Angeles. Zayo announced in April that it would significantly expand its Los Angeles data centre presence with a new location at One Wilshire Building, 624 S Grand Ave., marking its fifth facility in California, to meet customer demand.



  • Zayo recently announced it had achieved Carrier Ethernet 2.0 certification from the Metro Ethernet Forum (MEF). It noted that the certification strengthens its ability to deliver standards-based local, national and global Ethernet services with the same interoperability and performance to any location.
  • The MEF CE 2.0 certification also validates Zayo's ability to provide Ethernet solutions that meet operator-to-operator requirements. Zayo services include E-Line, point-to-point, multipoint and E-LAN configurations. Zayo also offers Ethernet Private Dedicated Network (E-PDN), offering customers dedicated fibre and equipment and FlexConnect.

NeoPhotonics reports Q1 revenue of $71.69m, net loss of $11.52m

NeoPhotonics, a designer and manufacturer of optoelectronic solutions for the communications networks for telecom and data centres applications, announced financial results for its first quarter ended March 31, 2017, as follows:

1.         Revenue for the first quarter of 2017 of $71.69 million, down 34.7% versus $109.84 million in the fourth quarter and down 27.7% from $99.14 million in the first quarter of 2016.

2.         Gross income for the first quarter of $18.50 million, down 40.3% versus $31.03 million in the fourth quarter and down 40.5% from $31.12 million in the first quarter of 2016.

3.         R&D expenditure for the first quarter of $15.54 million, up 2.4% versus $15.17 million in the fourth quarter and up 20.0% from $12.95 million in the first quarter of 2016.

4.         SG&A expenditure for the first quarter of $16.36 million, up 30.0% versus $12.58 million in the fourth quarter and up 25.8% from $13.01 million in the first quarter of 2016.

5.         Total operating expenditure for the first quarter of $30.38 million, up 4.1% versus $29.19 million in the fourth quarter and up 15.0% from $26.42 million in the first quarter of 2016.

6.         On a GAAP basis, a net loss for the first quarter of $11.52, versus net income of $2.00 in the fourth quarter and net income of $2.31 million in the first quarter of 2016.

On a non-GAAP basis, a net loss for the first quarter of $10.74 million, versus net income of $6.29 million in the fourth quarter and net income of $6.95 million in the first quarter of 2016.

7.         Cash, cash equivalents and short-term investments as of March 31, 2017 of $87.75 million, compared with $101.51 million as at December 31, 2016.

Additional results and notes

For the first quarter of 2017, NeoPhotonics reported that sales of high speed products were $58.7 million (82% of the total), with network products and solutions representing $13.0 million (18% of total revenue). Revenue excluding low speed transceiver products for the quarter was $70.2 million.

On a geographic basis by shipment destination, in the first quarter Americas revenue was 17% of total sales, compared to 18% in the fourth quarter, China accounted for 54% of the total, compared to 65% in the prior quarter, Japan revenue was 5%, compared to 4% in the prior quarter, with rest of the world sales 24% of the total, compared to 13% in the prior quarter.

For the first quarter, NeoPhotonic's stated it had two 10%-or-greater customers, with Ciena representing approximately 14% of total revenue, flat with the fourth quarter, and Huawei Technologies and affiliate Hi-Silicon Technologies accounting for 41% of total revenue, compared to 53% in fourth quarter, or 50% of total revenue excluding low speed products for that period.

Outlook

For the first quarter ending June 30, 2017, NeoPhotonics expects revenue of between $68 and $74 million, representing a sequential decline of 1.0% at the midpoint.

CEO comment

Regarding the results, Tim Jenks, chairman and CEO of NeoPhotonics, said, "As expected, softness in the overall China market affected sales in the first quarter… I see the China market as being in a transition as it moves from primarily national backbone to provincial and metro 100 Gbit/s deployments, while worldwide the metro and data centre interconnect markets continue to grow at a rapid pace".

