Archive for RB

802.11ac Wi-Fi – Don’t Bother Yet

802.11ac Wi-Fi - Don't Bother YetThe new iPads are here! The new iPads are here! There’s no 802.11ac here! But that’s expected. Experienced Apple watchers know that Apple likes to let new radio technologies mature before they integrate them into their new idevices. So that means most enterprises can slow their plans to upgrade their Wi-Fi to the new standard according to Kevin Fitchard at GigaOM.

The new iPads are hereThe latest Apple (AAPL) tablet doesn’t sport the new soon-to-be-completed IEEE 802.11ac standard, even though Apple’s latest generation routers, PCs, and laptops all support it. GigaOM reports Apple is providing is a speed boost to the now thoroughly established 802.11n networking standard in the form of multiple-input multiple-output (MIMO) smart antenna technology. Like many Wi-Fi routers on the market, the iPad Air has dual antennas, allowing it to wend two parallel paths over the unlicensed airwaves. The MIMO implementation will double the speeds at which the iPad can access Wi-Fi networks, according to Apple.

The Wi-Fi Alliance only began certifying commercial 802.11ac devices in June, and even those devices only incorporate partial versions of the full 802.11ac spec. The IEEE isn’t expected to fully complete the standard until 2014. Very few smartphones and tablets have ac embedded as of yet, though the technology is making its way into consumer and enterprise routers and PCs, including Apple’s newest MacBooks and iMacs.

iPad AirBut waiting another year for 802.11ac-enabled iPhones and iPads also means we’ll probably have to wait another year before we see wide-scale adoption of the standard in public hotspots and access points. Unlike in the home, most outdoor and public Wi-Fi connections are made over mobile devices, not PCs.

In an interview with GigaOM, Boingo VP of corporate communications Christian Gunning said it hasn’t turned up 802.11ac in any of its hundreds of thousands of owned and managed hotspots yet, simply because it’s seeing very few devices with ac radios trying to access its network.

higher-powered 802.3at Power over EthernetFierceCIO‘s Paul Mah offers more reasons to delay the roll-out of 802.11ac. The advanced 802.11ac radio is more power-hungry than earlier iterations of Wi-Fi. So it will more likely need the use of the higher-powered 802.3at Power over Ethernet (PoE) to run 802.11ac with all its bells and whistles. It is possible that businesses still on 802.3af PoE (rb- Majority) may well have to incur extra infrastructure costs to deploy 802.11ac today. Mr. Mah contends that it is yet to be seen if improved 802.11ac chipsets will allow firms to stick with legacy PoE. (rb- For a refresher on PoE, check out these posts 802.3af and 802.3at)

Another consideration according to FierceCIO is clients. The handful of business-grade 802.11ac wireless APs on the market today typically support three spatial streams, which allows for a (theoretical) maximum data rate of 1.3Gbps in the 5GHz band. Though this is a significant improvement over 450 Mbps 802.11n, the dearth of 802.11ac client devices renders this a moot point. Some will argue that Apple did incorporate 802.11ac into the new MacBook Air laptops.  However, they did not include it in the new iPads, or the iPhone 5S and iPhone 5C smartphones. And with no smartphones or tablets equipped with 802.11ac capabilities today, this does make deploying it a rather pointless strategy for BYOD.

802.11ac "second wave"Finally, Mr. Mah points out that while 1.3Gbps is a good speed to have, we should keep in mind that 802.11ac does have a theoretical maximum speed of 7 Gbps. A “second wave” of 802.11ac that implements four or more data streams for much faster speeds should be arriving in the second half of 2014. He says current signs are that this second wave of 802.11ac devices might need new processor chips–which means you will have to buy new 802.11ac hardware to benefit.

GigaOM’s Fitchard stresses Apple’s influence when it comes to popularizing new technology, he says the iPhone and the iPad’s reach shouldn’t be underestimated. As an example, new Passpoint-certified phones have been out for more than a year, but it wasn’t until Apple started offering support for Passpoint’s automatic login technology in iOS7 that the wireless industry took notice. It was only after Apple made iOS7 publicly available, that Boingo started Passpoint trials.

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I’m not saying 802.11ac is a bad thing, but enterprises need to ignore the hype cycle and make decisions that are best for them and not the multi-billion dollar networking industry. IMHO 802.11ac is still immature, there are few devices out there that can fully take advantage, the full feature set is not fully implemented in silicon and you finished the upgrade to 802.11n yet?

What to do?

What does your wired network look like? Are you still connecting your AP’s at 100 Mbps? That is a bottleneck with 802.11n.

Do you have enough juice? What is your PoE status? Do you have enough PoE+ ports? Are they being used for just an access port – wasting the extra costs of a PoE port?

Both switches cost money, is there a budget available for these items or is IT going to spend an operational budget to address a structural issue?

