Showing posts with label Spirent. Show all posts
Showing posts with label Spirent. Show all posts

Sunday, November 27, 2022

Blueprint: To unleash the 5G opportunity, we need to tackle 5G operational challenges

by Charles Thompson, Vice President, Service Assurance, Spirent Communications

5G brings incredible opportunity for communication service providers (CSPs), enterprises, and the broader digital ecosystem. By 2022, there were already 700 million 5G subscriptions across more than 70 countries—an explosion of devices that can take advantage of 5G density and performance. Even more exciting, the industry is gearing up to unleash a new generation of enterprise use cases across manufacturing, healthcare, retail, and other verticals. 

Operators and their customers are banking on new 5G capabilities like ultra-low latencies, native cloud/edge connectivity, and network slicing to fuel transformative new business models. Before that can happen, however, we need to be confident that CSPs can actually operate next-generation networks and services. And so far, that’s not a given. 

5G introduces a radically different network than CSPs have worked with before, requiring new strategies for monitoring, troubleshooting, and other basic network operations. It’s tempting to focus on the amazing 5G possibilities. But for most CSPs, just assuring 5G networks and services remains a work in progress. 

Navigating 5G Complexity

Why does 5G present so many challenges? Because it changes pretty much everything about telecom networks, from deployments to updates to the basic definition of “network infrastructure.” Most current operations strategies were designed for yesterday’s networks. They’re built to assure mostly hardware-based network functions from one or two vendors, and services with fixed, predictable traffic patterns. In a 5G world, however, the network mimics a living, breathing organism, composed of virtualized and disaggregated software running as a dynamic hybrid cloud. 

It’s a huge change, and for CSP assurance teams, it brings: 

  • New technologies: 5G network functions are more flexible and adaptable, scaling in and out dynamically as conditions change. But for teams trying to monitor network services, this means service paths constantly change too—including traversing clouds and infrastructure segments outside the CSP’s control. 
  • Cloud software models: By running open, disaggregated network architectures, CSPs can work with new vendors and more quickly tap into new innovations. But these architectures also bring many more network layers and interfaces that assurance teams now have to observe. Additionally, instead of receiving software updates two to three times per year and implementing them in fixed maintenance windows, operators now receive continuous updates from many more vendors, each releasing on its own cadence.  
  • Cloud-centric architectures: The passive assurance tools used to monitor 4G networks assumed a more centralized topology, with the “network edge” located in a few large regional data centers. To enable new 5G use cases with ultra-low latencies and advanced edge intelligence, CSPs are embracing highly distributed architectures. Large operators might maintain 50 edge data centers—and potentially hundreds more “far edge” sites hosting network functions closer to customers. When monitoring is designed to observe a few fixed points in the network, that’s no longer enough. 
  • New security concerns: The traditional enterprise network perimeter has eroded, with most applications and users now operating outside the firewall. As a result, almost all data is now encrypted. How can operators measure end-user experience in an always-encrypted world? 

If you’re wondering how current assurance strategies will adapt to this new reality, CSP operations teams are, too. Traditional approaches rely on passive monitoring infrastructures that collect real user data from live services. This type of monitoring can’t keep up with dynamic cloudified networks and service paths that continually change. Even if it could, it would still only detect problems after they’d affected customers. By then, the stringent service-level agreements (SLAs) on which operators are depending to monetize their 5G investments may already be violated. 

Introducing Active Assurance

Traditional static probes may not scale with 5G networks, but another monitoring strategy seems tailor-made for them: active assurance. Active assurance agents function like a virtual device, injecting synthetic traffic into the network to measure performance from a user’s point of view. They can plug into any part of the network, running the same applications and emulating the same behavior as real users. And since they use the same authentication and trust framework, they provide a firsthand view of what real users experience. 

Active assurance can continuously monitor the performance of complex 5G networks, applications, and services. By emulating real application traffic, CSPs can maintain SLAs for the most demanding 5G use cases. And unlike traditional monitoring, which only measures real user traffic, active assurance can address the full network lifecycle: validating new network functions and slices before activation, monitoring and troubleshooting live services, and re-validating after any change. 

It adds up to an assurance strategy perfectly suited for 5G networks and services. CSPs can:

  • Detect problems before users: Active assurance uses artificial intelligence and machine learning (AI/ML) to spot emerging issues in highly dynamic, distributed environments. Combined with automated activation testing and post-change validation, CSPs can spot many problems before they affect live services—essential for supporting more stringent SLAs. 
  • Scale with dynamic 5G networks: There’s no way to instrument static monitoring infrastructure for service paths that are constantly in flux, or that traverse third-party networks and clouds. But active agents work like any other endpoint, sending traffic through the network and observing how the network performs. As a result, they capture the end-to-end service experience—including those parts outside the operator’s control. 
  • Accelerate root cause analysis: Since active assurance follows the same path through the network as real users, it provides true end-to-end visibility. Supported by AI analysis tools, operations teams can quickly segment any problem, even when it originates in someone else’s network. 
  • Support encrypted traffic in motion: Traditional static monitoring must decrypt packets to analyze the service experience—limiting where it can be used and potentially increasing risk. Since active assurance uses the same security, following the same paths as real users, no decryption is needed. 
  • Automate testing: Active assurance plugs right into the automated, AI-enabled operational models that accompany modern cloud-native, software-driven networks. Service providers can automatically invoke active testing as part of Continuous Integration/Continuous Delivery (CI/CD) toolchains and change management procedures. And they can use automated triage test scripts to quickly isolate issues.

