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The LPWA (Low Power Wide Area) Networks Ecosystem: Opportunities, Challenges, Strategies, Industry Verticals & Forecasts

Typically reliant on unlicensed frequencies, LPWA devices have low data rates, long battery lives and can operate unattended for long periods of time.
MarketsandMarkets™ | 06.05.2016

The LPWA (Low Power Wide Area) Networks Ecosystem: 2015 - 2030 - Opportunities, Challenges, Strategies, Industry Verticals & Forecasts Size and Share Published in 2015-11-12 Available for US$ 2500 at Researchmoz.us"

Description

Until recently, most M2M and IoT services have largely relied on licensed cellular, wireline and satellite networks for their wide area connectivity requirements. Cellular networks, in particular, have enjoyed significant success in the arena. However, for many low bandwidth IoT applications, traditional cellular networks are deemed too expensive due excessive power consumption and complex protocols that lower battery life. As a result, a number of LPWA (Low Power Wide Area) alternatives have emerged that specifically seek to address these concerns.

LPWA networks are optimized to provide wide area coverage with minimal power consumption. Typically reliant on unlicensed frequencies, LPWA devices have low data rates, long battery lives and can operate unattended for long periods of time.

Already prevalent in IoT applications such as smart metering, lighting control and parking management, LPWA networks are expected to make a significant contribution to the M2M and IoT ecosystem, with an estimated $27 Billion in service revenue by 2020.

The "LPWA (Low Power Wide Area) Networks Ecosystem: 2015 – 2030 – Opportunities, Challenges, Strategies, Industry Verticals & Forecasts" report presents an in-depth assessment of the LPWA networks ecosystem including LPWA technologies, key trends, market drivers, challenges, vertical market applications, deployment case studies, regulatory landscape, standardization, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents market size forecasts from 2015 till 2030. The forecasts are segmented for 9 vertical markets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

Topics Covered

The report covers the following topics:

- LPWA networks ecosystem

- Market drivers and barriers

- LPWA technologies, spectrum bands and key trends

- Assessment of competing cellular, satellite, wireline and short range networking technologies

- Vertical market applications, opportunities and deployment case studies

- Regulatory landscape and standardization

- Industry roadmap and value chain

- Profiles and strategies of over 80 leading ecosystem players

- Strategic recommendations for ecosystem players

- Market analysis and forecasts from 2015 till 2030

Historical Revenue & Forecast Segmentation

Connection and service revenue forecasts are provided for the following submarkets:

Vertical Markets

- Agriculture

- Asset Management & Logistics

- Automotive & Transportation

- Consumer Applications & Home Automation

- Energy & Utilities

- Healthcare

- Intelligent Buildings & Infrastructure

- Public Safety, Security & Surveillance

- Retail & Vending

- Others

Regional Markets

- Asia Pacific

- Eastern Europe

- Middle East & Africa

- Latin & Central America

- North America

- Western Europe

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Key Questions Answered

The report provides answers to the following key questions:

- How big is the LPWA networks opportunity?

- What trends, challenges and barriers are influencing its growth?

- How is the ecosystem evolving by segment and region?

- What will the market size be in 2020 and at what rate will it grow?

- Which regions and submarkets will see the highest percentage of growth?

- How are smart city initiatives driving LPWA network investments?

- What are the key performance characteristics of LPWA technologies such as Sigfox, LoRa and NB-IOT?

- How does regulation impact the adoption of LPWA networks?

- Do LPWA networks pose a threat to cellular network technologies?

- Who are the key market players and what are their strategies?

- What strategies should LPWA technology providers, mobile operators, MVNOs, aggregators, IoT platform providers and other ecosystem players adopt to remain competitive?

Key Findings

The report has the following key findings:

- Already prevalent in IoT applications such as smart metering, lighting control and parking management, LPWA networks are expected to make a significant contribution to the M2M and IoT ecosystem, with an estimated $27 Billion in service revenue by 2020.

- As of Q4'2015, SNS Research estimates the cost of a typical LPWA module to be $5-20, depending on the specific technology. As LPWA network deployments mature, we expect that the cost per module can drop down to as low as $1-2 in volume quantities.

- At present, a majority of LPWA networks operate in license-exempt spectrum primarily in sub-GHz bands. There are a number of ongoing initiatives that call for regulators to dedicate spectrum bands exclusively for LPWA networks as mass market adoption of unlicensed LPWA networks can result in significant interference.

- Besides optimizing their cellular networks for M2M services, mobile operators are increasingly investing in their own carrier-grade LPWA networks to support low bandwidth IoT applications.

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Table of Content


1 Chapter 1: Introduction

1.1 Executive Summary

1.2 Topics Covered

1.3 Historical Revenue & Forecast Segmentation

1.4 Key Questions Answered

1.5 Key Findings

1.6 Methodology

1.7 Target Audience

1.8 Companies & Organizations Mentioned

2 Chapter 2: An Overview of LPWA Networks

2.1 M2M Networks & the IoT Vision

2.1.1 What is M2M Technology?

2.1.2 The IoT Vision

2.1.3 M2M & IoT Architecture

2.2 The Limitations of Traditional M2M Networking Technologies

2.3 What are LPWA Networks?

2.4 Key Characteristics of LPWA Networks

2.4.1 Long Range & Strong Propagation

2.4.2 Star Network Topology

2.4.3 Low Data Rates

2.4.4 Low Power Consumption

2.4.5 Battery Life Requirements

2.4.6 Scalability

2.4.7 Low Cost Modules & Infrastructure

2.4.8 Supplementary Features

2.5 Market Growth Drivers

2.5.1 Addressing Low Throughput IoT Use Cases

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