Monday, June 26, 2023

Leading Chinese mobile operators join GSMA Open Gateway Initiative

China Mobile, China Telecom and China Unicom have joined the GSMA Open Gateway Initiative, which helps developers and cloud providers collaborate with mobile operators through a framework of open network Application Programmable Interfaces (APIs),

The Open Gateway APIs aim to provide universal access to operator networks across all continents spanning from North America to Australia, Norway to Argentina. 

At a joint signing ceremony ahead of MWC Shanghai, the three operators China Mobile, China Telecom and China Unicom demonstrated their commitment to collaborate on the open network API framework, meaning the initiative is now supported by 29 mobile network operators, representing around 60% of mobile connections worldwide.

The global initiative, which launched with eight proofs of concept in February, has already grown to 23. The APIs developed through early adopter programmes cover everything from device location and SIM swap to combat online financial crime, through to Quality on Demand to deliver more immersive gaming experiences and enable drones to carry out data intensive missions safely.

Mats Granryd, Director General of the GSMA, said, “Around the world, we’re gaining critical mass from east to west, north to south. China represents the largest 5G market in the world, so having China’s three largest operators committed to this initiative demonstrates its global significance and the strong business case it offers. In the same way we helped harmonise mobile voice services and enable roaming 35 years ago, I believe GSMA Open Gateway offers the potential to deliver similar levels of significant change for digital services.”

“This is just the beginning, with operators already launching early adopter programmes, we will see more APIs in the coming year, creating new global markets, offering new services and new functionality. This will help unlock further value from 5G connectivity which will flow into the global economy and strengthen future investments, bringing transformational benefits of connectivity to all,” said Granryd.

NTIA announces state allocations for $42.45 billion in BEAD grants

The Department of Commerce’s National Telecommunications and Information Administration (NTIA) announced how it has allocated funding to all 50 states, the District of Columbia, and five territories to deploy high-speed Internet to all addresses that are currently unserved.

The funding, a component of the Broadband Equity, Access, and Deployment (BEAD) program, totals $42.5 billion in eligible grants.

The announcement was made at a White House ceremony attended by the President, Vice President, and Secretary of Commerce Gina Raimondo, along with other dignitaries.

"This is a watershed moment for millions of people across America who lack access to a high-speed Internet connection. Access to Internet service is necessary for work, education, healthcare, and more,” said Assistant Secretary of Commerce for Communication and Information Alan Davidson. “States can now plan their Internet access grant programs with confidence and engage with communities to ensure this money is spent where it is most needed.”


“Put simply, high-speed Internet is a necessity in today’s society,” said Mitch Landrieu, Senior Advisor to the President and White House Infrastructure Coordinator. “Just like President Franklin Delano Roosevelt’s Rural Electrification Act made a historic investment in rural areas bringing electricity to nearly every home in America, President Biden and Vice President Harris are committed to leaving no community behind as we connect everyone in America to high-speed Internet.”

https://www.ntia.doc.gov/

OFS optimizes TrueLase fiber for multi-kilowatt fiber lasers

OFS announced an improved performance TrueLase Yb 22/400-915-3kW, Ytterbium Doped Active Fiber developed for high-efficiency, reliable, multi-kilowatt fiber lasers. 

The TrueLase fiber family uses TrueClad Low Index Polymer Coating, which has been specially developed for high reliability and performance. 

OFS said its production processes at OFS, which are designed for long lengths, guarantee consistently high quality with the lowest tolerances and cost efficiency. Thanks to its compatibility with numerous fibers and components available on the market, the TrueLase Yb 22/400-915-3kW fiber allows laser manufacturers to build their own multi-kW fiber laser cavity's. 

Phil Familletti, OFS Fiber Laser Product Manager, stated, "With the new TrueLase Yb 22/400-915-3kW double clad fiber, a user pumping using 915nm will be able to achieve over 3KW in a single fiber laser cavity." Mr. Familletti continued, "This is an exciting development and ideal tool for integrated high-power fiber lasers and amplifiers."

www.ofsoptics.com

Tech Update: Public Cloud experience for Private Clouds

Private clouds often prove to be difficult to maintain and upgrade, in part due to lack of qualified personnel. 