Looking Ahead

5G networks hold enormous potential for CSPs and their customers—provided we can overcome the daunting operational challenges that come with them. CSPs are still refining the monitoring strategies they’ll need to deliver on 5G’s potential. But with active assurance, they have a powerful toolset for assuring 5G services—and a clear roadmap to operationalize them. 


Tuesday, October 11, 2022

Spirent and Nokia show 800G interoperability

Spirent Communications and Nokia demonstrated 800G interoperability in data center environments. 

The interoperability testing was conducted at the recent Nokia SReXperts Americas event, leveraging Spirent’s B2 800G Appliance and the Nokia 7750 Service Routing (SR) platform powered by Nokia's FP5 network processor silicon. The demonstration featured Nokia generating 1.6Tbps of data through two Nokia 7750 SR series routers using 800G QSFP-DD DR8 optical transceivers. High-density 800G testing in a highly flexible, multi-rate 2U B2 test platform enables service providers and network operators to deploy muti-rate networking infrastructure to meet growing demand for network bandwidth. 

Nokia offers a suite of 800G enabled systems, scaling from linecards with 36x 800G QSFP-DD to fixed systems with 36x 800G QSFP-DD and 48x 800G QSFP-DD, including many smaller steps in between for the right scale power, capacity, and economics.

“Spirent has developed a comprehensive, end-to-end 800G testing suite that leverages our decades of experience in Ethernet testing,” said Aniket Khosla, VP of Cloud & IP Product Management at Spirent. “This latest successful 800G demonstration with Nokia to validate their FP5 network processing silicon and 7750 SR platform’s capability to support high-density standards based QSFP-DD 800G ports will ensure successful deployments of this complex new technology, while enabling Nokia’s customers to build deterministic, efficient high-speed networks to meet future needs and deliver high-quality user experiences.”

“For today’s IP networks to enable tomorrow’s applications, faster is better but it’s not enough,” said Ken Kutzler, VP of IP Routing Hardware at Nokia. “These networks must also be deterministic, secure, efficient, and consumable. Our high-profile demonstration with Spirent helped validate the market readiness of our FP5 silicon – the heart of Nokia’s IP service routing platforms – to deliver the right foundation to ensure IP networks can efficiently scale, evolve, and stay ahead of shifting market demands.”

https://www.spirent.com/products/800g-ethernet-testing

What's hot at OFC22? Spirent on 800G

One of the hottest topics at OFC22 was 800G (2x400G), enabled by 112Gbps electrical lanes, explains Steve Rumsby, Demo Architect, Spirent.A multivendor interoperability demo was hosted by the Ethernet Alliance.https://youtu.be/feZi4ipf...

Spirent and MultiLane collaborate on QSFP-DD 800G testing

Spirent Communications has partnered with MultiLane, a global leader in data center interconnects, to offer vendor-neutral testing solutions supporting the 800G ecosystem. Specifically, Spirent and MultiLane are working together to resolve QSFP-DD800 testing challenges. QSFP-DD800 is one of the first port standards that uses individual electrical 100G lanes. The design, optimization, and fabrication of these 100G lanes presents a significant...

Spirent and Innolight test 800G

Spirent Communications has validated an 800G optical transceiver from InnoLight Technology (Suzhou).The project successfully demonstrated an 800G link up and line rate traffic transmission using IEEE 802.3ck OSFP for VSR application. InnoLight and Spirent engineers worked closely to develop and get the 800G link operational to emulate the traffic of hyperscale datacenters.“We were delighted to work with Spirent to showcase this latest step towards...


Sunday, August 7, 2022

Video: Standardizing SD-WAN and (soon) SASE



SD-WAN evolved independently with a number of big players and, as a result, all of their solutions are different, notes Dave Larson, GM and CTO of Spirent.

SASE, as an extension of SD-WAN, brings a new set of monetization possibilities.

MEF is about using standards and APIs to level of playing field.

https://youtu.be/wwWMah7yeBE

Thursday, June 16, 2022

Spirent debuts CF400 security and application delivery test platform

Spirent Communications introduced its CF400 Appliance for the validation of hyperscale networks and security controls.

Spirent’s CF400 Appliance is the industry’s first network security and application delivery test platform to provide 400G of application traffic and 200G of encrypted traffic performance testing capabilities, including full HTTP/3 testing in a single appliance. The ability to combine the CF400 with previous platforms enables customers to grow their test capabilities gradually and protect their existing investments without forklift upgrades.

“Cloud computing, IoT and a hyper-connected digital economy have been straining enterprise IT resources and rapidly increasing the performance demands from today’s security solutions. Organizations are under tremendous pressure to make the right security investments to ensure their networks are scalable and secure for their business-critical applications,” said Spirent’s Sashi Jeyaretnam, Sr. Director of Product Management for Security Solutions. 

