Tuesday, October 6, 2015

T-Mobile and Sprint run Verizon close in New York City


Latest RootMetrics survey found T-Mobile and Sprint close No. 2 and No. 3 to Verizon


Whether deserved or not, New York City is seen by many as the most important urban market in the country, and from a mobile carrier perspective, a true harbinger for how that carrier’s wireless network quality is perceived.


RootMetrics zeroed in on the most densely populated portions of the Big Apple with its network performance platform, with results showing both what was expected as well as some surprises.


RootMetrics said the stats were gleaned from 72,000 tests in both indoor and outdoor locations across seven districts in Manhattan, including the Financial District, the Garment District, Midtown, Soho, Tribeca, the Upper East Side and the Upper West Side. The testing also included a mix of venues (Citi Field, Yankee Stadium, Madison Square Garden and Barclays Center); transit locations, including Penn Station and Grand Central Station; airports, including John F. Kennedy International, Newark International and LaGuardia; and campus locations, including Columbia University and Fordham University.


Culling details from its research, RootMetrics found that while Verizon Wireless posted the strongest overall Manhattan “urban zone” performance, Sprint and T-Mobile US showed that at least in this environment they were a match for their larger rivals.


RootMetrics awarded Verizon Wireless first place or a tie for first place in 14 of the 21 total locations tested in the survey, including nine of 12 campus locations, four of four venues and one of two transit locations. Verizon Wireless did not fare so well at the area’s airports, missing out on a top ranking in all three locations.


T-Mobile US could be considered No. 2 in the survey, picking up first or a share of first place in 10 of the 21 locations, including seven campus settings, two of the airport locations and one of the transit stops. The carrier did not score a top ranking in any of the venue locations, though it did edge out Verizon Wireless as the fastest network in the survey area.


Sprint, which has focused a lot recently on its improving network performance, picked up a top or shared for top ranking in seven of the 12 campus locations included in the RootMetrics survey, but failed to garner a top spot in any of the other locations.


Perhaps most surprising was AT&T Mobility’s modest three first or tied for first rankings in the survey, snaring just a pair of top spots in campus locations and a single top spot at an airport. RootMetrics noted AT&T Mobility has typically trailed closely behind Verizon Wireless in most of its rankings, including its most recent “New York City and Tri-State Area” survey from earlier this year.


“However, within the densely populated Manhattan urban zone and the variety of other dense locations we tested in the New York City area, we saw increased competition from Sprint and T-Mobile,” RootMetrics explained in its latest report. “If results from these locations are any indication, investments from Sprint and T-Mobile are having a significant impact and helping to reshape the mobile performance race.”


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Reality Check: Top Q3 events (Pt. 2)

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The remaining top Q3 events


Last week, we covered five events/trends that will impact third quarter, total year and 2016 results (these are in no particular order):


1. The announcement and launch of the Apple iPhone 6s and iPhone 6s Plus, which included significant network radio improvements for T-Mobile US (700 MHz band 12) and Sprint (specifically carrier aggregation). Apple announced sales surpassed 13 million units at launch and a big reason for this (besides including China as an initial launch country) was the increased phone upgrade activity at T-Mobile US and Sprint. Update: With the exception of T-Mobile US (now with iPhone 6s delivery dates as long as eight weeks), wait times for new iPhone 6s Plus devices have stabilized.


2. Federal Communications Commission approval of Frontier’s acquisition of Verizon Communications’ California, Texas and Florida properties.


3. FCC starts shot clock on the Charter/Time Warner Cable/Bright House Networks merger.


4. Altice announces its intention to acquire Cablevision for $17.7 billion including debt. Update: Despite the volatile market, Altice was able to quickly raise funds to finance the Cablevision acquisition.


5. Samsung announces the Gear VR (virtual reality) for $99 starting in November.


5 additional industry shaping events


1. The end of subsidized wireless phone pricing (for all devices – sort of)

In mid-August, Verizon Wireless announced they were scrapping their current pricing plans for newer, simpler ones (total plans were reduced from 22 to five – see nearby picture of current device plans). In the process, they also ended two–year contracts and subsidized phone plans. Verizon Wireless’ emphasis on keeping their pricing process consistent across distribution channels seemed like a tip of the hat to T-Mobile US and a dig at AT&T Mobility, the last of the “big four” wireless providers to actively offer device subsidies.



