LTE Offers M2M Applications Longevity, Heavy Reading Says
Although M2M users think they don't need LTE, it offers numerous benefits, especially 'future proofing,' says Heavy Reading 4G/LTE Insider
BOSTON, March 15, 2013 /PRNewswire/ -- Although Long Term Evolution (LTE) seems excessive to machine-to-machine (M2M) users, it offers many benefits, including reduced operation costs and "future proofing," according to the latest report from Heavy Reading 4G/LTE Insider, a paid research service of Heavy Reading (www.heavyreading.com).
LTE for M2M: The Long-Term Opportunity Begins Now identifies and analyzes these and other key issues affecting M2M adoption of LTE through 2015. It explores the major drivers of and barriers to adoption, such as bandwidth requirements, as well as industry strategies for reducing hardware premiums at a faster rate than volumes alone would enable.
"At first blush, LTE seems to have everything that M2M users don't need," notes Tim Kridel, research analyst with Heavy Reading 4G/LTE Insider and author of the report. "That assumption is correct, but it also overlooks all of the reasons why so many operators, vendors and end users are already exploring LTE for M2M – and, in a few cases, using it."
A couple of factors make LTE intriguing for M2M applications, Kridel says. "One is that its spectral efficiency and other attributes reduce the operator's cost of delivering service below that of incumbent technologies such as GPRS, CDMA2000 1X and UMTS," he continues. "Further, some users are considering LTE as a form of future-proofing, especially those whose devices need to remain in the field for five, 10 or 15 years. For them, paying a premium for LTE hardware could be less expensive than replacing 2.5G modules when operators shut down those networks."
Key findings of LTE for M2M: The Long-Term Opportunity Begins Now include:
- Despite drawbacks such as spotty coverage, band fragmentation and steep module costs, some M2M users are considering or deploying LTE.
- M2M adoption of LTE won't begin to ramp up sharply until 2015.
- Operators, vendors and 3GPP are looking for ways to slash LTE's hardware premium to spur M2M adoption.
- LTE is a viable option for future-proofing M2M applications not just against technological obsolescence, but from a business perspective, too.
- As consumers and enterprises migrate to LTE, operators could discount 3G to attract M2M users.
- Operator assurances about 1X and GPRS longevity face the reality of limited spectrum.
LTE for M2M: The Long-Term Opportunity Begins Now is available as part of an annual single-user subscription (6 issues per year) to Heavy Reading 4G/LTE Insider, priced at $1,595. Individual reports are available for $900 (single-user license).
To subscribe, or for more information, please visit: www.heavyreading.com/4glte. For more information on all Insider services, please visit www.heavyreading.com/research.
To request a free executive summary of the report, or for details on multi-user licensing options, please contact:
Jeff Geddes
Account Manager
Heavy Reading
303-997-9135
[email protected]
Press/analyst contact:
Jennifer Baker
Marketing Director, Light Reading Communications Network
617-747-4110
[email protected]
About Heavy Reading (www.heavyreading.com)
Heavy Reading is an independent research organization offering deep analysis of emerging telecom trends to network operators, technology suppliers, and investors. Its product portfolio includes in-depth reports that address critical next-generation technology and service issues, market trackers that focus on the telecom industry's most critical technology sectors, exclusive worldwide surveys of network operator decision-makers that identify future purchasing and deployment plans, and a rich array of custom and consulting services that give clients the market intelligence needed to compete successfully in the global telecom industry. As a division of UBM Tech (tech.ubm.com), Heavy Reading contributes to the only integrated business information platform serving the global communications industry.
SOURCE Heavy Reading
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