Posts Tagged ‘monitoring’

May EtherNEWS – MEF Backhaul, OAM & ENNI Training Class

Monday, May 3rd, 2010
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This Month’s Issue

This month we feature an in-depth training session for mobile backhaul operators. Recorded at CTIA 2010, this 40 minute tutorial provides a detailed introduction to the MEF 22 standard for wireless backhaul, MEF 26 UNI Type II ENNI, and Ethernet OAM requirements for successful 3G & 4G backhaul implementations.

Catch up with the latest standards: taught by MEF Board member Craig Easley, founder of the Carrier Ethernet Academy.

The EtherNEWS Community:

We publish our online newsletter in an interactive blog format so you can discuss each issue with other telecom professionals. Get notified when EtherNEWS is updated by subscribing to our RSS feed or Twitter feeds, or join our fans at Accedian.com/Facebook.

We hope you enjoy the newsletter and other selected technology and insight articles on our blog, updated several times each week.

Application Highlights

Watch the full 40 minute training session in the first video player. The second video, below, features the Q&A session following the training, as moderated by Dan Meyer, Editor of RCR Wireless News.

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The feature application video in this EtherNEWS edition is also available as a free Video Podcast. Download Now.
MetroNODE 10GE™ Packet Performance Node

The MetroNODE 10GE™ rests firmly on the engineering foundation of Accedian Networks’ award-winning EtherNID® & MetroNID® units, deployed since 2005 by hundreds of service providers worldwide. Our development team replicated the core, pipelined Fast-Thru™ all-hardware architecture from our gigabit Ethernet platforms to provide a truly amazing 10 Gig packet performance node with a proven feature set carriers have come to rely on.

Like all our units, the 10GE offers near-zero pass through latency and jitter, making it ideal for performance-critical 10 Gig hand-offs and SLA monitoring applications.

10GE

Learn all about the MetroNODE 10GE with our quick intro video:

Overview Video

For more information about Accedian Networks solutions, please visit our document library on Accedian.com.

Latest News

Featuring a hardware-based, ultra-low latency architecture, the 10GE delivers highly-scalable performance monitoring for critical 10 gigabit Ethernet applications. Addressing a critical need in 3G & 4G (LTE & WiMAX) backhaul networks, the 10GE can establish and maintain thousands of Y.1731 sessions at the Mobile Switching Center (MSC), providing comprehensive Ethernet Operations, Administration & Maintenance (OAM) coverage unachievable using today’s switches or routers.
Learn more.

18-19 May, Amsterdam
Visit Accedian Networks at stand 56 at the LTE World Summit in Amsterdam and see our full range of Ethernet packet assurance solutions including the new MetroNODE 10GE unit, capable of monitoring 1000s of Y.1731 sessions at the MSC. Accedian Networks will also be on the panel of the “Industry Debate: The Future of Backhaul is Fixed, Discuss…” session.
More Info.

23 June, New York
Accedian Networks will be speaking and exhibiting at Light Readings’s Backhaul Strategies Conference. Learn about our Ethernet solutions for 3G & 4G wireless backhaul networks. Join us in discussing emerging issues in the “Overcoming the Scale Challenge in Packet Backhaul Evolution” session.
More info.

Visit our events calendar on Accedian.com to learn where we’ll be exhibiting and participating in conferences in 2010. We’re going global with our events team, so we’re likely to be near you this spring or summer.


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Accedian Introduces 10GbE Packet Performance Node

Tuesday, March 23rd, 2010
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New unit assures 10 GbE performance, scales to 1,000s of Y.1731 sessions for wireless backhaul monitoring.

Las Vegas; March 23rd, 2010 – Accedian Networks ™, a leading provider of Packet Performance Assurance ™ solutions for telecom, cable and wireless communications providers, introduced today the MetroNODE 10GE™ packet performance node. Featuring a hardware-based, ultra-low latency architecture, the 10GE delivers highly-scalable performance monitoring for critical 10 gigabit Ethernet applications. Addressing a critical need in 3G & 4G (LTE & WiMAX) backhaul networks, the 10GE can establish and maintain thousands of Y.1731 sessions at the Mobile Switching Center (MSC), providing comprehensive Ethernet Operations, Administration & Maintenance (OAM) coverage unachievable using today’s switches or routers.

The MetroNODE 10GE is a unique networking product, reflecting input from leading service providers seeking an enhanced alternative to traditional network elements. With an initial feature set optimized for mobile backhaul applications, the 10GE unit’s ultra-precise OAM capabilities easily scale to the large number of sessions required to monitor and maintain 3G & 4G service deployments.

To guarantee Service Level Agreements (SLAs) for a wide variety of real-time communication and data services, backhaul connections maintain different service classes for high, medium and low priority traffic. Used to monitor connectivity and performance for each service class between the MSC and each cell site, Y.1731 sessions converging at the MSC quickly scale into the thousands as operators light up hundreds of towers in a metro region.

