Sunday, December 14, 2014

Blueprint: 2015 Top Networking Predictions

by Martin Nuss, Vitesse Semiconductor

2015 should be a defining year in the communications industry, thanks in large part to our world’s growing connectedness – between people, and machines, and more and more “things.” Here’s a look at what I expect will dominate the networking industry focus in the coming year.

Ethernet will be everywhere – 2015 will be the year where Ethernet will conquer industrial IoT networks

We have seen it again and again, and it’s about to happen at least twice more: networking protocols that have been long entrenched in specific markets and applications are being replaced by Ethernet.

This first happened for the Enterprise Local Area Network in the late 1990s, and we have seen the same thing happening in Carrier networks starting around 2010, where Ethernet replaced SONET/SDH, PDH, Frame Relay, and ATM. This transition is well underway, and another one just started:  the transition of the many legacy Industrial-IoT protocols like PROFINET, ControlNet, Fieldbus, HART and Ethernet/IP to standards-based Ethernet. Why is this all happening? The answer is simply that the industry has evolved the Ethernet standards and protocols over time to address most, if not all, the of special requirements of the industrial market like high availability, quality-of-service, and network synchronization.

In 2015, we will see the Ethernet standards tackle the last hurdle:  making Ethernet deterministic, so that a packet can be guaranteed to be delivered and accepted by mission-critical devices within a specific time window. This will be accomplished as part of the IEEE 802.1tsn (time sensitive networking) effort, after which Ethernet switches know exactly the time in the network, and can deliver packets out of queues at a certain time or within a certain time. This new Ethernet technology will be relevant not only to factory automation and industrial control systems, but also transportation in general and mission-critical systems like antilock brakes and advanced driver assist and collision avoidance systems in automobiles. The automotive market will thus be the next convert to Ethernet.

By 2020, the number of Ethernet connections in automobiles will exceed all other Ethernet-connected devices in the world

All major automotive companies are driving the replacement of the many legacy and semi-proprietary protocols used within cars by Ethernet to drive economies of scale for the IC supply chain, and to accommodate the ever increasing connectivity and bandwidth challenges in the connected car. It started with infotainment systems and backup cameras being connected by Ethernet, but soon, much more critical systems like diagnostics, advanced driver assist (collision avoidance) systems, and even the main system bus in the car will be Ethernet-networked.

By 2020, more than 120 million cars will be equipped with Ethernet connectivity, with the premium segment connecting up to 35 systems with Ethernet, and in mid-range vehicles, between 8-20 systems. All in all, that translates to somewhere between 500-600 million ports, more than all the Ethernet LAN ports combined today. This is all enabled by new 2-wire Ethernet PHYs developed as part of the IEEE 802.3 100Base-T1 and 1000Base-T1 standards developments, as well as the IEEE 802.1tsn “Deterministic Ethernet” standardization.

In the near-term, all the Software-Defined-Networking (SDN) attention will cut into switch and router sales

Software-Defined Networking (SDN) and Network Functions Virtualization (NFV) have captured the attention and imagination of the networking world, and eventually will revolutionize networks of the future. In the near-term, however, they are putting a damper on switch and router sales as network operators and large enterprises figure out what SDN and NFV mean to them, what the business opportunities are, and how to migrate their networks to a more software- and IT-centric model. For wide-area operators in particular, SDN is a tough value proposition. Although the flexibility of a software-defined network can reduce operational and perhaps even capital costs, most of the equipment in the network is “free” since it is already there, and won't be fully depreciated until years from now. The key to SDN’s success is therefore to figure out how to allow the existing network to participate in the new IT-centric operational model with more centralized control planes and network-wide orchestration. Once that is clear, switch and router sales will pick up again.

Management and network orchestration hold the key to the SDN/NFV network revolution

Although Software-Defined Networking (SDN) and Network Function Virtualization (NFV) are often mentioned in the same context, they are actually different beasts. But what is common to both is an IT-centric view of the network, as opposed to the traditional operational network model. The benefit of the IT-centric model is that network and compute resources can be abstracted from the underlying network and server infrastructure, and “orchestrated” together to deliver services to customers – in minutes and hours as opposed to months.

We predict that the biggest opportunity and revolution will be on this management and orchestration side, and to a lesser degree, on the networking and compute infrastructure side. This will be a dramatic and painful transition, as network operators have to assess skill sets and organizational structures and figure out how to migrate their networks to this new model. Once they do, the revolution can take place.

Security will be the key for Internet of Things (IoT) to succeed

Not a week goes by without a new security breach reported in the press. These threats are not isolated to consumers and credit card and identity thefts, but increasingly are also targeted at Industrial IoT networks. The biggest economic benefits are being realized only when more and more systems are connected to each other and to the cloud, but security becomes a central concern now. No single security scheme can solve all potential vulnerabilities, so it is important to secure applications, networks, and devices. The three As – Authentication, Authorization, and Accounting – apply to all of the above, and are commonplace now for the applications layer, combined with data confidentiality (encryption). But the same principles are enforced less for the network and device/link layer. The link/device layer may be particularly vulnerable since outside of physically secured locations, small cells could be swapped out for rogue devices that can get access to the entire network. Luckily, link layer AAA and encryption technologies like IEEE 802.1AE MACsec are now available even with strong 256-bit AES encryption technologies to secure those last links.