Bryan Thompson discusses new capabilities in HPE GreenLake for Private Cloud Business Edition.


https://youtu.be/XwmnmBa_c-o

Recorded at HPE Discover 2023 in Las Vegas. 

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IBM expands cloud offerings with Apptio acquisition

IBM agreed to acquire Apptio, a start-up specializing in financial and operational IT management and optimization (FinOps) software, for $4.6 billion. 

IBM said the acquisition will accelerate the advancement of its IT automation capabilities and enable enterprise leaders to deliver enhanced business value across technology investments.

Apptio has three core SaaS offerings: 

  • ApptioOne: Hybrid cloud spend management and optimization capabilities to analyze, optimize and plan IT spend and value. ApptioOne is used to establish repeatable and accurate planning and financial management processes, delivering actionable insights around cost and utilization, while benchmarking against industry peers for continuous optimization.
  • Apptio Cloudability: Public cloud spend management visibility and optimization capabilities, connecting multi-cloud and SaaS infrastructure with cloud financial management best practices to maximize the value of clients' cloud strategy.
  • Apptio Targetprocess: Agile investment planning capabilities to align development resources to business outcomes, plan and track value delivery for projects or products.

Apptio claims over 1,500 clients and key partnerships and integrations with Amazon Web Services, Microsoft Azure, Google Cloud Platform, Salesforce, ServiceNow, Oracle and SAP.

"Technology is changing business at a rate and pace we've never seen before. To capitalize on these changes, it is essential to optimize investments which drive better business value, and Apptio does just that," said Arvind Krishna, CEO and chairman, IBM. "Apptio's offerings combined with IBM's IT automation software and watsonx AI platform, gives clients the most comprehensive approach to optimize and manage all of their technology investments."


Pliops appoints Ido Bukspan as its new CEO

Pliops, a start-up offering a high-performance data processor for cloud and enterprise data centers, appointed semiconductor industry veteran Ido Bukspan as its new CEO, replacing Pliops co-founder Uri Beitler, who will become chief strategy & business development officer.

Bukspan most recently served as SVP of Chip Design at NVIDIA, which went on to become NVIDIA's networking products. During his tenure with NVIDIA, Bukspan led Chip Design Networking, an organization with hundreds of employees worldwide, to impressive results. Bukspan was one of the leaders at Mellanox before it got acquired by NVIDIA for nearly $7 billion and whose products were trailblazers, particularly in the field of data centers, AI and high-performance computing. 

“I am very proud of Pliops’ achievements to date and am excited to work closely with Ido, who has an impressive track record,” stated Beitler. “I have no doubt that Ido will successfully lead Pliops forward and help implement our product roadmap and integrations with our customers.”

Added Aryeh Mergi, Pliops chairman, “In his position as CEO, Uri built and led Pliops from the day it was established to many outstanding achievements. Now, in bringing on Ido, we are adding someone with substantial experience in our target markets, and I have no doubt that the impressive career Ido built at NVIDIA and his leadership capabilities will help Pliops accelerate its current positive momentum to increase growth and expansion into additional markets.”

https://pliops.com/

  • Pliops employs approximately 110 employees in Israel, the U.S and China – and has to date secured approximately $215 million from prominent investors, including Koch Disruptive Technologies, State of Mind Ventures Momentum, Intel Capital, Viola Ventures, SoftBank, NVIDIA, AMD, WD, and SK hynix. 

Sunday, June 25, 2023

Blueprint: You Can’t Find Flaws in 5G Apps if You Don’t Know What to Look For

 By Glenn Chagnot, Sr. Director of Product Management – Cloud, Spirent Communications

Imagine you oversee a Communication Service Provider (CSP) organization transitioning to a cloud-native 5G architecture. You’ve put in extensive work building up skills to deploy and manage Cloud-Native Network Functions (CNFs), and you’re excited for the new agility and scalability of your telco cloud. But there’s a problem: the performance of one of your 5G production applications keeps degrading, and no one can understand why. You’re at risk of violating enterprise service-level agreements (SLAs), and your new service has barely gotten off the ground. 

