Showing posts with label Active Broadband Networks. Show all posts
Showing posts with label Active Broadband Networks. Show all posts

Sunday, May 17, 2015

Active Broadband Adds Support for PPPoE (SDN for G.Fast)


Active Broadband Networks announced the availability of "PPPoE support for its Software-Defined Broadband Network Gateway (SD-BNG), providing a cost-effective alternative to xDSL providers deploying G.fast.

DSL remains the predominant broadband service delivery mechanism, with more than 60% of the world’s broadband service delivered using this technology. During 2015, many DSL operators will begin to migrate to support G.fast, a DSL standard for local loops that improves broadband service performance over copper by providing speeds that exceed 100Mbps. 


As a consequence of making this upgrade, operators will need to revisit their broadband remote access servers/broadband network gateways (BRAS/BNG) infrastructure to accommodate the speed increases they are planning to deliver to their customers.


Support for PPPoE is an enhancement of the SD-BNG platform’s current IPoE support, and includes support for IPv6 and multicast.



See "Active Broadband Announces Cost-Effective Solution for xDSL Providers to Increase Capacity at the Broadband Edge" - here.

Monday, February 23, 2015

Active Broadband Launches All-Software Forwarding Engine


Active Broadband Networks announced a "new virtual, all-software forwarding engine that moves broadband edge processing functions off edge routers into software, eliminating the need for complex, expensive and inflexible edge routers and enabling broadband operators to directly connect customers to their cloud .. Active Broadband’s APG-VNF expands the flexibility of the SD-BNG, and is available today"

The Active Programmable Gateway (APG) is the all-software forwarding engine element of the Software-Defined Broadband Network Gateway (SD-BNG), a platform that also consists of the Active Resource Controller (ARC), an SDN controller optimized for broadband service delivery with integrated orchestration, activation, analytics, policy and QoE management. 





The new APG-Virtual Network Function (APG-VNF) enables edge admission, forwarding and QoS functionality to be deployed as virtual machines in an operator’s cloud. Using the SD-BNG with the APG-VNF, operators can directly connect customers’ edge connectivity services to network, compute, storage and application services elastically provisioned within their cloud without the cost and complexity of legacy edge routers. The APG-VNF provides physical and logical connectivity integrating Linux virtualization and containers to enable flexible customer and infrastructure capabilities. The APG-VNF supports popular fixed broadband termination and access mechanisms orchestrated and managed by the ARC".

See "Active Broadband Introduces Groundbreaking Virtual Network Function to Virtualize the Broadband Edge" - here.

Wednesday, August 27, 2014

Active Broadband Launches SDN/NFV Gateway

   
Active Broadband Networks announced the ".. industry's first Software-Defined Broadband Network Gateway (SD-BNG), a platform that implements software-defined networking (SDN) and network function virtualization (NFV) technologies to dramatically reduce the cost and complexity of broadband service delivery. 

The SD-BNG unlocks the benefits of SDN and NFV for service providers to streamline orchestration, proactively manage Quality-of-Experience (QoE) and develop new services and applications -- allowing them to significantly increase operational efficiencies, slash capital outlays, and rapidly create, deploy and modify personalized services that increase market penetration and improve customer satisfaction.

The SD-BNG platform consists of :

  • APG/80 Active Programmable Gateway, a pure software switch for high-performance packet processing that is fully programmable via OpenFlow control, and the Active Resource Controller (ARC), an SDN controller optimized for broadband service orchestration and delivery with real-time, dynamic QoE management.

  • The Active Resource Controller (ARC) is an intelligent broadband edge service controller that enables service orchestration using simplified web services programmability. Controlling the APG/80 with OpenFlow, the ARC facilitates autonomous, simplified, traffic-driven service activation. The ARC gains its intelligence by collecting, mediating and further processing real-time IP flow information provided by the APG/80 .. Based on Big Data technology, the ARC computes and displays experience metrics that provide both operators and their customers with visibility into service utilization and network conditions, as well as application usage. The ARC's Big Data technology provides a platform for data scientists to either directly analyze broadband service information or to integrate broadband service information into a larger analysis platform. The ARC leverages technology developed for legacy OSS-based service management, and is a proven, robust platform that can be deployed as a virtual appliance or as software components on operator-managed physical or virtual platforms".  

See "Active Broadband Announces Availability of Industry's First Software-Defined Broadband Network Gateway" - here.

