Low power wide area (LPWA) IoT technologies in unlicensed spectrum are growing in coverage and adoption, while standardized technologies for use in licensed spectrum are to become available later this year. The benefits of low cost, low power and broad coverage (including indoor) address a wide range of different application requirements which cellular, short range wireless and other connectivity options cannot match.
Therefore growth is forecast to be very high. A number of proprietary LPWA technologies are available today, with deployments widening. We see that there are three key contenders emerging: SIGFOX, LoRa and RPMA, each of which enjoys different advantages and disadvantages in terms of capability, industry support, business model, degree of coverage and level of adoption. 3GPP LPWA standards, notably LTE-M and NB-IoT, will be finalized by mid-2016, and the first products are expected by the end of 2016
Complete Report Available at: http://www.reportsweb.com/low-power-wide-area-internet-of-things-market-forecasts-and-mno-approaches
Scope of Report:
– M2M and IoT Definitions and Overview: It provides a brief overview of M2M and IoT definitions, mapping of M2M applications and a comparison of M2M v/s cellular connections on a regional basis.
– LPWA Technology Overview: This section provides a comparative overview of the LWPA wrt to other prevalent traditional cellular technologies.
– Unlicensed LPWA Provider Profiles: It includes the profiles of LPWA providers like SIGFOX, LoRa Alliance, Weightless, Ingenu and their LWPA offerings and deployment details.
– LPWA Technology Assessment: This section provides a comparative overview of LWPA providers and its impact on cellular technology (2G) and various comparisons across the six application categories as specified by Publisher.
– MNO Approaches to LPWA: The various approaches and intent of the MNOs for deployment, support and reselling of the LWPA network services.
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– LPWA technologies provide significant improvements in terms of power consumption, coverage and pricing over cellular and other M2M connectivity technologies, and as a result we expect to see strong adoption in coming years. Between 2015 and 2020, we forecast that cellular M2M connections will grow from 310m to 715m and LPWA M2M connections will grow from 20m to over 860m.
– Smart meters will, by some margin, be the largest application with 45% of total LPWA connections in 2020. Industrial/financial applications will be the second largest, followed by consumer electronics, a broad category where we expect very high growth rates around 2020. Smart city applications, notably intelligent lighting/parking and smart buildings, are forecast to account for 12% of total LPWA connections in 2020. The adoption of LPWA in land vehicle-based applications is expected to be limited.
– North America is initially the largest LPWA region, largely because of the adoption of RPMA devices in predominantly private networks. LoRa and SIGFOX networks are also being rolled out in US. Western Europe is expected to become the largest region in terms of LPWA connections in 2017, but Asia Pacific will overtake it in the following year and by 2020 the latter is expected to represent nearly 46% of the total.
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Reason to Buy
– This report helps executives gain understanding of the different LPWA IoT technologies and adoption trends across various geographies and industry verticals.
– The LPWA IoT competitive landscape is given extra attention, enabling MNOs, vendors and unlicensed LPWA Service Network Operators (SNOs) to gain the insight they need.
– The broad but detailed LPWA IoT perspective will enable MNOs, vendors and unlicensed LPWA Service Network Operators (SNOs) to succeed in LWPA deployment across various regions.
– The report brings several case studies that showcase the main approaches major mobile network operators (MNOs) are following regarding LPWA IoT technologies.
– The report is designed for an executive-level audience, boasting presentation quality that allows it to be turned into presentable material immediately.
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