For those of you who have been regular readers, the end of handset subsidies is not a surprise. Market trends were already pointing towards a non-subsidy world:


–Higher-end smartphones were becoming more expensive than a $199/$99/$1 structure would allow. The iPhone 6 Plus, introduced last year, seemed to test a price point that was a bit more than the mass market could pay, especially for a family of four or more devices. Twenty-five dollars to $30 per month per device seemed to be a better alternative, and an additional $3.34 per month for 30 months is a lot easier sell than $100 upfront for the 16 gigabyte to 64 GB to 128 GB upgrade.


–The cost to produce lower-end smartphones (as well as the availability of reconditioned mid-range smartphones) began to reduce the value of a free phone when paired with certain wireless plan types. For example, the HTC Desire 626 is an LTE-capable device with an eight-megapixel camera, 2,000 mAh battery and up to 1.5 GB of RAM – a good phone for browsing and low data-intensive tasks like e-mail, “Angry Birds” and Pandora. Its current list price at AT&T is $185 – two-years ago that price would have been $329 or higher. As the costs between the highest-end phones began to rise ($700 to $900) and the lowest-end phones began to fall (from $300 to $350 to below $200) one plan could not fit both types of subsidies. It made perfect sense for the industry to detach device from service payments.


–It didn’t hurt that the wireless carrier with the most success in 2014 and through the first two quarters of 2015 had been solely promoting subsidy-free plans. Verizon Wireless was not pioneering, but merely following T-Mobile US’ freshly plowed ground.


Subsidies have died and it’s going to hurt Best Buy and others who depended on them to drive sales. Couple this with the continued rollout of Amazon.com’s Prime free same-day delivery and Sprint’s Direct 2 U plans and the real losers from this change are wireless retail distributors.


2. Increased marketing and differentiation of borderless plans

In mid-August, AT&T Mobility revamped its Mobile Share Value plans and began to include unlimited talk and text to Canada and Mexico in their $100 (15 GB) and up plan types. This came on the heels of T-Mobile US’ July 9 announcement of “Mobile Without Borders” plan that includes free calling, texting and 2G data to Mexico and Canada for all Simple Choice customers.


If you are not a frequent cross-border traveler, these changes are not going to change your decision to use one carrier over another. For the 30 million U.S. wireless customers who routinely use their device in a country different from the United States, the changes initiated by T-Mobile US (global reductions in roaming voice rates and inclusion of free messaging) and accelerated by AT&T Mobility (unlimited borderless calling to Canada and Mexico for $100 and up data buckets) could not come at a better time. Perhaps the airport SIM card dispensers will go the way of airport payphones.


3. The slow but steady expansion of Google Fiber

In August, Google announced that San Antonio would join the ranks of Google Fiber cities starting in 2016. In September, Google announced that three additional cities – Irvine and San Diego, Calif.; and Louisville would join the ranks of potential markets for Google Fiber. Nearby is a full map of all of the markets Google has either deployed, is in the process of deploying or has entered active discussions (interestingly, none of Google’s announced areas overlap with the post Frontier-sale Verizon FiOS footprint).



Google learned a lot from their first deployment in Kansas City. As this Fast Company article points out, having fast Internet speeds is not as important to many low-income neighborhoods as it is in wealthier locales. Google’s 75% penetration in higher-end “fiberhoods” is great, but 30% in poorer sections of the Kansas City metro represents a real challenge.


There, cable and telco competitors are catching up. Comcast is already offering 2-gigabit-per-second speeds (symmetrical) in a few neighborhoods in Atlanta (and growing), and Time Warner Cable is ramping up its Maxx efforts in Charlotte and Raleigh-Durham, N.C. AT&T is now obligated (thanks to the FCC’s “concession” extracted during the DirecTV merger discussions) to offer Gigapower services to 12.5 million locations. It will be interesting to see the reaction to these offers when these cities are actually deployed.


4. Comcast goes national

One of the least widely reported stories of the quarter was Comcast’s announcement of the creation of a national services division to serve the needs of Fortune 1000 enterprises. While cable companies have had commercial services divisions (and have had networking interfaces to serve regional needs), the creation of a nationwide organization with the focus of managing in and out-of-territory needs is new and groundbreaking.