“The Spirent CF400’s modular appliance architecture provides the flexibility to stack multiple appliances together in a single test system to validate the performance limits of multi-terabit-scale, app-centric infrastructures. The solution greatly simplifies high-performance security testing, especially with its automated goal-seeking capabilities which automatically determine peak performance, allowing users to greatly reduce test time to determine best performance for their unique configuration and traffic loads,” said Jeyaretnam.

https://www.spirent.com/newsroom/press-releases/spirent-cf400-appliance-delivers-accelerated-scalable-network-performance

Sunday, December 5, 2021

Blueprint: To Unlock the 5G Future, Service Providers Need to Get Active

by Steve Douglas, Head of Market Strategy, Spirent Communications

Imagine a big storm just passed through your neighborhood, and you’re worried it might have damaged your roof. Do you:

a. Go investigate how the roof is holding up 

b. Wait until the next storm to see if water starts dripping into your bedroom

Most of us would choose option A. It just makes sense to try to determine if something is broken ahead of time, before it fails and creates a bigger, more expensive problem. And yet, that’s not the approach most service providers use today when monitoring their networks.

Modern active monitoring technologies let operators poke and prod their networks in a variety of ways to spot potential problems before they affect customers. But only a fraction of service providers actually use them across the end-to-end network. Instead, most rely on the same techniques they’ve used for years: passively collecting telemetry data, analyzing it over time, detecting many problems only when someone calls to complain. 

This has never been an ideal situation, but in the near future, it will be an impossible one. As service providers progress with 5G rollouts, passive monitoring strategies fall apart. Which means, active testing and assurance is no longer optional. It’s becoming a mission-critical requirement. 

 Problems with Traditional Testing

Historically, most operators have relied on passive monitoring to assess network health, isolate faults, and ensure they live up to their service-level agreements (SLAs). That is, they deploy passive probes throughout their environment to capture network traffic data, dump that data into huge data lakes, and run analytics on it to identify anomalies. Active monitoring takes a more proactive approach. Instead of waiting for statistical analysis to reveal issues over weeks or months, it continually injects synthetic traffic into the network to measure performance in real time. 

Active monitoring is not a new concept. Many operators use it today in transport networks, where they’ve been seeking to introduce self-healing and automation capabilities. In the heart of most networks though, the passive approach still dominates. Now, that’s starting to change in response to five big trends:

  • Cloudification: To enable more agility and automation, operators are implementing more of the network as software, hosted in cloud environments. As a result, network elements are no longer static, rigid functions. They’re dynamic pieces of software that can be continually spun up and moved across cloud environments.  
  • Openness: The 5G specification mandates open interfaces. This allows operators to work with new vendors and open-source technologies in ways that weren’t possible before. But it also means that, instead of getting software updates a couple times a year from one or two well-known suppliers, you can now expect constant updates from dozens of vendors. 
  • Automation: Legacy manual approaches can’t keep up with the volume and velocity of change in cloudified networks. As complexity and costs grow, operators need to automate more of their operations and enable self-healing, self-optimizing networks. 
  • Artificial intelligence (AI): To enable true “self-driving networks,” you can’t stop and wait for human beings to make decisions. So, AI is playing play a larger role in network operations. 
  • Shift to work from home: Businesses were already seeing their workforces get more distributed, but COVID-19 kicked this trend into overdrive. Suddenly, operators need to deliver business-quality network experiences anywhere and everywhere.
As these trends converge, network traffic patterns become incredibly dynamic, elastic, and hard to predict. Just understanding what’s happening out there, much less isolating the source of issues, gets enormously difficult—especially if you’re relying on passive probes in static locations. 

Getting Active 

To navigate these issues and position themselves to succeed in the 5G marketplace, service providers are now extending active testing and assurance across more of their networks. Active monitoring involves three basic components: 

  • Active test agents—lightweight software probes that can run on any cloud compute platform and be spun up anywhere in the network, even on end-user devices
  • Large testing libraries to cover a variety of simulations—voice calls, video sessions, web browsing, low-latency services, and more
  • Intelligent automation, so the environment can not only run tests in the background continuously but can make smart decisions about which tests to run and where, without human input 

By adopting active testing and assurance, you can:

  • Monitor more proactively: With active testing always working in the background, you can continually probe your environment and spot most problems before they affect customers or SLAs. 
  • Accelerate change management: Active testing can become a default step when provisioning new services or network functions (NFs), immediately validating their performance as soon as they’re deployed. But it’s also valuable for contending with nonstop multivendor software updates. Now, you can rapidly test and validate updates in the live network, instead of having to wait weeks or months for lab testing. 
  • Assure SLAs: A growing number of services use hybrid environments, where parts of the service depend on cloud providers or other third parties. How do you guarantee that enterprise customers get the performance they’re paying for when you don’t fully own the service delivery infrastructure? The only way is to continually test the end-to-end service. 
  • Reduce mean time to repair (MTTR): If you’re relying on passive monitoring, you have to capture enough statistical data to feel confident that an anomaly signifies a real problem. Getting to that point takes time—especially if you’re waiting for organic traffic to recreate the conditions that caused the issue. Too often, while you’re waiting, customers are already calling to complain. With active monitoring, you can recreate any network conditions synthetically. And when you identify issues, you can isolate their source more quickly. 