 

Ralph Bach has been in IT long enough to know better and has blogged from his Bach Seat about IT, careers, and anything else that catches his attention since 2005. You can follow him on LinkedInFacebook, and Twitter. Email the Bach Seat here.

DDoS Attack Map

DDoS Attack MapHelp Net Security points out a report that DDoS attacks continue to be a global threat. The report is from Arbor Networks a leading provider of DDoS and advanced threat protection solutions for enterprise and service provider networks. Arbor has noted an alarming increase in distributed denial of service (DDOS) attack sizes this year. The Arbor Networks ATLAS monitors a significant part of all Internet traffic and found that DDoS attack size accelerating rapidly:

  • Arbor Networks logo54% of attacks year to date are over 1 Gbps.
  • 37% of attacks this year are in the 2 – 10 Gbps range.
  • 4% of all attacks are over 10 Gbps.
  • The 2013 average DDoS attack is 2.64 Gbps, up 78% from 2012.
  • The largest monitored and verified attack size was 191 Gbps.

DDoS Attack Map Tool

One way to visualize what these facts mean is the DDoS Attack Map Tool pointed out by Brad Reese.com. The tool, built by a collaboration between Arbor Networks and think tank Google Ideas presents a global map with a data visualization map of global distributed denial of service attacks. Google Ideas uses anonymous data from Arbor Networks’ ATLAS global threat monitoring systems. Atlas can monitor up to 69 Tbps of Internet traffic. Researchers and users can use the DDoS Attack Map Tool to explore historical trends in DDoS attacks. They can make their own connection to related news events on any given day. The data is updated daily, and historical data can be viewed for any country worldwide.

DDoS Attack Map Tool

 

Ralph Bach has been in IT long enough to know better and has blogged from his Bach Seat about IT, careers, and anything else that catches his attention since 2005. You can follow him on LinkedInFacebook, and Twitter. Email the Bach Seat here.

IT Departments Gone in 5 Years

IT Departments Gone in 5 YearsIT departments will be done in the enterprise within the next five years according to a group of CEOs and VPs. They predict that consumerization of IT and self-service trends will lead to a restructuring of today’s IT shop, leaving behind a hybrid model consisting of tech consultants and integrators. Brandon Porco, chief technologist & solutions architect at Northrop Grumman recently told a group at the CITE Conference and Expo.

The business itself will be the IT department. [Technologists] will simply be the enabler

IT Departments are targetsComputerworld reports that Kathleen Schaub, VP of research firm IDCs CMO Advisory Practice, echoed Mr. Porco. She said many corporate IT organizations now report to the head of the business unit it is assigned to. “The premise is that wherever IT sits in an organization will dictate what they care about,” she said. “If they’re in finance, they’ll care about cost-cutting. If they’re in operations, they’ll care about process management. If [the company] decides it wants to focus on the customer, they’ll put it in marketing.

John Mancini, CEO of the Association for Information and Image Management (AIIM), agreed with Mr. Porco, saying that in the consumer technology era, it’s the business side that has all the tools, so it will be able to trump IT’s desire to control who uses what and how.

functional business spending will outpace IT's spending.While the business can dictate the service or technology it wants, IT can influence the decision. Nathan McBride, VP of IT & chief cloud architect at AMAG Pharmaceuticals told Computerworld, “We’re not trying to be ahead of the technology curve and we don’t’ want to be behind, but we’re trying to maintain pace to know what they’re going to ask for next before they ask for it.

Help Net Security points out a recent IDC study that found 61% of enterprise technology projects are now funded by the business and not the IT department. IDC says IT spending driven by the functional business areas will outpace IT’s own spending. Today’s business executives who are more tech-savvy, have easier access to technology through the Cloud, and are under pressure to quickly implement new technology initiatives are driving this change.  The Help Net Security article states that today’s line of business employees are looking more and more like an extension of the IT department as, on average, 8% are technical staff.

Center of the universeAnother concern raised is whether IT is losing control as consumer technology becomes part and parcel of everyone’s work in the enterprise, and the data center is left behind. AMAG’s McBride told the audience, that in five years, companies will have to make sure they’re matching their enabling technology to the demographic of that time. He said 75 Fortune 100 companies now use Google (GOOG) Apps along with most Ivy League schools, meaning that the next generation of workers won’t be users of Microsoft (MSFT) Exchange or Office.

While the CIO position will likely stay in an enterprise, his or her role will morph into a technology forecaster and strategist, and not a technology implementer, according to Northrop Grumman’s Porco.

 rb-

This sounds like a solid case for training technical staff in project principles and increasing the number of IT project managers. There have to be clear two-way communications between the business owner and the implementers.

Requirments ?Proper and detailed scope definition is one of the most critical steps for the success of any project. The business team, implementation team, and operations team must get together before the work starts to check the proposed solution and work through all the questions, concerns, and gotchas before the project even starts. This way problems can be discovered. Once the requirements are defined and the scope is complete and everyone agrees, then the project can be signed off and a formal kick-off meeting can be held.