You call a frantic all-hands meeting, and after hours of investigation, you finally pinpoint the issue: a new CNF isn’t getting the network performance it needs from the cloud. How did this happen? The Workload team points to the Cloud engineers. The Cloud team points back. Who is at fault —and more importantly, who’s responsible for making sure it doesn’t happen again? Unfortunately, you’ve just encountered one of the biggest blind spots causing headaches for CSPs around the globe. And the only one who can really fix this problem is you. 

In the dynamic cloud-native world we now live in, the performance of 5G applications depends directly on the performance of the underlying cloud. But if no one knows what each workload actually needs from that cloud, no one will be making sure they get it. That level of visibility wasn’t required before, so in many CSP organizations, these essential insights often fall through the cracks. But it doesn’t have to. You can take steps to shore up this oversight. When you do, you’ll find yourself with more stable, better-performing 5G services—and fewer sleepless nights. 

Navigating Complexity

To assure stable, performant 5G applications (such as firewall, 5G network functions, and so on), each CNF has specific requirements from the cloud infrastructure it runs on. If a workload doesn’t get what it needs in any of multiple dimensions (storage, memory, latency between CNFs or pods) its performance will degrade. Eventually, it will fail altogether. But exactly what a given workload needs—and who’s responsible for making sure it gets it—remains a gray area in most CSP organizations (Figure 1).

Figure 1. Who Fills the Gaps Between Cloud and CNF?

Cloud-native environments introduce enormous variability. A 5G workload might be deployed on multiple types of distributed Kubernetes pods, running on dozens of different physical or virtual hosts, across a variety of public and private clouds. A given CNF’s performance varies greatly depending on choices made at each of those layers, so there is no single answer for how the cloud should be configured. Even if there were, unexpected impairments will crop up in constantly changing cloud environments. If you don’t know a workload’s minimum requirements across all the different performance dimensions ahead of time, determining which one is impaired in production is like untangling a giant knot.

Compounding the problem, the nature of the data required—about the intersection of workload and cloud—falls precisely between the Application and Cloud team responsibilities that CSP organizations typically define. So, even if everyone agrees that this information is important, it’s not clear who’s responsible for providing it. 

There’s a clear solution to this challenge: thoroughly testing each 5G CNF, in the lab and preproduction, to characterize the performance it needs across every dimension of cloud. Once you have that data, you can then map it to specific cloud configurations, providing the critical context that’s been missing all this time. Now, Application teams can tell their Cloud colleagues exactly what they need for each workload. And Cloud teams know what to test for and monitor on an ongoing basis. 

Finding Answers

It sounds simple enough: You just need to test each CNF exhaustively in the lab (and then test again whenever something changes). Unfortunately, there’s no way to do that using current testing approaches. Even in the most sophisticated CSP labs, most testing infrastructure is still designed for traditional environments—not the dynamic, unpredictable conditions of real-world clouds. Indeed, this is one of the more common issues we see CSPs face. Legacy testing might show you how a 5G application performs in a cloud—an idealized, infinitely performant one. But it can’t predict how it will behave in your cloud, with its constant fluctuations and outright component failures. 

There are two approaches to address this problem, one short-term, one long:

Short-term: Work with an expert testing partner. The industry is developing new testing approaches for cloud-native 5G networks, but this effort is still very much in progress. It will be some time before productized solutions exist to simplify CNF-to-cloud testing. For now, the quickest, easiest way to resolve this disconnect is to work with one of the organizations currently inventing those tools and processes. 

Long-term: Start evolving teams and tooling for cloud-native testing. This problem isn’t getting easier; if anything, cloud environments will only get more complex and dynamic over time. There are no shortcuts, no vendor spec sheets coming that will make this go away. Eventually, you will need to build a CNF-to-cloud testing capability within your organization. Most likely, that will include expanding the charter of Application teams to collect this mapping data, and tasking Cloud teams with monitoring the production environment and regularly testing against those metrics. It will also require everyone to plan for closer collaboration in preproduction. You should be able to go CNF by CNF, identify those with issues, and make sure they’re addressed before promoting anything to production. 