Wednesday, May 28, 2014

Active Broadband Launches a Subscriber / Application-aware SDN Controller


Active Broadband Networks announced the "..availability of the Active Resource Controller (ARC), a subscriber, service and application aware, telemetry-driven SDN controller for the broadband service edge. . ARC incorporates SDN protocols for dynamic control of Network Function Virtualization (NFV) infrastructure, IP flow telemetry data for visibility into network, service, subscriber and application usage, and Big Data technology for managing the vast amounts of data required for service personalization".






See "Active Broadband Networks Introduces First SDN Controller for Real-Time, Telemetry-Driven Service Intelligence at the Broadband Edge" - here.

Monday, August 19, 2013

Active Broadband Adds Standard SDN Controller for Broadband Service Control

 
Active Broadband Networks announced that its "Dynamic Broadband Service Manager (DBSM) now incorporates software-defined networking (SDN) technologies that transform the delivery of broadband services. This new SDN controller solution allows network operators to easily deploy an intelligent, software-defined service layer for the common control and active management of broadband services across different types of access networks, including cable, DSL, FTTH and WiFi  .. The DBSM can manage and control subscriber traffic flows through any SDN-enabled network element that supports OpenFlow and IPFIX". 

See also a guest post by Stephen Collins, VP of Product Marketing and Business Development - "Usage-Based Service Management for Fixed-Line Broadband" - here.




See "Active Broadband Networks Unveils Software-Defined Networking (SDN) Controller for Transforming Broadband Service Management" - here.

Thursday, July 25, 2013

ZCorum Launches Bandwidth Usage Management Product; Based on Active Broadband Technology


ZCorum announced the ".. launch of Bandwidth Commander, a next generation bandwidth usage management product ..  Bandwidth Commander monitors subscriber bandwidth usage on an hour by hour basis, enabling better control of peak time usage across the provider’s subscriber base versus establishing monthly usage caps. Net-neutral bandwidth management policies can be applied dynamically based on key parameters such as the time of day, the plan the customer is subscribed to and even the amount of congestion on the network at the time".

See "ZCorum Launches a New Bandwidth Management Tool that Helps Monetize High Bandwidth Use" - here.

In parallel, Active Broadband Networks announced that it has "..partnered with ZCorum to power the company’s new Bandwidth Commander managed service offering. ZCorum is using Active Broadband’s Dynamic Broadband Service Manager (DBSM) to actively monitor subscriber bandwidth consumption and apply bandwidth management policies on the fly.

Bandwidth Commander allows ZCorum’s customers to implement bandwidth policies and service pricing based on connection speed, usage and time of day. By moderating bandwidth consumption during periods of peak demand, broadband providers can effectively defer capital expenditures, increase revenue by migrating heavy users to higher-paying service tiers, and improve overall subscriber experience. Bandwidth Commander is a hosted solution that leverages the existing DOCSIS network infrastructure – no additional network hardware is required"
.

See "Active Broadband Networks Powers ZCorum’s Bandwidth Commander Service" - here.

Tuesday, May 7, 2013

Active Broadband Brings PCMM and PCRF Together


Active Broadband Networks announced that its "Active Resource Manager supports the IMS Rx interface as specified in PacketCable 2.0, paving the way for the delivery of IMS services over DOCSIS networks by providing support for PCMM policy control via the Diameter-based Rx interface. Active Broadband supports PacketCable 2.0 policy control in the company's Active Resource Manager (ARM) platform, which translates IMS policy control requests into PCMM policy actions in the CMTS. The ARM also determines network topology using a unique method that ensures the accurate identification of the network elements where PacketCable 2.0 services are being delivered. The ARM's integrated PCMM policy application manager and policy server component uses this topology information to accurately direct policy control actions to the appropriate CMTS and cable modem".

See "Active Broadband Networks Implements PacketCable 2.0 Policy Control to Enable Delivery of Carrier-Grade IMS Services over Cable" - here.

Monday, January 7, 2013

[Guest Post]:Usage-Based Service Management for Fixed-Line Broadband

By Stephen Collins*, VP of Product Marketing and Business Development, Active Broadband Networks


Fixed-line broadband providers need to constantly invest in increased network capacity in order to keep pace with unrelenting growth in subscriber Internet usage, driven largely by bandwidth-intensive consumption of rich media content such as OTT video. Trouble is, while per-subscriber usage continues to increase, ARPU has remained flat, resulting in margins getting squeezed because there’s no incremental revenue growth to offset the capital expenditures in expanded capacity required to ensure satisfactory quality of experience for subscribers.
  
Network operators have two ways to overcome this challenge. They can adopt a usage-based pricing model that generates additional revenue, especially from the subscribers who consistently consume the most bandwidth. While this is certainly an important aspect of addressing the problem, it’s even more critical that operators have the ability to manage subscriber demand in order to alleviate congestion during periods of peak traffic load – typically the evening hours. Without this ability, the network has to be engineered for peak demand – a costly proposition that results in operators over-investing in network capacity. 
   