In early active testing deployments, we’ve seen operators reduce MTTR by close to 75% through rapid fault isolation. Just as important, they’re seeing trouble tickets fall by nearly 90% through proactive monitoring—meaning they’re fixing most issues before they ever impact customers.

Preparing for the Future

Active testing can be enormously useful in today’s telecommunications networks. But if you want to achieve your business objectives in the coming years for 5G, it’s absolutely essential. Whether you’re embracing DevOps software methodologies to accelerate innovation, offering low-latency enterprise services under SLAs, or driving down costs and complexity with self-driving networks, you can’t do any of it with passive monitoring. It’s time for active assurance. 





Tuesday, October 12, 2021

DISH picks Spirent for 5G core automated testing

DISH Network has selected Spirent Communications to autonomously test its 5G network core and validate its performance. 

Spirent said its library of automated compliance, capacity and performance test suites, as well as test cases, enables DISH to verify 5G functionality, measure system performance and accelerate deployment activities. By automating the testing process, DISH can continuously verify real-world performance and resilience during its network rollout, proving the public cloud is telco-grade, and scaling up a continuously improving system.


“DISH is transforming the industry as it prepares to deploy 5G in a public cloud network and pioneer Open Radio Access Network (Open RAN) technology,” said Doug Roberts, general manager of Spirent’s lifecycle service assurance business. “Spirent understands the inherent challenges that come with building an open, secure network and supporting a new, first-of-its-kind delivery model. We’re excited to assist DISH in driving operational excellence across the entire lifecycle with industry-leading automation, coverage and analytics capabilities.”

“As we deploy our cloud-native 5G network, we’re looking forward to seeing the transformation of how organizations and customers will order and consume 5G services on their own slices and private networks,” said Marc Rouanne, chief network officer, DISH Wireless. “Spirent provides the testing functionality and experience we need to ensure positive customer experiences. And, as a leader in 5G testing and automation, Spirent offers us the security and confidence to introduce our state-of-the-art 5G network into the market.”

https://www.spirent.com/newsroom/press-releases/dish-selects-spirent-for-5g-core-automated-testing

DISH builds its 5G core in AWS

DISH Network will construct its 5G Open Radio Access Network (O-RAN) network on AWS.DISH, which is partnering exclusively with vendors offering cloud-native technology, plans to begin deploying the network in Las Vegas later this year.  All hardware and network management resources will be connected through AWS, including DISH’s fully automated Operation and Business Support Systems (OSS and BSS) for 5G services.DISH said its groundbreaking,...

Spirent and AWS collaborate on automated 5G network testing

Spirent Communications is working with Amazon Web Services (AWS) to bring automated 5G testing capabilities to communications service providers (CSPs) building 5G networks on AWS.The collaboration combines AWS’s Continuous Integration and Continuous Delivery (CI/CD) pipeline with Spirent’s vendor-neutral 5G test capabilities.With the introduction of 5G Network Validation on AWS, utilizing Spirent’s Landslide 5GC Automation Package, operators can...


DISH picks VMware for 5G cloud-native O-RAN

DISH selected VMware's Telco Cloud solution for its 5G, cloud-native Open Radio Access Network (O-RAN). VMware said its Telco Cloud will enable DISH to utilize software from leading vendors to optimize and accelerate its 5G network deployment. Additionally, it will provide DISH with enhanced automation, resiliency, security and flexibility. The VMware Telco Cloud provides an abstraction layer across multiple network domains and enables DISH to leverage...

DISH adds Intel as a 5G infrastructure partner

 DISH will integrate Intel 5G infrastructure technology into its forthcoming virtualized, open Radio Access Network (O-RAN) 5G network deployment. Specifically, DISH has selected the Intel Xeon Scalable Processor, the Intel Ethernet 800 Series network adapter, the Intel vRAN Dedicated Accelerator ACC100 and Intel's FlexRAN software reference architecture for its deployments.The companies are collaborating on the fully virtualized RAN, including...


Wednesday, September 15, 2021

Spirent and MultiLane collaborate on QSFP-DD 800G testing

Spirent Communications has partnered with MultiLane, a global leader in data center interconnects, to offer vendor-neutral testing solutions supporting the 800G ecosystem. 

Specifically, Spirent and MultiLane are working together to resolve QSFP-DD800 testing challenges. 

QSFP-DD800 is one of the first port standards that uses individual electrical 100G lanes. The design, optimization, and fabrication of these 100G lanes presents a significant challenge for host and pluggable developers alike. The partnership facilitates the test and verification of QSFP-DD hardware, including transceivers, switches that use these transceivers, and hyperscaler use cases.