The good news is that, once you know what to watch for, you can eliminate one of the biggest problems plaguing telco cloud organizations as they evolve to cloud-native architectures. Whether working with a partner or (eventually) testing yourself, you’ll be able to identify most issues that arise from CNF-to-cloud mismatches during testing and preproduction, when they’re far less expensive to fix. And when problems do arise in production, you’ll have meaningful baselines to measure against what you see in the environment, so you can quickly diagnose and correct them. Ultimately, you’ll find you can leave the fire drills and finger-pointing behind, and push ahead with new 5G services with confidence. 


Nokia boosts its AirScale baseband with latest ReefShark silicon

Nokia is boosting its AirScale baseband portfolio with greate performance, capacity, and improved energy efficiency thanks to the latest generation of its ReefShark System-on-Chip (SoC) silicon.

The rollout includes:

Introducing Levante and Lodos – Next-generation baseband capacity cards

  • Nokia introduces Levante, a 4G/5G capacity card that delivers ultra-performance. Levante doubles the number of supported Massive MIMO cells and yet reduces energy consumption by up to 60 percent. It also offers exponential scalability enabling up to three times larger site configurations. Nokia also adds Lodos to its baseband portfolio, a high-performance 4G/5G capacity card offering enhanced scalability and reduces energy consumption by up to 30 percent.

Introducing Ponente – Ultra-performance baseband control card

  • Nokia has also launched Ponente, a 2G-5G control card for ultra-performance with extreme energy efficiency. It supports increased traffic growth with up to 100 percent higher throughput capacity offering high-speed site connectivity. Ponente also reduces energy consumption by up to 80 percent and provides future-proof site evolution to 5G Standalone and 5G-Advanced, as well as efficiency in spectrum refarming. The cards integrate Trusted Platform Module (TPM) technology, which uses hardware-processed security keys that are more secure than software-processed keys.  

Introducing Pandion and Shikra – expansions to Nokia’s radio portfolio

  • Nokia further announced the expansion of its radio portfolio for O-RAN, Cloud RAN, and purpose-built scenarios with Pandion, Nokia’s latest generation of FDD remote radio heads, supporting up to three FDD bands in a single, optimized form factor. Nokia also announced Shikra, which complements Nokia’s comprehensive portfolio with leading-edge small cells for both outdoor and indoor scenarios.

Introducing MantaRay – Nokia’s new network management and optimization solutions portfolio

  • Nokia has also announced the launch of MantaRay, which brings the power of Artificial Intelligence/Machine Learning (AI/ML) to support intelligent, efficient, and cognitive RAN operations. The MantaRay portfolio includes MantaRay Network Management, Nokia’s future platform for Purpose-built RAN, Cloud RAN, and Core Network management, which can scale from a single server for small enterprises to large-scale implementations; MantaRay SON (Self-Organizing Networks) with advanced AI and cognitive capabilities to lead the transformation of mobile networks; and MantaRay RIC (Nokia’s O-RAN compliant near real-time RAN Intelligent Controller), which has the potential to become a key enabler for RAN programmability. Nokia also launches MantaRay Energy, which combines Nokia’s capabilities to optimize the energy consumption of radio access networks with AI and ML. 

Nokia’s AirScale baseband is O-RAN compliant and will be deployed with Nokia’s own, as well as third-party, radio products. It will also be operated in future hybrid networks with Cloud RAN. Levante, Lodos, and Ponente will be trialed later this year, with commercial shipments beginning in the first half of 2024.