About the Author

Martin Nuss is Vice President, Technology and Strategy and Chief Technical Officer at Vitesse Semiconductor. Dr. Nuss has over 25 years of technical and management experience and is a recognized industry expert in Ethernet technology including timing and synchronization for public and private communications networks. Dr. Nuss serves on the board of directors for the Alliance for Telecommunications Industry Solutions (ATIS) and is a fellow of the Optical Society of America and IEEE member. He holds a doctorate in applied physics from the Technical University in Munich, Germany.

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Arista's Enhanced OS Supports 3rd Party Functions

Arista Networks announced an enhanced version of its EOS (Extensible Operating System) that allows customers to take advantage of pre-built and custom EOS applications as well as integration with a wide range of technology partner solutions from A10 Networks, Ansible, Aruba, Cloudera, Nuage, Palo Alto Networks, Puppet Labs, Pure Storage, Red Hat, Splunk, VMTurbo, VMware and Zscaler.

The company said its EOS+ allows for rapid deployment using DevOps models and integration with the network as a whole, for reduced operational costs and deployment timeframes. The idea is to allow compute, storage and application teams to integrate with the network, leveraging the Linux and programmatic foundations of EOS. Provisioning, monitoring and dynamic reconfiguration based on application workloads can now be integrated with the network in a programmatic fashion.

Key attributes:

  • EOS SDK – a development framework that allows native access to all levels of EOS for custom development and integration with forwarding and routing stacks that leverage advanced features such as MPLS.
  • vEOS - a virtual machine instance of EOS that includes the same control plane and management plane as the physical switches.
  • EOS Applications – Pre-built integration with technology partners and DevOps systems such as Puppet and Splunk for provisioning and monitoring.
  • EOS Consulting Services – Professional services for development of customized solutions for network automation.

“As part of our work to connect billions of people around the world, we are building a network infrastructure that is more flexible, more scalable, and more efficient than almost anything else out there,” said Najam Ahmad, Vice President of Infrastructure at Facebook. “Arista EOS has proven to be a valuable component of our current designs, providing us with a series of useful features, including better control-plane and data-path programmability, the ability to write traffic steering and monitoring applications that integrate with Sysdb and the entire EOS stack running on our Arista devices, and an SDK framework is fairly easy to develop and test our code in. All this allows us to have more visibility in and greater control over our network — and that helps us continue to move fast as we scale.”

Arista also introduced the EOS SDK for developing applications that integrate directly with the switch operating system. This approach can be used for customizing IP routing, protecting against DDoS attacks through selective workflow-based filtering and analyzing data for fine-grained visibility.

Dell Adds Midokura as Network Virtualization Overlay Option for OpenStack

Dell has added Midokura to its Open Networking initiative to include Midokura.  The deal includes a joint go-to-market program, validated reference architecture and global reseller agreement.

Midokura’s Enterprise MidoNet software will now be available on Dell infrastructure, delivering a network virtualization overlay for OpenStack that helps enterprise customers and service providers create an agile cloud networking infrastructure based on open technologies.

MidoNet is a software-based, highly-distributed network virtualization system that allows service providers and enterprises to build, run and manage virtual networks with increased control and flexibility. Leveraging industry standards and existing infrastructure, MidoNet provides network agility and scalability while helping reduce costs.

Dell said MidoNet fits well with its existing partnership with Cumulus Networks for its Linux operating system. The Dell, Cumulus Networks and Midokura solution enables a growing number of service providers and enterprise customers to provision scalable virtual networks to connect to physical workloads in a matter of minutes. Midokura MidoNet leverages Dell switches to facilitate network traffic flows from virtual machines to non-virtualized, physical workloads such as high-performance databases, email servers and legacy systems at line rate.

What this shows is that we’re actively connecting the dots with like-minded companies to upend the traditional, black-box model of networking,” said Tom Burns, vice president and general manager, Dell Networking. “That old model is too rigid, too locked and too slow to innovate. Dell’s Open Networking initiative is about being open, flexible and software-defined to help maximize our customers’ application environments.”

“Midokura, like Dell, is committed to expanding the Open Networking initiative to meet the needs of today’s modern enterprises and help deliver an open foundation for compute, storage and networking infrastructure,” said Dan Mihai Dumitriu, CEO and co-founder, Midokura. “We’ve already successfully teamed up with Dell to bridge virtual and physical networks and we look forward to deepening our collaboration to create an open, converged infrastructure for enterprises to support clouds that are easy to scale and operate.”

In November, Midokura announced a move to an open source model for its MidoNet network virtualization solution designed for Infrastructure as a Service (IaaS) clouds.

MidoNet is a highly distributed, de-centralized, multi-layer software-defined virtual network solution for the OpenStack Community. It replaces default OVS plugin from OpenStack deployments and offers a much more scalable and efficient networking solution for highly virtualized and cloud environments. MidoNet also provides L2-L4 services that are distributed at the network edge.

All of the code behind MidoNet is now available under the Apache 2.0 license, letting anyone in the popular and rapidly growing OpenStack community use, distribute and build on the technology, as well as submit back to the project. Midokura said it is committed to building a non-vendor driven community around the project and has dedicated resources to building and supporting a community of MidoNet users, including new staffing, a website and community infrastructure.