“Successful 100G electrical lane design requires novel techniques and robust test procedures,” said Kees Propstra, Vice President of Marketing at MultiLane. “Our joint effort with Spirent to tackle these challenges facilitates the transition to the 800G node, the next frontier in data center interconnects.”

Spirent offers 800G validation solutions for the entire ecosystem, with support for various speed modes including 1x800G, 2x400G, 4x200G and 8x100G. The company helps its customers qualify equipment so they can determine which supplier will best meet their requirements. For partners, Spirent provides a neutral test solution to validate their vendors.

“Spirent has developed a comprehensive, end-to-end 800G testing suite that leverages our decades of experience in Ethernet testing,” said Aniket Khosla, VP of Product Management, Cloud and IP at Spirent Communications. “Our partnership with MultiLane will assure successful deployments of this complex new technology while helping customers improve product quality and ensure reliable, high-quality user experiences.”

Multilane's 800G test solutions include QSFPDD-800 thermal load loopbacks, module/host compliance boards and noise injection Bit Error Rate Testers (BERTs).

http://www.spirent.com/HSE

Thursday, September 9, 2021

Spirent: 5G trends accelerating

As of mid-year 2021, 5G trends are continuing to accelerate, with 5G SA Core evaluation, testing and launch activities growing significantly across all geographic regions, according to Spirent Communications, which supplies test, assurance, and analytics solutions to mobile operators and network equiment vendors and device suppliers worldwide.

“At the halfway point in 2021, the dominant 5G trends that were present at the start of the year continue to gather pace, with the need for agility and responsiveness enduring,” said Spirent’s Head of Market Strategy, Steve Douglas. “With end-user adoption increasing at a blistering pace, service providers in all major regions are focused on accelerating time to market, improving coverage and optimizing costs. It’s clear that the global 5G race is back on.

Some highlights of the mid-year addendum to the Spirent 5G report: 

Geographic Trends - All major regions (North America, Europe and Asia) are aggressively pursuing 5G Standalone (SA) Core testing and deployments. North America is driving the demand for customer experience and service assurance solutions. Asia Pacific continues its focus on and investment in transport infrastructure, toward the goal of supporting industrial use cases. Europe is starting to accelerate activities after COVID and high-risk vendor delays.

5G Standalone - New services and differentiation are driving 5G Standalone. 5G SA Core evaluation, testing and launch continue to grow significantly across all geographic regions. Large service providers are looking to use multiple vendors while smaller telcos look for one key partner. Key challenges include supporting high release volumes and managing multi-vendor performance.

5G Telco Edge Cloud - Partnerships, early trials and deployments between hyperscalers and service providers are expanding. Providers are still working to benchmark edge performance and integrate assurance for consistent, deterministic latency. Latency looks set to become a key battle ground for the hearts and minds of industry and enterprises.

Open RAN - There are currently 45 ongoing Open RAN trials and early deployments across 27 countries (source: TeckNexus). Leading 5G service providers are targeting larger-scale Open RAN non-dense urban rollouts during 2022. Early deployments will focus on rural, indoor and private coverage. Interoperability, performance, robustness and system integrator overheads require that service providers continue to test and validate every deployment phase.

6G Vision - The industry is beginning to coalesce around some key themes, including THz frequencies, use of intelligent reconfigurable surfaces and metamaterials, open networking and network of networks (terrestrial cellular, NTN, subsea, and Wi-Fi convergence).

Spirent’s “5G 2021: Market Drivers, Insights & Consideration” addendum is available here:

http://www.spirent.com/assets/the-spirent-2021-5g-report

Wednesday, June 2, 2021

Spirent and AWS collaborate on automated 5G network testing

Spirent Communications is working with Amazon Web Services (AWS) to bring automated 5G testing capabilities to communications service providers (CSPs) building 5G networks on AWS.

The collaboration combines AWS’s Continuous Integration and Continuous Delivery (CI/CD) pipeline with Spirent’s vendor-neutral 5G test capabilities.


With the introduction of 5G Network Validation on AWS, utilizing Spirent’s Landslide 5GC Automation Package, operators can easily leverage the fully integrated 5G test automation capabilities to rapidly test and validate both deployments and updates of 5G network functions and services. It provides a continuous delivery framework using AWS CodePipeline, together with its security and observability best practices, and is available in all AWS Regions. The solution is fully decoupled and highly scalable, supporting many parallel tests, while allowing several types of network tests which can be automatically triggered as part of the 5G Network application pipeline.

“Service providers around the world are facing a number of distinct challenges as they look to deliver on the promise of 5G,” said Doug Roberts, general manager of Spirent’s Lifecycle Service Assurance business. “The race is on to deploy new 5G technology, but because it is highly complex and new, there is a genuine lack of expertise and resources available to establish and deliver the vital 5G core testing and validation necessary to successfully get these complex networks and services to market.”