Sonus Virtual SBC validated with Wind River Titanium Cloud

Sonus Networks, a provider of solutions that enable secure and intelligent cloud communications, announced that its cloud native session border controller (SBC) Software edition (SBC SWe) has completed the testing and validation process under the Wind River Titanium Cloud ecosystem program.

Following the validation, in collaboration with Wind River Sonus can offer a proven, carrier-grade virtual SBC that is designed to meet service provider requirements in terms of performance, reliability and availability. The partnership expands Sonus' NFVI partner network to simplify onboarding in Wind River environments.

The Wind River Titanium Cloud ecosystem enables the delivery of interoperable standard products optimised for NFV deployment with Titanium Cloud and is intended to speed time-to-market. The combination of Wind River's Titanium Cloud and the Sonus cloud native SBC, is designed to enable service providers to reliably deliver carrier-class, real-time communications in the cloud.

The Sonus SBC SWe offers an advanced software-based, cloud native SBC designed to enable and secure real-time communications. The SBC SWe is designed to provide security, transcoding and signalling and media interworking with the same reliability as Sonus' hardware-based SBC appliances. Sonus noted that validation with Titanium Cloud further enhances its cloud native SBC VNF and expands its strategy of enabling a multi-vendor cloud ecosystem.

Wind River Titanium Cloud is an integrated, high reliability and deployment-ready portfolio of virtualisation software products. Titanium Cloud technologies are designed to allow organisations including service providers to deploy reliable virtualised services faster at lower cost. Titanium Cloud is based on open software standards including Linux, KVM, carrier-grade plugins for OpenStack, Data Plane Development Kit (DPDK) and accelerated virtual switching, optimised for Intel architecture platforms.



CityFibre appoints Jatinder Sispal as head of carrier and national providers

CityFibre, the UK’s largest alternative provider of wholesale fibre network infrastructure, announced the appointment of Jatinder Sispal as Head of Carrier and National Providers.

In his new role with CityFibre, Jatinder Sispal will focus on selling the company's independent, full-fibre infrastructure to the carrier and national provider sector, including content providers and data centre operators, in the UK.

Mr. Sispal joins CityFibre from BT where he was head of the BT Local Business, with responsibility for the enterprise division that serves around 700,000 customers each year.

Jatinder Sispal has extensive experience in the technology and telecommunications sectors, including in senior leadership roles with Telstra, where he was responsible for building up the wholesale division, and Colt, where he led the UK wholesale and Northern European indirect sales and marketing divisions.

London-based CityFibre is deploying fibre infrastructure designed to enable Gigabit Cities across the UK, with a major metro duct and fibre footprint serving 42 cities and a national long distance network that connects to key UK data centres across and peering points in London.


CityFibre offers a range of active and dark fibre services to customers including service integrators, enterprise and consumer service providers and mobile operators leveraging a network that connects around 28,000 public sites, 7,800 mobile masts, 280,000 businesses and 4 million homes.



  • The company states it has launched Gigabit City projects in 41 cities, including in the following cities: Aberdeen; Bracknell; Bradford; Bristol; Coventry; Doncaster; Edinburgh; Glasgow; Huddersfield; Hull; Leeds; Maidenhead; Milton Keynes; Northampton; Peterborough; Reading; Rotherham; Sheffield; Slough; Southend-on-Sea; and York.


Exceda of Brazil expands XCDN content delivery network worldwide via partners

Exceda based in Sao Paolo, announced that XCDN, a major eCommerce-based CDN, that is currently available only to customers in the Americas region, is to be expanded via collaborations with multiple CDN partners to enable the delivery of website content to and from locations worldwide.

Established in 2002 in Sao Paulo, Brazil, Exceda is a major Akamai channel partner providing CDN, DDoS, WAF, data analysis and professional services designed to help customers accelerate web performance while reducing their infrastructure costs.