Tommi Uitto, President of Mobile Networks at Nokia, said: “We are excited to introduce our enhanced portfolio of next-generation Radio Access Network solutions. Our new baseband delivers twice the performance with just half the energy, helping our customers meet their ESG targets. Enabling ultra-high capacity, our future-ready AirScale baseband portfolio helps manage exponential increases in traffic growth. With our MantaRay solutions portfolio, our customers can leverage the power of Artificial Intelligence in their mobile networks. All of these solutions are O-RAN ready, and Cloud RAN compatible, supporting the long-term network evolution to 5G-Advanced and beyond.”

https://www.nokia.com/about-us/news/releases/2023/06/21/nokia-launches-ultra-performance-airscale-baseband-and-brings-the-power-of-artificial-intelligence-to-mobile-networks/

Tech Update: Preprovisioning Private Cloud Infrastructure at Equinix

Hewlett Packard Enterprise will pre-provision GreenLake private cloud resources at Equinix data centers to help customers accelerate their hybrid cloud deployments.



In this video, Vishall Lall walks us through the strategic reasoning behind this move. 

Recorded at HPE Discover 2023 in Las Vegas.

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Tech Update: SRv6 for Telco Clouds

In order to build clouds in a telecoms environment, you need to be able to (1) set-up the lifecycle of network functions, and (2) interconnect the network functions together. 

In this video, Martin Halstead explains how SRv6 can be used as a common management plane for telco clouds.

Recorded at HPE Discover 2023 in Las Vegas. 

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Aviatrix names Doug Merritt as CEO

Aviatrix appointed Doug Merritt as CEO and President, replacing Steve Mullaney.

 Merritt was previously CEO and President of Splunk. Under Merritt’s leadership, Splunk grew revenues from the equivalent of $100 million in Annual Recurring Revenue (ARR) to nearly $3 billion in 2022. 

“I’ve worked alongside Doug throughout much of his career and have watched him become one of the most successful and respected enterprise CEOs with an incredible reputation for driving growth by delivering customer value,” said Nick Sturiale, Aviatrix Board Member and Managing Partner at Ignition Partners.

“In my due diligence, it became evident that Aviatrix is leading the creation of a massive new category and that Fortune 500 companies already view Aviatrix as their trusted partner for secure cloud networking,” said Merritt. “I’m grateful to Steve for instituting a ‘customer for life’ mentality, backed by an incredible team, committed to driving innovation while putting customers first. I look forward to leading the next phase of what is emerging as an iconic enterprise infrastructure company.”

https://aviatrix.com/aviatrix-appoints-doug-merritt-as-chairman-ceo-and-president/

SpaceX completes 43rd launch of 2023

SpaceX launched 56 Starlink satellites to low-Earth orbit from Space Launch Complex 40 (SLC-40) at Cape Canaveral Space Force Station in Florida.

The booster used for this mission had flown 8 previous times: CRS-24, Eutelsat HOTBIRD 13F, OneWeb 1, SES-18 and SES-19, and three Starlink missions.

The mission marks SpaceX’s 43rd launch of the year. The company has completed 242 Falcon 9 missions to date.

Starlink currently has 1.5 million subscribers globally.

EE brings temporary masts to major summer events

EE is deploying temporary 5G masts at major summer events across the UK.

More than 5 million people are expected to attend a UK music festival this summer, with more than 350,000 fans at the Isle of Wight Festival, Download, Parklife, and Radio 1’s Big Weekend in Scotland.  

 

Throughout the summer, temporary mobile masts are being installed at more music festivals across the UK, including:

  • Latitude Festival (20th – 23rd July)
  • Tartan Heart Festival (27th – 29th July)
  • Camp Bestival (27th-30th July)
  • Kendal Calling (27th – 30th July)
  • Boomtown (9th -13th August)
  • Creamfields North (24th – 27th August)
  • Reading & Leeds Festival (25th – 27th August)

Temporary masts are being deployed alongside EE’s permanent high-speed 4G and 5G mobile networks at iconic British sporting venues, including Silverstone, Cheltenham Racecourse, and Wembley Stadium.