The real key to solving the problem is harnessing subscriber usage and network utilization data. First, operators need to gain visibility into subscriber behavior and network performance so they can analyze demand for network capacity management and planning. They can invest capital more efficiently by knowing exactly where capacity needs to be expanded. Second, by leveraging new streaming data collection protocols and a high-performance data mediation and storage management system architecture, operators can use this same data for near real-time service and traffic management applications. 
  
High-Performance Data Mediation
  
The network elements already deployed in the existing broadband network infrastructure are the source of a wealth of subscriber usage and network telemetry data that can be retrieved using highly efficient streaming data collection protocols such as IP Detail Record (IPDR), RADIUS and IPFIX/NetFlow. When enabled in a network element, these protocols operate by periodically taking a snapshot of a set of statistics and parameters and packaging the values into a single record that is sent to a centralized collector. If the collection interval is set short enough – 10 to 15 minutes – then it is possible to use the data collected for near real-time service and traffic management applications. 
  
However, doing this effectively in a large network with hundreds of thousands or millions of subscribers requires a service management system capable of collecting, processing and storing a large number of stream data records within each specified collection interval. This involves decoding protocol records and performing a series of checks and cross-checks to ensure the integrity of the data. It also involves generating mediated subscriber usage records that are time normalized relative to a fixed reference for the service management system. These mediated records then need to be stored in an in-memory cache for rapid access by service and traffic management applications as well as written to disk for archival storage and historical trend analysis. The massive volume of usage data collected requires Big Data storage technology in order to meet the stringent performance and scalability requirements.
  
Applying Usage Data for Policy-Based Traffic Management
  
Mediated subscriber usage data can serve as the foundation for service and traffic management applications that measure and monitor subscriber usage as well as network utilization and apply policies to network elements to actively manage subscriber traffic in near real-time. Network operators can choose to implement policy-based proactive and reactive traffic management schemes to avoid network congestion and alleviate it when it occurs, improving overall utilization while ensuring subscriber quality of experience. 
  
Proactive traffic management ensures that usage conforms to a subscriber's service tier by continuously monitoring a subscriber's usage over a sliding time window and triggering the application of policies to manage a subscriber's service when specific usage thresholds defined in the subscriber’s service profile are exceeded. This approach simplifies network capacity management by ensuring subscriber usage will conform to a set of service tiers that can be modeled with the network engineered accordingly. 
  
However, even a well-engineered network with all subscriber traffic in conformance can experience congestion during peak busy hours, resulting in the need for reactive traffic management. This approach detects congestion by continuously monitoring network utilization and automatically taking action to manage subscriber traffic when a specified utilization threshold is exceeded. A reasonable and fair way to alleviate congestion is to identify the subscribers with the most usage during the recent time window and apply policies to manage their traffic. Managing the traffic of just the top subscribers will free up bandwidth for the rest of the subscribers. 
  
The Business Value of Usage-Based Broadband Service Management
  
Broadband providers can realize significant business value by leveraging subscriber usage data for broadband service management. Usage data is critical for network capacity management, allowing operators to analyze network utilization for more efficient capital expenditures when expanding capacity. More importantly, it can serve as the foundation for policy-based service and traffic management applications that ensure more efficient network utilization while improving subscriber quality of experience, enabling network operators to better amortize investments in network capacity.

_______
*Stephen Collins is the vice president of product marketing and business development at Active Broadband Networks. Prior to joining Active Broadband, Stephen served as vice president of product marketing at Acme Packet. Earlier in his career, Stephen held executive marketing and business development positions at Tatara Systems, ThinkEngine Networks, Sonus Networks, and Spring Tide Networks (acquired by Lucent Technologies), which he co-founded. He was a founding engineer at Wellfleet Communications and began his career as a member of technical staff at AT&T Bell Labs. 

Friday, October 12, 2012

Active Broadband Enhances IPDR Collection with Real-time Dashboard and Anomaly Detection

 
Active Broadband Networks announced enhancements to their IPDR collection software - "The enhanced ARM software improves operator visibility into these anomalies [completeness and correctness of IPDR data] by presenting the operator with a real-time dashboard view and storing information about each detected anomaly in a database that is accessed for status reporting and can be queried to identify the specific devices and IPDRs associated with the anomaly"



See "Active Broadband Networks Ensures Accuracy of Internet Usage Data in DOCSIS Networks" - here.