Couple this with Comcast’s acquisition of Contingent Network Services – a very reputable managed services provider based out of Cincinnati (a Time Warner Cable territory) – and everything is shaping up for a fiber-based competitor to AT&T and Verizon for domestic opportunities if their smaller cable colleagues (including Charter + TWC + Bright House) agree to provide connectivity at competitive rates. It will also be very interesting to see how Comcast will tackle international connectivity.


5. Sprint’s announcement that they will sit out the 600 MHz auction and cut $2 billion to $2.5 billion in expenses

After last week’s column went to press, a report emerged in The Wall Street Journal online that Sprint would be sitting out the 600 MHz auction. This has obvious implications to the reserve spectrum bidding dynamics (re: reserve spectrum was set aside for smaller carriers). Removing Sprint might also impact the level of interest from broadcasters who equate fewer bidders to lower auction yields. This is more a story about Sprint’s steadfast belief that deploying their current spectrum is a better option for shareholders than buying new, but the effects of Sprint’s decision to bypass the auction have not yet been felt.


On top of this, Sprint announced plans to cut up to $2.5 billion in additional costs out of the business. This comes on the heels of an 11% workforce reduction in the first year of Marcelo Claure’s tenure and complicates the “improve network to No. 1 or No. 2” goal (and, from the most recent RootMetrics results in Harrisburg and Scranton, Pa., as well as Baton Rouge and New Orleans, La., Sprint’s speeds are not keeping up with competitors (see more here). The $2.5 billion figure also does not include any positive effects Sprint will receive from increased leasing (less subsidies, less equipment installment plan long-term accounting effects).


If the reductions are headcount-focused, the majority will likely come from one of three sources: Front line employees working in retail stores (a tough decision); network (a really tough decision); and customer service (which has already seen several reductions thanks to simplified pricing plans put in place by Dan Hesse). Sprint’s details concerning how they will reduce costs will likely impact their ability to refinance $2 billion of debt, which is due in 2016. Details will likely come throughout the rest of this year, but the CFO’s note has certainly raised anxiety levels across the company.


This certainly provides plenty of content for Q3 earnings reports.


A special tribute


We lost a wireless industry titan in September. Roger Linquist, founder of MetroPCS and a friend to many Dallas entrepreneurs, passed away mid-month at the age of 77. His obituary says it all – odds beater, hard worker, risk taker, pioneer, family man.


MetroPCS


Nearly all of the former MetroPCS employees I talked to over the past two weeks loved working with Roger and everyone had a story to tell. He will be missed in the Dallas business community and throughout the wireless industry.


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Jim Patterson is CEO of Patterson Advisory Group, a tactical consulting and advisory services firm dedicated to the telecommunications industry. Previously, he was EVP – business development for Infotel Broadband Services Ltd., the 4G service provider for Reliance Industries Ltd. Patterson also co-founded Mobile Symmetry, an identity-focused applications platform for wireless broadband carriers that was acquired by Infotel in 2011. Prior to Mobile Symmetry, Patterson was president – wholesale services for Sprint and has a career that spans over 20 years in telecom and technology. Patterson welcomes your comments at jim@pattersonadvice.com and you can follow him on Twitter @pattersonadvice. Also, check out more columns and insight from Jim Patterson at mysundaybrief.com.


Editor’s Note: The RCR Wireless News Reality Check section is where C-level executives and advisory firms from across the mobile industry share unique insights and experiences.


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Monday, October 5, 2015

Industrial IoT – Designing, Testing & Securing the Next Mega-Trend (RCR Speaker Series)


Goldman Sachs views IoT as the third “internet” wave while predicting that IoT will exceed preceding internet waves by connecting 28 billion “things”. By extending mobile and wireless “pipes”, IoT will unlock product innovation, create new business models and expose networks to unprecedented level of security risk.


During this discussion, we will focus on the implications of IoT in general, while taking a closer look at designing, testing and securing industrial IoT


Who should attend:
Mobile carrier, hardware, software, and enterprise IT professionals along with investors seeking a better technical understanding of designing, testing and securing industrial IoT solutions (connected cars, home automation, manufacturing, M2M etc..)