This year will also see additional temporary installations at Royal Ascot, Boardmasters Festival, Goodwood Festival of Speed, and Goodwood Revival.

https://newsroom.ee.co.uk/ee-expands-mobile-network-with-temporary-sites-to-give-customers-a-summer-to-remember/

Thursday, June 22, 2023

Arelion doubles capacity per fiber pair on long-haul route with L-band

Arelion has upgraded its existing Infinera FlexILS flexible-grid line system to support the L-band on a high-traffic route from Ashburn, VA to Atlanta. The upgrade doubles capacity per fiber pair, marking Arelion’s first route with active L-band capacity in service.

Arelion, which plans additional L-band deployments on high-traffic routes in North America, said this innovation enables it to bring more capacity to market on a continent where long-distance fiber is in short supply in many regions.

“We’re seeing significant demand for additional capacity from our customers along this high-traffic route as these tech hubs grow rapidly,” said Georgios Tologlou, Senior Network Architect, Arelion. “This innovation is a strong business case for us to optimize the cost per bit and minimize operational expenditures. Leveraging L-band, we can maximize the capacity per fiber pair to quickly serve our customers’ demands and supercharge our sales growth on one of the most popular routes in our North American network.”

Infinera FlexILS is the industry’s most widely deployed flexible grid-compliant open optical line system, featuring C+L-band support and colorless-directionless-contentionless ROADM. It seamlessly doubles fiber capacity through L-band expansion from the adjacent C-band without impacting service or operational quality.

Infinera said its system enhances flexibility by supporting programmable configuration that optimizes operation based on performance, spectral efficiency, long span reach, and fiber conditions.

“Our platforms are purpose-built to enable seamless upgrades to provide the greatest amount of investment protection and enable our customers to meet relentlessly growing bandwidth demand,” said Ron Johnson, Infinera’s General Manager, Optical Systems and Network Solutions Group. “Expanding the network to support L-band doubles the spectrum that can be used to transmit optical signals, hence enabling Arelion to double the amount of services they can provide per fiber while simultaneously achieving simplification of their network through automation and flexible operation.”

https://www.infinera.com/press-release/arelion-doubles-capacity-on-ashburn-atlanta-route-with-infinera-l-band-technology/

Tech Update: LLM-as-a-Service via Supercomputer

Hewlett Packard Enterprise offer large language models on a cloud subscription basis. The upcoming service will use HPE's supercomputing resources attained via its acquisition of legendary supercomputing pioneer Cray Inc. in 2019.

https://youtu.be/GvVk4izNCY0

In this video, Edmondo Orlotti discusses the LLM-as-a-Service model, how and where it will be deployed, and additional resources that HPE brings to the table.

Recorded at HPE Discover 2023 in Las Vegas.

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Verizon tests 5G network slicing

Verizon recently demonstrated multiple network slices using a commercially available smartphone, virtualized and non-virtualized RAN equipment in production in the field, and Verizon’s multi-vendor 5G standalone core.. 

This end-to-end test successfully accessed network slicing capabilities from the device and validated the ability for the device chipset, operating system, application, radio network base station, and the core of the network to work in harmony to demonstrate a full end-to-end path for data to travel on a virtual network slice. Network slicing will be made available with the evolution of Verizon’s 5G standalone core.

Verizon said its 5G standalone core’s cloud-native virtualized applications, in combination with built-in Artificial Intelligence (AI) and Machine Learning (ML), will enable the dynamic allocation of the appropriate resources, referred to as network slicing. It will also allow for automated network configuration changes, including the ability to scale up or scale down network function capacity in real time - to provide the right service levels and network resources needed for each use case.

“Matching network performance characteristics to specific application requirements, network slicing promises differentiated customer experiences to efficiently provide our customers with the type of service they need to complete the task they want to complete on our network and provide them an exceptional experience,” said Adam Koeppe, Senior Vice President of Technology Planning at Verizon.

https://www.verizon.com/about/news/verizon-major-step-network-slicing-capabilities

Argonne National Lab advances Aurora supercomputer

The Aurora supercomputer at Argonne National Laboratory, which is a collaboration of Intel, Hewlett Packard Enterprise (HPE) and the Department of Energy (DOE), reached a milestone with the installation of  all 10,624 compute blades, boasting 63,744 Intel Data Center GPU Max Series and 21,248 Intel Xeon CPU Max Series processors.

