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Global Low-Power Wide-Area Networks (LPWAN) Market, Forecast to 2025

Global Low-Power Wide-Area Networks (LPWAN) Market, Forecast to 2025

LPWAN Technologies to Shape the Future of Massive IoT, Allowing Many Use Cases to Scale

RELEASE DATE
28-Jan-2022
REGION
North America
Research Code: K698-01-00-00-00
SKU: IT04467-NA-MT_26212
$2,450.00
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IT04467-NA-MT_26212
$2,450.00
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Description

Low power wide area network (LPWAN) is a wireless wide area network that is optimized for non-mission-critical applications in machine-to-machine (M2M) and Internet of Things (IoT) communications. LPWAN deployments benefit M2M and IoT applications in terms of extended coverage, low transmission rate, longer battery life, cost savings in operations, and lower pricing for network services. Leading LPWAN technologies include LoRaWAN®, Sigfox, RPMA® and Wi-SUN®.

Proprietary LPWANs typically operate in the license-free industrial, scientific, and medical (ISM) bands and are hence less expensive on a
per-connection basis than current mobile cellular and other licensed radio options. Latency is not the primary concern; hence long-range operation is feasible. However, they face strong competition from licensed LPWAN cellular-based technologies, since at the same time, the cellular industry is also developing standards to support M2M and IoT deployments in an efficient manner. Some of these technologies include narrowband (NB)-IoT and Long Term Evolution for Machine (LTE-M).

The Global LPWAN market is still at a growing stage; with network operators expanding public and private LPWAN networks across the globe.
In certain cases, operators are conducting trials of unlicensed LPWAN integrated with alternative technologies such as satellites for extended coverage or roaming capabilities.

This study will focus on the most advanced LPWAN deployments:
1. Proprietary LPWAN technologies (in unlicensed spectrum):
• LoRaWAN®
• Sigfox
• RPMA®
• Wi-SUN®
2. LPWAN Cellular technologies in licensed spectrum:
• Narrowband IoT (NB-IoT)
• Long-Term Evolution for Machines (LTE-M)

No single technology or company can meet the demands of IoT across sectors and consumers. While most technologies can be expected to coexist, the best alternatives will emerge from trial and error and by mapping features to requirements. The scale of IoT, though vast already, is still far from what can be achieved, and the demand has only just scratched the surface.

This market insight covers the following sections:
• LPWAN overview and characteristics
• Detailed leading LPWAN technologies
• Market drivers and restraints
• Market forecast in terms of connections
• Competitive profiles of technology alliances and public network operators
• Growth opportunities and strategic imperatives for success

The base year of this insight is 2021, with forecasts running up to 2025. The research highlights key trends impacting the Global LPWAN market and outlines future implications.

RESEARCH: INFOGRAPHIC

This infographic presents a brief overview of the research, and highlights the key topics discussed in it.
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Table of Contents

Why is it Increasingly Difficult to Grow?

The Strategic Imperative 8™

The Impact of the Top Three Strategic Imperatives on LPWAN Industry

Growth Opportunities Fuel the Growth Pipeline Engine™

Scope of Analysis

Market Definitions—LPWAN Concept

LPWAN Overview

Market Segmentation

Key Public Network Operators for LPWAN Licensed and Unlicensed Technologies

Key Questions this Study will Answer

Key Growth Metrics for LPWAN Market

Growth Environment

Growth Drivers for LPWAN Market

Growth Driver Analysis for LPWAN Market

Growth Driver Analysis for LPWAN Market (continued)

Growth Restraints for LPWAN Market

Growth Restraints Analysis for LPWAN Market

Growth Restraints Analysis for LPWAN Market (continued)

Forecast Assumptions—LPWAN Market

Connections Forecast—LPWAN Market

Connections Forecast by Segment—LPWAN Market

Connections Forecast by Technology—LPWAN Market

Connections Forecast by Region—LPWAN Market

LPWAN Most Relevant Applications Across Industries

Percent Connections by Industry Vertical—LPWAN Market

Connections Forecast Analysis—LPWAN Market

Connections Forecast Analysis by Segment—LPWAN Market

Connections Forecast Analysis by Technology—LPWAN Market

Connections Forecast Analysis by Region—LPWAN Market

Connections Forecast Analysis by Industry Vertical—LPWAN Market

Competitive Environment—LPWAN Market

GSMA (NB-IoT and LTE-M) Profile

GSMA (NB-IoT and LTE-M) Profile (continued)