In IT projects, it is important to look beyond the defined project to ensure success. Does the plan consider impacts on end-users?

  • Does the project need new policies or procedures? If something falls through the cracks, they blame your project.
  • Does the PC fleet meet requirements? Do they need more RAM? If they have to upgrade, they blame your project.
  • Does it work with your current server OS? If they have to upgrade, they blame your project.
  • What about the software? Are you locked into IE only? Do you need a specific level of .NET? Does it work on iOS and Android? If they don’t have the right software, they blame your project.
  • How much bandwidth does the new project require? Will it try to send a graphical interface to a remote office on a slow link? If it loads slow they blame your project.
  • Training? If the end-users can work the program, they blame your project.
Related articles
  • IT morphs as tech and users change (networkworld.com)

 

Ralph Bach has been in IT long enough to know better and has blogged from his Bach Seat about IT, careers, and anything else that catches his attention since 2005. You can follow him on LinkedInFacebook, and Twitter. Email the Bach Seat here.

Farewell Steve Tour

Farewell Steve Tour MicrosoftThe Bach Seat Steve Ballmer farewell tour continues as rumors swirl about Ford (F) CEO Alan Mulally taking over at Microsoft. Or will Bill Gates returning ala Steve Jobs to save Redmond. Whatever the grand poobah’s at MSFT are thinking. They will probably never find another CEO like Steve.

Here is newly minted CEO Ballmer opening up the company’s 25th Anniversary in September 2000, doing what he calls a “monkey dance” and shouting “give it up for me!” When he finally calms down, barely able to speak between gasps of air, he manages to shout four words: “I .. Love … This … Company!

 

Related articles
  • Microsoft Corporation (MSFT): Will Bill Gates Return As CEO? (valuewalk.com)

 

Ralph Bach has been in IT long enough to know better and has blogged from his Bach Seat about IT, careers, and anything else that catches his attention since 2005. You can follow him on LinkedInFacebook, and Twitter. Email the Bach Seat here.

Whats a Petabit Network

Whats a Petabit NetworkSeems like it was a couple of months ago, we were excited about fiber optic cable that twisted light to carry data at 1.6 Tbps per strand. Now a Petabit network is the new benchmark. U.K. and Japanese researchers mashed up software-defined networking (SDN) and multicore fiber to produce the first Petabit pipe according to Kevin Fitchard at GigaOM. A Petabit is one quadrillion (1,000,000,000,000,000 or 1015) bytes binary digits or one thousand Terabits.

Petabit network uses multicore fibers

Whats a Petabit NetworkThe researchers mashed up multicore fibers and SDN to makes very high-speed networks programmable. GigaOM speculates this will allow carriers to adjust the network capacity and latency to meet the needs of traffic traveling over their networks. First, GigaOM explains that the fiber is unlike today’s single strands of glass, or cores, that carry a single beam of light down the fiber. Multicore fiber is exactly what its name implies: multiple cores each carrying a single core’s worth of capacity over the same link. Professor Dimitra Simeonidou at the University of Bristol called current single-core fiber a capacity bottleneck.

Space Division Multiplexed

The multicore group, led by NICT and NTT in Japan which built a 450 km (280 miles) section of fiber optics using 12 cores in two rings capable of transmitting 409 Tbps in either direction. That’s 818 Tbps in total. Which is within spitting distance of seemingly mythical Petabit speeds according to GigaOM. The MCF research relies on Space Division Multiplexed (SDM) provided by the multicore fibers.

ResearcherIn order to control the massive bandwidth, a team from the High Performance Networks Group at the University of Bristol created an OpenFlow software-based control element to manage those enormous capacities. The Brits implemented an interface that dynamically configures the network nodes so that it can more effectively deal with application-specific traffic requirements such as bandwidth and Quality of Transport.

According to the researchers, this was the first time SDN was used on a multicore network. The University of Bristol presser announcing the new technology says this technology will overcome critical capacity barriers, which threaten the evolution of the Internet.

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OK, so that really – really – really fast. We also know from a 2011 New Scientist article that the total capacity of one of the world’s busiest routes, between New York and Washington DC, is only a few Terabits per second. With bandwidth-hungry applications like cloud computing, social media, and video-streaming continuously growing it forces network planners at firms like AT&T (T), Verizon (VZ), and the NSA to find new ways to grow their capacity.

Data center

Comcast (CMCSA) just finished a 1 Tbps network field trial on a production network between Ashburn, VA, and Charlotte, NC. Most likely the first place Pbps networking will be used is in the mega-data centers of the likes of Google (GOOG), Facebook (FB), or Microsoft (MSFT).

Related articles

 

Ralph Bach has been in IT long enough to know better and has blogged from his Bach Seat about IT, careers, and anything else that catches his attention since 2005. You can follow him on LinkedInFacebook, and Twitter. Email the Bach Seat here.