The system incorporates more than 1,024 storage nodes (using DAOS, Intel’s distributed asynchronous object storage), providing 220 terabytes (TB) of capacity at 31TBs of total bandwidth, and leverages the HPE Slingshot high-performance fabric. Later this year, Aurora is expected to be the world’s first supercomputer to achieve a theoretical peak performance of more than 2 exaflops (an exaflop is 1018 or a billion billion operations per second) when it enters the TOP500 list.

Aurora's sleek rectangular blades contain processors, memory, networking and cooling technologies. Each blade consists of two Intel Xeon Max Series CPUs and six Intel Max Series GPUs. The Xeon Max Series product family is already demonstrating great early performance on Sunspot, the test bed and development system with the same architecture as Aurora. Developers are utilizing oneAPI and AI tools to accelerate HPC and AI workloads and enhance code portability across multiple architectures.

“Aurora is the first deployment of Intel’s Max Series GPU, the biggest Xeon Max CPU-based system, and the largest GPU cluster in the world. We’re proud to be part of this historic system and excited for the groundbreaking AI, science and engineering Aurora will enable,”states Jeff McVeigh, Intel corporate vice president and general manager of the Super Compute Group.

“While we work toward acceptance testing, we're going to be using Aurora to train some large-scale open source generative AI models for science," said Rick Stevens, Argonne National Laboratory associate laboratory director. "Aurora, with over 60,000 Intel Max GPUs, a very fast I/O system, and an all-solid-state mass storage system, is the perfect environment to train these models.”

https://www.intc.com/news-events/press-releases/detail/1631/aurora-supercomputer-blade-installation-complete

Vertical Systems: 2022 Global Provider SD-WAN LEADERBOARD

Vertical Systems Group announces that the following eight companies attained a position on the year end 2022 Global Provider Carrier Managed SD-WAN LEADERBOARD (in rank order based on site share outside of home country as of December 31, 2022): AT&T (U.S.), Orange Business (France), Verizon (U.S.), BT Global Services (U.K.), NTT (Japan), Telefonica Global Solutions (Spain), Hughes (U.S.), and Vodafone (U.K.). This industry benchmark for multinational SD-WAN market presence ranks companies that hold a 4% or higher share of billable retail sites outside of their respective home countries.

Twelve companies qualify for the 2022 Global Provider Managed SD-WAN Challenge Tier (in alphabetical order): Aryaka (U.S.), Colt (U.K.), Comcast Business (U.S.), Deutsche Telekom (Germany), Global Cloud Xchange (India), GTT (U.S.), Liberty Networks [formerly Cable & Wireless] (Barbados), PCCW Global (Hong Kong), Singtel (Singapore), Tata (India), Telia (Sweden), and Telstra (Australia). The Challenge Tier includes companies with site share between 1% and 4% of this defined SD-WAN segment.

“Leading global SD-WAN providers continued to expand their footprints into dozens of new countries during 2022, with the goal of providing multinational customers with seamless connectivity,” said Rosemary Cochran, principal of Vertical Systems Group. “There was some shuffling of provider rankings since our last Leaderboard release, as competition for global customers is intense and share differentials in this segment are extremely tight.”