LoRaWAN® Profile

LoRaWAN® Profile (continued)

Sigfox Profile

Sigfox Profile (continued)

Ingenu (RPMA®) Profile

Ingenu (RPMA®) Profile (continued)

Wi-SUN® Profile

Wi-SUN® Profile (continued)

Everynet Profile

Everynet Profile (continued)

American Tower do Brasil (ATC) Profile

American Tower do Brasil (ATC) Profile (continued)

WND Brasil Profile

WND Brasil Profile (continued)

Growth Opportunity 1: Asset Tracking for Logistics & Supply Chain

Growth Opportunity 1: Asset Tracking for Logistics & Supply Chain (continued)

Growth Opportunity 2: Smart and Safe Cities Applications

Growth Opportunity 2: Smart and Safe Cities Applications (continued)

Growth Opportunity 3: Agribusiness to Improve Farmer’s Productivity with Sustainable Practices

Growth Opportunity 3: Agribusiness to Improve Farmer’s Productivity with Sustainable Practices (continued)

Growth Opportunity 4: Retail Analytics and Security

Growth Opportunity 4: Retail Analytics and Security (continued)

Module and Connectivity Pricing References

Module and Connectivity Pricing References (continued)

List of Exhibits

Legal Disclaimer

Low power wide area network (LPWAN) is a wireless wide area network that is optimized for non-mission-critical applications in machine-to-machine (M2M) and Internet of Things (IoT) communications. LPWAN deployments benefit M2M and IoT applications in terms of extended coverage, low transmission rate, longer battery life, cost savings in operations, and lower pricing for network services. Leading LPWAN technologies include LoRaWAN®, Sigfox, RPMA® and Wi-SUN®. Proprietary LPWANs typically operate in the license-free industrial, scientific, and medical (ISM) bands and are hence less expensive on a per-connection basis than current mobile cellular and other licensed radio options. Latency is not the primary concern; hence long-range operation is feasible. However, they face strong competition from licensed LPWAN cellular-based technologies, since at the same time, the cellular industry is also developing standards to support M2M and IoT deployments in an efficient manner. Some of these technologies include narrowband (NB)-IoT and Long Term Evolution for Machine (LTE-M). The Global LPWAN market is still at a growing stage; with network operators expanding public and private LPWAN networks across the globe. In certain cases, operators are conducting trials of unlicensed LPWAN integrated with alternative technologies such as satellites for extended coverage or roaming capabilities. This study will focus on the most advanced LPWAN deployments: 1. Proprietary LPWAN technologies (in unlicensed spectrum): • LoRaWAN® • Sigfox • RPMA® • Wi-SUN® 2. LPWAN Cellular technologies in licensed spectrum: • Narrowband IoT (NB-IoT) • Long-Term Evolution for Machines (LTE-M) No single technology or company can meet the demands of IoT across sectors and consumers. While most technologies can be expected to coexist, the best alternatives will emerge from trial and error and by mapping features to requirements. The scale of IoT, though vast already, is still far from what can be achieved, and the demand has only just scratched the surface. This market insight covers the following sections: • LPWAN overview and characteristics • Detailed leading LPWAN technologies • Market drivers and restraints • Market forecast in terms of connections • Competitive profiles of technology alliances and public network operators • Growth opportunities and strategic imperatives for success The base year of this insight is 2021, with forecasts running up to 2025. The research highlights key trends impacting the Global LPWAN market and outlines future implications.
More Information
Author Cecilia Perez
GPS Codes 9702-C1,9705-C1,9A5B-C1,9AD1-C1,9B07-C1
Industries Information Technology
No Index No
Is Prebook No
Podcast No
WIP Number K698-01-00-00-00