What you will learn:

– Impact of industrial IoT in terms of the economy, jobs and technology

– Vertical market sectors impacted by industrial IoT

– What skills will be in the greatest demand

– The role of mobile operators in the Industrial IoT

– Design, test and security implications of industrial IoT vs. “wearables”

– Industrial IoT use case discussion


Moderator: Jeff Mucci, CEO and Editorial Director, RCR Wireless News

Panelist: David Loadman, Vice President of Mobile Device Test, National Instruments

Panelist: James Stanberry, SVP GM IoT, Silicon Labs

Panelist: JC Lazcano, VP of M2M/IoT, Gemalto

Panelist: Patrick Moorhead, Partner, Moor Insights & Strategy


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Industrial IoT – Designing, Testing & Securing the Next Mega-Trend (RCR Speaker Series)

Gigs: What is an RF Engineer? Telecom Careers Insider Episode 15

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What is an RF Engineer? In this episode of Telecom Careers Insider, Jeff Mucci from RCR Wireless News, takes an insider view of the critical role an RF engineer plays in today’s wireless and mobile world. Sponsors of this week’s episode include Nexius and Telecomcareers


  • Nexius: Accelerating Network and Business Transformation

  • Telecomcareers, an industry leading resume database with over 240,000 searchable resumes

According to guest Ben Wilmhoff, Founder of BluFlux, a Louisville, CO based RF Engineering and Test lab, today’s ideal RF engineer has experience with each of the following critical components of a wireless communications network and understands that the primary purpose of RF is to deliver data between two points while providing quality customer experience:


  1. Antenna

  2. RF front end module, which includes amplification, filtering and switching

  3. RF transceiver signal processor

With the exponential growth of sensors related to IoT (wearables, connected car, home automation, industry et..) and small cell cellular networks, the demand for qualified engineers will continue to grow across all segments of the supply chain from carrier to chip manufacturers. For example, a recent Indeed job search using the term “RF Engineer” displayed over 5300 open positions including:


When launching a new wireless device or sensor, a hardware product design team will have to:


  • select a wireless transceiver module

  • prepare board layout

  • design and integrate antennas

  • submit device to strict OTA and FCC testing along with carrier certification standards

“The real challenge for RF engineer designers” said Wilmhoff, “is knowing what to do when product does not meet test parameters.”


BluFlux Technologies is a concept to launch engineering and test company. In addition to receiving a patent earlier this year on technology that increases cell coverage, BluFlux recently announced that Google’s Advanced Technology and Projects (ATAP) group selected the company as one of the partners to develop Project Soli, a new interaction sensor that uses radar technology to capture movements of the human hand.





For more information about a career in RF Engineering, check out this week’s episode of Telecom Careers Insider.





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Gigs: What is an RF Engineer? Telecom Careers Insider Episode 15

ONF launches workforce-focused SDN certification program


ONF Certified SDN Professional Program designed to support changing skill sets


The Open Networking Foundation is looking to bolster support for its open software-defined networking position through the release of a Certified SDN Professional Program, which is to include testing and training sessions ahead of the certification exam.


ONF said the program is designed to “provide a strong foundation of vendor-neutral, concept and technical-level credentials in open SDN that can integrate with and complement individual vendor certifications in networking technologies or programming languages. The beta examinations are based on best practices illustrated in a variety of independent learning and training programs, and they are designed to evolve alongside the SDN ecosystem.”


Once passed, candidates will receive a certificate and an authorized registration number for their certification that ONF said would be managed through a global online portal available to certification owners and prospective employers. The online exams are open to all interested, with ONF offering free exams to the first 100 participants. Testing and training sessions are scheduled for the SDN & OpenFlow World Congress set for Oct. 12-16, in Düsseldorf, German.


ONF was formed in 2011 by a handful of technology and telecom heavyweights, including Deutsche Telekom, Facebook, Google, Microsoft, Verizon Communications and Yahoo. The non-profit organization claims more than 130 members, focused on the adoption of SDN platforms using OpenFlow and open SDN technologies.


The organization last month unveiled a new OpenFlow testing specification. ONF said the OpenFlow version 1.3 testing specification includes specific features designed to ensure the development of “richly functional SDN products and services,” and pushes mandatory inclusion of protocol components within products.


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ONF launches workforce-focused SDN certification program

Friday, October 2, 2015

Test and Measurement: Tektronix supports 5G backhaul testing


As industry interest and exploration of 5G deepens, Tektronix announced this week that it has a new feature capable of ultra-wide signal analysis for 5G backhaul arrangements.


The company said that the implementation of its SignalVu software on the company’s DPO70000SX ATI performance oscilloscopes will simplify multi-instrument test set-ups that are typically needed to perform testing on very wide bandwidth applications and reduce the need for frequent calibrations. The test solution is aimed at development for of next-generation technologies with very wide bandwidths, including 5G, cellular backhaul and radar and supports the demodulation and analysis of signals with bandwidth up to 70 GHz.