“Manually establishing such complex testing requirements is a very time-consuming process, typically running into many months,” says Roberts. “Thanks to our new collaboration with AWS, service providers can leverage Spirent’s 5G expertise and proven test methodologies to easily incorporate automated 5G testing and validation on AWS, reducing months to minutes. They will be able to test with confidence, dramatically accelerate time-to-market, and analysis shows significant cost savings can be achieved compared to traditional manual testing methods.”

http://www.spirent.com/Landslide5GCAP

Thursday, April 22, 2021

Spirent intros subscription-based Automated 5G Core Test Suite

Spirent Communications introduced a subscription-based, automated 5G core test platform designed to accelerate time to market for service providers and significantly reduce costs associated with 5G core validation.

The Spirent Landslide 5GC Automation Package provides access to a managed library of hundreds of prebuilt test cases covering compliance, capacity, and performance testing for nodal, adjacency and end-to-end assessment, including the largest nodal coverage in the industry. It is built around a number of award-winning products and solutions such as Spirent Landslide core emulation, Spirent Velocity test automation, and the company’s world-class professional services.


“This is a true automation pipeline approach for service providers that need to accelerate their 5G deployment while managing tight budgets and resources,” said Doug Roberts, general manager of Spirent’s Lifecycle Service Assurance business. “The value extends well beyond initial deployment, helping validate network changes and, as standards evolve, eliminating the need to resource for ongoing test development.”

“Customers will not only benefit from significant time and cost savings, they can also be confident that they are relying on Spirent’s extensive 5G expertise and proven test methodologies to minimize risk and ensure their 5G rollouts are a success,” added Roberts.

http://www.spirent.com/Landslide5GCAP

Monday, April 19, 2021

Spirent and Innolight test 800G

Spirent Communications has validated an 800G optical transceiver from InnoLight Technology (Suzhou).

The project successfully demonstrated an 800G link up and line rate traffic transmission using IEEE 802.3ck OSFP for VSR application. InnoLight and Spirent engineers worked closely to develop and get the 800G link operational to emulate the traffic of hyperscale datacenters.


“We were delighted to work with Spirent to showcase this latest step towards 800G interoperability,” said Osa Mok, Chief Marketing Officer for InnoLight. “As vendor-agnostic test and measurement leaders, Spirent was able to help us create the environment to continuously test and validate the performance of our 800 Gbps OSFP DR8+ 2km SMP optical transceivers, which are such vital components of the future datacenter and cloud network ecosystem.”

"We are seeing increasing demand from customers for 800G test solutions, and this partnership with InnoLight is a major step forward in proving interoperability and increasing customer confidence in this new technology,” said Abhitesh Kastuar, general manager, Cloud & IP, Spirent Communications. “We are working at the bleeding edge of current high-speed Ethernet technology development to enable our customers to design, develop and eventually deploy 800G technology, and this successful interoperability demonstration will give early adopters the confidence to accelerate design and development of their 800G capable next-gen devices.”

http://www.spirent.com/HSE

Sunday, June 7, 2020

Rakuten Mobile employs Sprirent for 4G/5G testing

Rakuten Mobile is working with Sprirent Communications in support of the operator’s current LTE services, planned 5G Non-Standalone (NSA) and Standalone (SA) rollout in Japan.

Specifically, Rakuten Mobile required testing capabilities to assure the performance of new services and selected Spirent Landslide for core network testing. With LTE services now live and deployment of its 5G NSA network planned for later in the year, Spirent will work with Rakuten Mobile to ensure a solid customer experience.

Rakuten Mobile is also using the Spirent iTest network automation and verification solution for regression testing to speed validation timeframes, allowing Rakuten Mobile’s engineering teams to remain focused on new service creation for subscribers.

“We are excited to collaborate with Spirent for core network testing,” said Tareq Amin, representative director, executive vice president and CTO of Rakuten Mobile. “Given their extensive in-region and global MNO/MVNO experience, advanced methodologies for testing fully-virtualized networks and ability to serve in a consultative role, we are confident that our collaboration will allow us to offer innovative and exciting next generation mobile services to Rakuten Mobile customers.”

“Rakuten Mobile are market trendsetters and Spirent is proud to leverage our depth of experience and advanced testing solutions portfolio to ensure Japan’s newest operator can focus on achieving its vision for offering comprehensive communications services that combine a simple service plan and cutting-edge technologies,” said Spirent’s country manager for Japan, Akihiro Nakamura. “We look forward to working alongside the company as subscribers take advantage of its new services and new deployment targets are set.”

Wednesday, February 12, 2020

Spirent on 5G: What to expect in 2020

There is a rush to move past 5G Non-Standalone (NSA) to Standalone (SA) rollouts because it is a quicker path to revenue and profitability for carriers, according to a new report from Spirent Communications.  The “5G: What To Expect In 2020” report draws on the company’s expansive work with operators, network equipment manufacturers and device makers.

“2019 brought worldwide 5G Non-Standalone deployments but meaningful revenues were elusive as operators struggled to break out with market-defining services that could ignite consumer enthusiasm,” said Spirent head of 5G, Steve Douglas. “Spirent’s report goes behind the scenes of our 5G testing engagements to explore what went as planned, where there were stumbles and why the outlook is brightest as stakeholders evolve strategies to capitalize on emerging opportunities, especially in the enterprise.”