Existing routers with software-based OAM implementations can incur processing delays that result in nonsensical latency and jitter measurements – often several times longer than accurate measurements provide. This lack of precision under real-world conditions leads to false alarms and inconsistent or incomplete monitoring visibility. By contrast, the 10GE unit features a dedicated-silicon, all-hardware architecture capable of processing thousands of flows in parallel with microsecond precision – technology scaled from Accedian’s well known MetroNID® units, widely deployed to establish OAM and monitor performance at cell sites worldwide.

“Mobile operators no longer have to maintain networks with sparse, inaccurate OAM measurements as they move from field trials to full-scale 3G & LTE deployments,” explained Patrick Ostiguy, President of Accedian Networks. “Hundreds of operators count on our solutions to assure critical applications – we engineered the MetroNODE 10GE™ to exceed their requirements and expectations. By using the 10GE to deploy service with confidence, they can overcome shortcomings in what they now consider legacy technology.”

A video overview of Accedian Networks’ MetroNID 10GbE packet performance node is posted on the EtherNEWS industry blog at Accedian.com/blog and Accedian.com.

Accedian is currently exhibiting at CTIA in Las Vegas (booth 6565); Mr. Ostiguy will address the challenges of 3G & LTE deployment on the panel “Engineering Mobile Backhaul” at 12:20pm on Tuesday, March 23rd.


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LTE & 3G False Alarms

Thursday, February 25th, 2010
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Capacity and next generation mobile services (3G & 4G/LTE) seem to be constantly under scrutiny.   Ever since the iPhone came on the scene and sucked the lifeblood out of at&t’s backhaul network we constantly hear about the impending doom, the bandwidth desert we’re all facing ahead.  This has been labeled “The Capacity Crisis” – here’s an example of one of a gazillion articles harping on the uncertainty of our mobile broadband future.  Sound a bit like the swine flu?  What ever happened to that?

One thing you learn working with real operators doing real deployments is that:

  1. backhaul capacity is something they dealing with (don’t lose too much sleep);
  2. there are bigger issues: real deployment challenges to figure out first.

And field trials for 3G & 4G are full of such examples.  No one’s finding an issue getting bandwidth to the cell site – no magic formula is required for that – simply put, if a fiber is laid or a good microwave connection is setup the capacity is there, pretty much on tap.  The issues that operators are stumbling over have more to do with the operational nuts and bolts.  A lot of new technologies are getting put through their paces at the same time, and some that work great in the lab seem to be falling short in the field.

Ethernet OAM: Lies, Lies & More Lies

One of the key technologies almost every operator is counting on is Y.1731 – the popular Ethernet operations, administration and maintenance (OAM) standard for connectivity fault monitoring (CFM) and performance monitoring (PM).  Y.1731 is a must, and for good reason: it’s the only standards-based QoS monitoring method available to assure Ethernet latency, jitter, frame loss and availability meet the demanding targets required for packet backhaul.  It works in multi-vendor networks; it works in multi-operator networks (great for using and keeping tabs on wholesale backhaul carriers).  Every network element maker selling into backhaul has it in their products and they’re all tuned up and ready to go.  Are they?

A recent field trial in a 3G deployment in North America went into crisis mode when one leading mobile operator turned on OAM PM to verify latency over their backhaul provider’s network.  The one-way latency target (and SLA) from mobile switching center (MSC) to tower was set at 5ms.  Y.1731 measured 20ms.  The mobile operator freaked.  The backhaul carrier claimed 3ms.  What was up?

Using an alternative test method transparent to OAM processing, the mobile operator confirmed the 3ms, giving both carriers another problem to solve: why were the OAM measurements in error by more than 300%?  The first step was to turn off OAM at all intermediate nodes in the network – suddenly Y.1731 PM measurements said 3ms.  They turned it back on: 20ms.  It’s important to point out here that the delay only affected OAM traffic – real traffic was unaffected and was meeting spec the whole time!  With the problem isolated to OAM processing itself, they were starting to experience something most network element vendors knew full well might turn up, but were hoping would go unnoticed.

oam-delays

The problem?  Most switches and routers claim to offer the full Y.1731 feature set, but none of this was thought out when the products were originally architected.  When Y.1731 became a must-have for backhaul, the features were typically shoe-horned into a software patch.  Running delay-sensitive monitoring features in software is a big faux-pas, because shared CPU time in the network element is a poor place to do anything critical.  These CPUs are busy doing more important things (like routing / switching functions) most of the time, putting OAM into background processing queues.  When traffic is at its peak, the network elements are heavily taxed – and just when you need performance measurements the most, they turn out the least accurate of all.

oam-delays2

Scary stuff.  In this case, every latency alarm the operators saw wasn’t an indication of network performance issues, but of CPU processing restrictions.  Not a very useful alert.

There of course ways to fix this situation, and these two operators came to their own conclusions and had things humming a little while later.  OAM can certainly work in large-scale, multi-provider deployments, and can assure critical services.  It just takes a few tricks and some solid, hardware-based OAM devices to help things out.

y1731-flows

This gets especially critical when you consider the OAM flows hitting the MSC: expect 1,000’s at a time as CFM and PM for 3 service classes from say, 250 towers, converge at a single router.

We’ve been getting a lot of calls in the middle of the night recently, and things can always be worked out.  Let’s just say none of these calls are about ‘The Capacity Crisis’.  That’s for the media to worry about.


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