Research Highlights

  • Vertical’s initial benchmark for this specialized segment was the Mid-2021 Global Provider Managed SD-WAN LEADERBOARD, which included site installations as of June, 30 2021. The share comparisons provided in this analysis are based on these two time periods.
  • The roster of companies ranked on the LEADERBOARD increased to eight in 2022, up from seven previously.
  • AT&T advances to first position on the LEADERBOARD, up from second and displacing Orange Business. AT&T also ranks first on the 2022 U.S. Carrier Managed SD-WAN LEADERBOARD.
  • BT Global Services moves up to the fourth LEADERBOARD position, which drops NTT to fifth position.
  • Hughes enters the LEADERBOARD in seventh position, moving up from the Challenge Tier. Vodafone dips from seventh to the eighth and final position.
  • The 2022 Challenge Tier remains at twelve companies, however with lineup changes. Lumen drops from the Challenge Tier into the Market Player tier, and Comcast Business (includes Masergy) moves up from the Market Player tier.
  • Carrier Managed SD-WAN solutions for multinational customers are typically custom hybrid network configurations that require global infrastructures and technical expertise, and may incorporate MPLS VPNs bundled with cloud connectivity, plus advanced security that is integral or provided with technology partners.
  • MEF 3.0 SD-WAN certification has been attained by the top three companies ranked on the 2022 Global Provider Carrier Managed SD-WAN LEADERBOARD – AT&T, Orange Business, and Verizon. Additionally, five companies cited in the Challenge Tier have MEF 3.0 SD-WAN certification as follows: Colt, Comcast Business, PCCW Global, Tata and Telia.
  • The primary technology suppliers utilized by the Global Provider SD-WAN LEADERBOARD and Challenge Tier companies are as follows (in alphabetical order): Cisco, Fortinet, HPE Aruba, Nuage Networks from Nokia, Palo Alto, Versa and VMware.

AWS to invest $100 million in Generative AI Innovation program

Amazon Web Services disclosed its intention to invest $100 million in a AWS Generative AI Innovation Center. The program aims to connect AWS AI and machine learning (ML) experts with customers around the globe to help them envision, design, and launch new generative AI products, services, and processes. 

“Amazon has more than 25 years of AI experience, and more than 100,000 customers have used AWS AI and ML services to address some of their biggest opportunities and challenges. Now, customers around the globe are hungry for guidance about how to get started quickly and securely with generative AI,” said Matt Garman, senior vice president of Sales, Marketing, and Global Services at AWS. “The Generative AI Innovation Center is part of our goal to help every organization leverage AI by providing flexible and cost-effective generative AI services for the enterprise, alongside our team of generative AI experts to take advantage of all this new technology has to offer. Together with our global community of partners, we’re working with business leaders across every industry to help them maximize the impact of generative AI in their organizations, creating value for their customers, employees, and bottom line.”

The center will offer workshops, engagements, and training. Customers will work closely with generative AI experts from AWS and the AWS Partner Network to select the right models, define paths to navigate technical or business challenges, develop proofs of concepts, and make plans for launching solutions at scale. The Generative AI Innovation Center team will provide guidance on best practices for applying generative AI responsibly and optimizing machine learning operations to reduce costs. 

Engagements will deliver strategy, tools, and assistance that will help customers use AWS generative AI services, including Amazon CodeWhisperer, an AI-powered coding companion, and Amazon Bedrock, a fully managed service that makes foundational models (FMs) from AI21 Labs, Anthropic, and Stability AI, along with Amazon’s own family of FMs, Amazon Titan, accessible via an API. They can also train and run their models using high-performance infrastructure, including AWS Inferentia-powered Amazon EC2 Inf1 Instances, AWS Trainium-powered Amazon EC2 Trn1 Instances, and Amazon EC2 P5 instances powered by NVIDIA H100 Tensor Core GPUs. Additionally, customers can build, train, and deploy their own models with Amazon SageMaker or use Amazon SageMaker Jumpstart to deploy some of today’s most popular FMs, including Cohere’s large language models, Technology Innovation Institute’s Falcon 40B, and Hugging Face's BLOOM.

https://aws.amazon.com/generative-ai/

Yokogawa enhances its Optical Spectrum Analyzer

Yokogawa Test & Measurement Corporation released an upgraded optical spectrum analyzer equipped with features that enhance performance and improve usability. The instrument (AQ6370E) can be used to characterize a wide range of components, including lasers for optical communications, optical transceivers, and optical amplifiers.

One of these new features is HCDR (high close-in dynamic range) mode, with which a user can measure a single longitudinal mode laser with a high close-in dynamic range. Close-in dynamic range is a key performance criterion when developing lasers and optical devices.  

There is also a SMSR (side mode suppression ratio) mode, which can reduce SMSR measurement time, and an APP mode.