Key findings from Spirent’s “5G: What To Expect In 2020” report include:
  • 5G Standalone coming earlier than expected. There is a rush to move past Non-Standalone (NSA) to Standalone (SA) rollouts in an effort to capture revenues in industries like manufacturing, automotive, mobile gaming, manufacturing and beyond. Based on testing timetables, Spirent expects a slate of 5G SA deployments in the first half of 2020. 
  • Smartphone performance challenges extend beyond the device itself. 5G device performance pains stemmed from issues related to the vast number of antennas that must be packed into devices, but also challenges introduced by 5G New Radio, which was not tuned to exploit all capabilities defined within standards. The result sometimes produced performance that looked more like 4G LTE. 
  • Experiences were not optimized to wow consumers. In cases where 5G did deliver anticipated speeds, feature sets and apps were not optimized to take advantage of the speed and bandwidth, meaning consumers couldn’t discern a major experience difference. Spirent expects mobile gaming to be among the earliest consumer use case to capitalize on customized 5G performance boosts. 
  • Assurance now a requirement, not an afterthought. Spirent closed the year having kicked off the first nationwide North American 5G assurance deployment as operators seek to shore up network performance in a bid to deliver the robustness and reliability that will be demanded by enterprise customers.  
  • Some of 5G’s biggest advancements are happening underground. It is ultimately transport networks that will support the data deluge 5G is expected to attract. Significant investment is going toward assuring these networks won’t collapse under heavy demand, with expansive testing efforts underway right now. 


The full report is available online: https://www.spirent.com/assets/rp/rp_5g-what-to-expect-in-2020

Tuesday, January 7, 2020

China Mobile employs Spirent for testing 5G Slicing Packet Network

China Mobile is working with Spirent Communications to assure readiness of mission-critical 5G applications via network slicing transport standard testing and validation.

Spirent's 5G transport and network slicing testing solution provides scalable protocol emulation and L2-L7 traffic generation over the slicing channel layer. Spirent’s solution expands SPN network slicing test capabilities to help ensure the diverse bandwidth, latency, security and time synchronization required by 5G applications.

China Mobile has chosen the newly-launched Spirent FlexE-100 test module to test functional and performance aspects related to 5G transport SPN (Slicing Packet Network). Specifically, Spirent’s FlexE-100 test module will be utilized to test the functional, performance and specification aspects related to 5G transport SPN.

SPN has been accepted by the ITU Telecommunication Standardization Sector (ITU-T) for further work towards the G.mtn (Metro Transport Network) standard series, which provides an end-to-end transport network architecture that enables network slicing to meet the most demanding requirements of 5G applications. These standards are essential to successful deployment of ultra-reliable low-latency, high bandwidth, massive, scalable 5G services. Standards-based testing for SPN validates use cases, technologies and solutions prior to deployment, improving interoperability.

Commenting on the next-generation network testing work, Li Han, Vice Director of the Department of Network and IT Technology Research at the China Mobile Research Institute, said: "As operators, network equipment manufacturers and chip suppliers are developing SPN/MTN-enabled products, and exploring and expanding their applications in various scenarios, China Mobile has deployed 5G commercial SPN transport, providing reliable SLA for different 5G applications through multi-layer network slicing. We are pleased that Spirent launched the FlexE-100 test module on its flagship Spirent TestCenter platform and look forward to continuing our cooperation on SPN/MTN testing and use case development, with the goal of driving the commercial deployment of 5G transport network."

http://www.spirent.com/FlexE

Monday, December 16, 2019

China Mobile tests 5G with Spirent

China Mobile is using Spirent’s radio frequency (RF) channel emulation technology to help compare the performance of new 5G chipsets and consumer smartphones from leading global manufacturers.

The new YuHeng system allows operators and device manufacturers to test their RF solutions in the lab with the latest 5G base stations (gNodeB) that employ sophisticated new radio technologies such as massive MIMO beamforming. Devices under test are positioned within an RF anechoic chamber and are driven by a commercial base station, allowing the system to evaluate the performance of the device’s antenna configuration, baseband algorithms, hardware and software design.

Spirent’s Vertex RF Channel Emulator is used to replicate real-world indoor and outdoor effects that can influence radio efficiency, such as multi-path loss, reflections, absorption, delay, doppler frequency shift and antenna polarization. Both downlink and uplink propagation channels are modeled by the system, and multiple types of device-in-motion simulations can be created to replicate real-world scenarios such as walking in an urban environment or traveling in a vehicle on a highway.

“We are delighted to have had the opportunity to collaborate with the China Mobile Group Device Company team on the YuHeng project,” said Peter Tan, Spirent’s VP for Greater China & East Asia. “This innovative solution is the first of its kind and enables China Mobile to thoroughly assess and benchmark the growing number of new 5G smartphones, devices and chipsets for performance in test environments that realistically replicate a wide variety of authentic radio and motion conditions.”

Tuesday, December 10, 2019

Spirent signs over 100 deal for 5G related testing in 2019

Spirent Communications closed more than 100 5G-related deals during 2019.