“For RF applications, we’re essentially delivering the widest bandwidth signal analyzer on the market with great signal fidelity and comprehensive analysis capabilities, including modulation and pulse analysis along with support for advanced commercial wireless standards such as 802.11ac and LTE. What’s more, it not only can be used as spectrum analyzer, but is also an oscilloscope,” said Jim McGillivary, Tektronix’s general manager RF and component solutions, in a statement.


GL Communications released enhanced network surveillance software this week, designed for wireless, TDM and IP networks. The software is used in conjunction with its protocol analyzer for remote network monitoring, and additions include a multi-protocol call flow feature that assesses interoperability among networks, such as SIP to SS7, according to Karthik Ramalingam, senior manager of product development at GL.


GL also recently introduced updated T1/E1 emulation products and software, including its synchronous trunk record playback application so that T1 and E1 line traffic can be recorded with accurate time-stamping and synchronization.


Anritsu upgraded O/E modules for its MS4640B VectorStar vector network analyzer family for a simplified characterization approach for components during the manufacturing process, with measurements including group delay and return loss measurements of E/O and O/E components and subsystems. The company also plans to launch a broadband optoin for optoelectronic measurements over 70 kHz to 100 GHz in the 1550 nm range, relying on a NIST-characterized photodiode to reduce uncertainties in measurement.


It also launched the new BERTWave MP2100B as an all-in-one test set for evaluating optical modules in optical communications systems. The solution supports measurements for up to four channels, includes a sampling oscilloscope and works for speeds ranging from 125 Mbps to 12.5 Gbps.


Keysight Technologies launched a new instrument module for vector signal generation and analysis in four slots, designed to speed up characterization of wireless components including power amplifiers and front-end modules, as well as “Internet of Things” (IoT) devices, in a manufacturing environment.


-Keysight’s Anite brand has been busy with benchmarking. The company has been selected for several mobile network benchmarking projects of CONATEL, the Paraguayan National Telecommunications Commission, with local work to be done by Anite partner Lexa Ingenieria. Anite also said that Arca Telecom will be using its solutions to assess mobile networks of Tier 1 operators in Spain.


Meanwhile, the University of Bristol will be relying on Anite’s Propsim F8 channel emulator for its 5G research.






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Huawei sees small cell opportunity in Middle East


The Chinese firm also targets LTE-A projects in the region


Chinese ICT firm Huawei is seeing significant growth opportunities in the Middle East region with small cells projects, the company’s Vice President of International Media Affairs for EMEA Ronald Sladek told RCR Wireless News.


“Many operators within the region are already active in small cell activities and are currently in the planning and deployment stages. Currently the most common deployment scenario is indoor, but with increasing capacity and coverage requirements, both indoor and outdoor scenarios will be equally vital in future,” the executive said.


“So far Huawei has worked on more than 180 small cell contracts worldwide, many of which have been in the Middle East. It will remain an important part of our portfolio in the coming years,” Sladek added.


According to the executive, Huawei has worked on approximately 17 commercial networks across the company’s Middle East business unit.


“Huawei has been working closely with leading operators [in the Middle East region]to carry out trials and tests on future LTE networks, particularly LTE-Advanced, 4.5G and 5G,” he said. Sladek also said the Chinese company is starting to work with LTE-Advanced networks in countries like the United Arab Emirates (UAE) and Kuwait


The EMEA region represented 35% of the company’s overall revenues last year. This figure represented an increase of approximately 20% versus the previous year.


“For many years the Middle East in particular has been a driver of that growth. The region is one of the fastest growing markets for Huawei,” the executive said. “In the last year alone we have seen incredible initiatives undertaken to move towards a more agile software-defined future, to develop new platforms and infrastructure-as-a-service, and to bolster information sharing between businesses, governments, and the telco sector. This digital transformation has been widely supported through ambitious national development agendas across the Middle East,” he added.


Sladek also said that Huawei is seeing increasing ICT initiatives across all markets in the Middle East but mentioned the UAE, Qatar and Saudi Arabia as the most mature markets in terms of ICT developments.


Within the Middle East, Huawei currently has offices across 10 countries with around 5,000 employees—of whom over 66% are local hires.


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Huawei sees small cell opportunity in Middle East