Exceda XCDN works by caching customer website content in hundreds of thousands of servers located in networks and data centres worldwide. This allows content to be served from the location nearest to the end user, based on both the distance and network conditions, to reduce latency. The service is designed to protect users from site outages and slowdowns due to heavy visitor traffic, Internet outages and malicious traffic, as well as help reduce expenditure on physical or cloud web infrastructure.

XCDN, which is delivered via a partnership with Akamai, is currently available to customers across the Americas region and is due to be available for sales outside of the Americas from July 2017.

Describing the service, Exceda's CTO, Terry Drozdowski, said, "Simplicity is at the heart of XCDN, customers pay a flat rate for traffic delivered anywhere in the world… I believe that XCDN will be extremely attractive to small businesses throughout Europe, Asia, and Africa who will be able deliver their sites via XCDN starting in July".


Friday, May 5, 2017

Facebook's march to augmented reality

The big theme coming out of Facebook's recent F8 Developer Conference in San Jose, California was augmented reality (AR). Mark Zuckerberg told the audience that the human desire for community has been weakened over time and believes that social media could play a role in strengthening these ties.

Augmented reality begins as an add-on to Facebook Stories, its answer to Snapchat. Users simply take a photo and then use the app to place an overlay on top of the image, such as a silly hat, fake moustache, while funky filters keep the users engaged and help them create a unique image. Over time, the filter suggestions become increasingly smart, adapting to the content in the photo - think of a perfect frame if the photo is of the Eiffel Tower. The idea is to make the messaging more fun. In addition, geo-location data might be carried to the FB data centre to enhance the intelligence of the application, but most of the processing can happen on the device.

Many observers saw Facebook's demos as simply a needed response to Snapchat. However, Facebook is serious about pushing this concept far beyond cute visual effects for photos and video. AR and VR are key principles for what Facebook believes is the future of communications and community building.

As a thought experiment, one can consider some of the networking implications of real-time AR. In the Facebook demonstration, a user turns on the video chat application on their smartphone. While the application parameters of this demonstration are not known, the latest smartphones can record in 4K at 30 frames per second, and will soon be even sharper and faster. Apple's Facetime requires about 1 Mbit/s for HD resolution and this has been common for several years (video at 720p and 30 fps). AR certainly will benefit from high resolution, so one can estimate the video stream leaves the smart phone on a 4 Mbit/s link (this guestimate is on the low end). The website www.livestream.com calculates a minimum of 5 Mbit/s upstream bandwidth for launching a video stream with high to medium resolution. LTE-Advanced networks are capable of delivering 4 Mbit/s upstream, with plenty of headroom, and WiFi networks are even better.

To identify people, places and things in the video, Facebook will have to perform sophisticated graphical processing with machine learning. Currently this cannot be done locally by the app on the smartphone and so will need to be done at a Facebook data centre. So the 4 Mbit/s stream will have to leave the carrier network and be routed to the nearest Facebook data centre.

It is known from previous Open Compute Project (OCP) announcements that Facebook is building its own AI-ready compute clusters. The first design, called Big Sur, is an Open Rack-compatible chassis that incorporates eight high-performance GPUs of up to 300 watts each, with the flexibility to configure between multiple PCI-e topologies. It uses NVIDIA's Tesla accelerated computing platform. This design was announced in late 2015 and subsequently deployed in Facebook data centres to support its early work in AI. In March, Facebook unveiled Big Basin, its next-gen GPU server capable of machine learning models that are 30% bigger than those handled on Big Sur using greater arithmetic throughput and a memory increase from 12 to 16 Gbytes. The new chassis also allows for disaggregation of CPU compute from the GPUs, something that Facebook calls JBOG (just a bunch of GPUs), which should bring the benefits of virtualisation when many streams need to be processed simultaneously. The engineering has anticipated that increased PCIe bandwidth will be needed between the GPUs and the CPU head nodes, hence a new Tioga Pass server platform was also necessitated.