The company says cites accelerated deployment timetables that require complex testing and the need to incorporate assurance into new, next-gen networks for guaranteed quality. Spirent is now engaged in more than 150 global 5G initiatives with a broad mix of operators, device makers, network equipment manufacturers, academic institutions, government and cloud providers.

In addition, Spirent notes that more than half of its 5G business is taking place in the Asia-Pacific region as countries like South Korea gain traction with customized offerings tailored to data-hungry subscribers consuming high-bandwidth content such as AR and VR. In China, the company is supporting nationwide efforts to prepare the transport network and data center architecture for mass market deployments. About one-third of Spirent’s 5G deals are in the Americas, with the remainder across Europe. 5G transport, 5G core and 5G RAN projects comprise the majority of deals as operators pursue a range of network rollout strategies.

“If you took the industry’s pulse early last year, all eyes were on 2020 for mass movement in 5G, but those timetables have been turned on their heads as operators navigate an expanding set of market dynamics that demand speed and scale,” said Spirent Head of 5G Steve Douglas.

www.spirent.com/solutions/5g-network-testing

Thursday, December 5, 2019

Spirent intros 100G and Crypto performance testing

Spirent Communications introduced a C200 appliance for 100G and Crypto performance testing.

The C200, which represents a significant expansion of the Spirent CyberFlood security and application performance testing solution family, is a 1RU appliance providing connectivity at 10G, 25G, 40G, 50G, and 100G. The C200 offers up to 16 x 10G or 4 x 100G ports per appliance. Multiple C200s can be combined to offer 48 x 100G or 192 x 10G ports, delivering more than 3.5Tbps of application layer testing capacity in 12U of rack space.

The C200 with CyberFlood supports NetSecOPEN standards-based testing methodologies, that better reflect how modern security and content inspection solutions will perform under a variety of real-world traffic conditions and threats. In addition, the C200 supports Spirent’s legacy Avalanche solution, which provides extensive client emulation and application services load testing on a massive scale.

https://www.spirent.com/Products/CyberFlood

Wednesday, May 22, 2019

Spirent intros NFV test solution

Spirent Communications introduced a test solution for assuring NFV performance as specified in ETSI GS NFV-TST 001.

Spirent CloudSure, which is the first commercially-available standards-based NFV test solution, is designed to benchmark and validate performance and allow service providers to confidently rollout NFV deployments.

Spirent CloudSure offers test packages, consisting of a set of templates that can be easily configured and customized to match service providers’ unique NFV deployments. Configuration is possible via both a graphical user interface (GUI) and an application programming interface (API) for automation users, with Spirent TestCenter Virtual ports and Spirent CloudStress agents generating realistic, multi-dimensional workloads to assess cloud performance.

“Spirent CloudSure takes a new approach to measuring performance of virtualized infrastructure, with a test framework which addresses operators’ key NFV concerns,” said Abhitesh Kastuar, General Manager of Spirent’s Cloud and IP business. “Focused on benchmarking and validating NFV ecosystems in line with ETSI GS NFV-TST 001, Spirent CloudSure is a uniquely flexible and adaptable framework which can also address other cloud testing challenges, such as comparing cloud performance, cloud workload migration, and capacity planning.”

https://www.spirent.com/products/cloudsure

Monday, April 1, 2019

Spirent appoints Eric Updyke as CEO

Spirent Communications named Eric Updyke as its new Chief Executive Officer.

Updyke replaces Eric Hutchinson, who is retiring after 37 years with the Group, including serving as CEO since 2013.

Most recently, Updyke was on the Executive Management team of Amdocs reporting directly to the CEO. In his capacity as Group President, Services at Amdocs Ltd he had global responsibility for the entire Managed Services, Testing and SI businesses. This business encompassed 10,000 employees and roughly $2 billion in revenue. Prior to that role, Eric was Division President for North America at Amdocs where he managed a $1 billion P&L and was responsible for the relationship with North American communications service providers. Prior to his time at Amdocs, he held executive roles at Nokia Siemens Networks and AT&T.

Thursday, March 7, 2019

Spirent showcases 400/200/100/50 GigETes Test System

At OFC, Spirent Communications showcased its 8-port 1U-rack-mountable 400/200/100/50 Gigabit Ethernet (GbE) test system. The system claims to be the world’s highest density QSFP-DD test solution. It is designed to validate the forwarding performance and Quality of Service (QoS) of high-scale, next-generation-enabled, multi-terabit routers and switches, all contained in a single rack space.

Spirent is also showing the world’s highest-density native QSFP28 quint-speed series of test modules, supporting 100/50/40/25/10GbE from a single interface as part of the joint display, delivering the robust connectivity demanded by emerging markets and applications.

“It’s an exciting time as Ethernet speeds continue to evolve, and customers continue to design and develop solutions to meet future network requirements,” said Abhitesh Kastuar, general manager of Spirent’s Cloud and IP Business Unit. “Our innovation and test capabilities make Spirent the right partner for companies that are racing to bring their leading-edge network technologies to market first. We have been working with all the major network equipment vendors to deliver new chipsets so they can design and develop next-generation 400G products, enabling networking and services vendors to deploy faster and more reliably.”

https://www.spirent.com/HSE