The Tioga Pass server features a dual-socket motherboard, with DIMMs on both PCB sides for maximum memory configuration. The PCIe slot has been upgraded from x24 to x32, which allows for two x16 slots, or one x16 slot and two x8 slots, to make the server more flexible as the head node for the Big Basin JBOG. This new hardware will need to be deployed at scale in Facebook data centres. Therefore, one can envision that the video stream originates at 4 Mbit/s and travels from the user's smartphone and is routed via the mobile operator to the nearest Facebook data centre.

Machine learning processes running on the GPU servers perform what Facebook terms Simultaneous Localisation and Mapping (SLAM). The AI essentially identifies the three-dimensional space of the video and the objects or people within it. The demo showed a number of 3D effects being applied to video stream, such as lighting/shading, placement of other objects or text. Once this processing has been completed, the output stream must continue to its destination, the other participants on the video call. Maybe further encoding has compressed the stream, but still Facebook will have to be burning some amount of outbound bandwidth to hand the video stream over to another mobile operator for delivery via IP to the app on the recipient's smartphone. Most likely, the recipient(s) of the call will have their video cameras turned on and these streams will also need the same AR processing in the reverse direction. Therefore, we can foresee see a two-way AR video call burning tens of mgeabits of WAN capacity to/from the Facebook data centre.

The question of scalability

Facebook does not charge users for accessing any of its services, which generally roll out across the entire platform at one go or in a rapid series of upgrade steps. Furthermore, Facebook often reminds us that it is now serving a billion users worldwide. So clearly, it must be thinking about AR on a massive scale. When Facebook first began serving videos from its own servers, the scalability question was also raised, but this test was passed successfully thanks to the power of caching and CDNs. When Facebook Live began rolling, it also seemed like a stretch that it could work at global scale. Yet now there are very successful Facebook video services.

Mobile operators should be able to handle large numbers of Facebook users engaging in 4 Mbit/s upstream connections, but each of those 4 Mbit/s streams will have to make a visit to the FB data centre for processing. Fifty users will burn 200 Mbit/s of inbound capacity to the data centre, 500 users will eat up 2 Gbit/s of bandwidth, 5,000 20 Gbit/s and 50,000 200 Gbit/s. For mobile operators, if AR chats prove to be popular lots of traffic will be moving in and out of Facebook data centres, and one could easily envision a big carrier like Verizon or Sprint having more than 500,000 simultaneous users on Facebook AR. So this would present a challenge if 10 million users decide to try this out on a Sunday evening. That would demand a lot of bandwidth that network engineers would have to find a way to support. Another point is that, from experience with other chat applications, people are no longer accustomed to economising in terms of length of the call or number of participants. One can expect many users to kick-off a Facebook AR call with friends on another continent and keep the stream opened for hours.

Of course, there could be clever compression algorithms in play so that the 4 Mbit/s at each end of the connection could be reduced, while if the participants do not move from where they are calling and nothing changes in the background, perhaps the AR can snooze, reducing the amount of processing needed and the bandwidth load. In addition, perhaps some of the AR processing can be done on next gen smartphones. However, the opposite could also be true, where AR performance is enhanced by using 4K, multiple cameras per user are used on the handset for better depth perception, and the video runs at 60 fps or faster.

Augmented reality is so new that it is not yet known whether it will take off quickly or be dismissed as a fad. Maybe it will only make sense in narrow applications. In addition, by the time AR calling is ready for mass deployment, Facebook will have more data centres in operation with a lot more DWDM to provide its massive optical transport – for example the MAREA submarine cable across the Atlantic Ocean between Virginia and Spain, which Facebook announced last year in partnership with Microsoft. The MAREA cable, which will be managed by Telxius, Telefónica’s new infrastructure company, will feature eight fibre pairs and an initial estimated design capacity of 160 Tbit/s. So what will fill all that bandwidth? Perhaps AR video calls, but the question then is, will metro and regional networks be ready?