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世界のスマート水道ネットワークの市場分析と市場予測:スマート水道メータ、通信インフラ、配水のデータ解析

Smart Water Networks

Water Meters, Communications Infrastructure, and Data Analytics for Water Distribution Networks: Global Market Analysis and Forecasts

 

出版社 出版年月電子媒体価格ページ数図表数
Navigant Research
ナビガントリサーチ
2016年9月US$4,600
1-5ユーザライセンス
74 43

サマリー

米国調査会社ナビガントリサーチ(Navigant Research)の調査レポート「世界のスマート水道ネットワークの市場分析と市場予測:スマート水道メータ、通信インフラ、配水のデータ解析」は、世界のスマート水道ネットワーク製品とサービスの市場を調査しています。通信による水道インフラのビジネス事例、ビジネスチャンス、市場拡大への課題などの市場の主要な事柄について記載しています。2025年までの世界の導入容量とメータやその他のスマート水道ネットワーク技術による収益を技術毎、メータタイプ毎、地域毎に予測しています。スマート水道メータネットワークに関する主要な技術の評価と市場勢力図も記載しています。

目次(抜粋)

  • 世界のスマート水道ネットワークの市場概要
  • 世界のスマート水道ネットワークの市場促進要因、法規制、市場課題、市場動向、事例
  • 世界のスマート水道ネットワークの関連技術
  • 世界のスマート水道ネットワークの主要企業
  • 世界のスマート水道ネットワークの市場予測

Water infrastructure is in dire need of improvement. Many regions of the world do not have sufficient infrastructure for their population, and other areas face aging, degraded water mains that must be replaced. This, combined with increasing water scarcity, calls for a total replacement of drinking water distribution systems. Water consumption meters, traditionally inaccurate and with short lifespans, are being replaced in favor of communicating static meters with lifetimes as long as 10-20 years.

Smart water network infrastructure will continue to be slowly upgraded until 2023, when growth will accelerate. Old, inefficient meters will be replaced by automated meter reading (AMR) and, eventually, advanced metering infrastructure (AMI) meters. By 2025, the total smart water meter installed base is expected to exceed 1.3 billion meters. The increasing installed base will promote the growth of other smart water technologies like network monitoring and control devices, data management systems, and robust communications infrastructure. According to Navigant Research, global revenue from smart water networks is projected to grow from $2.6 billion in 2016 to $7.2 billion in 2025.

This Navigant Research report examines the global market for smart water network products and services. The study analyzes the major market issues, including the business case for communicating water infrastructure, opportunities, and barriers to market expansion, related to smart water networks. Global market forecasts for installed capacity and revenue from meters and other smart water network technologies, segmented by technology, meter type, and region, extend through 2025. The report also examines the key technologies related to smart water networks, as well as the competitive landscape.

Key Questions Addressed:
  • How has the market for water meters evolved since the introduction of communicating devices?
  • What are the advantages of implementing automated meter reading (AMR) and advanced metering infrastructure (AMI) devices?
  • Which major global regions will experience the fastest growth in smart water networks?
  • Which smart water technologies will be most important in each of the major global regions?
  • How can utilities and smart water product manufacturers ensure the continued adoption of smart water products?
Who needs this report?
  • Water utilities
  • Water meter vendors
  • Meter data management (MDM) software providers
  • Radio frequency (RF) communications hardware vendors
  • Water industry associations
  • Government and regulatory bodies
  • Investor community


目次

Table of Contents

1. Executive Summary

1.1  Overview

1.2  Market Forecasts

2. Market Issues

2.1  Smart Water Infrastructure: Smart Meters and Beyond

2.1.1   The Water Distribution Network

2.2  Market Drivers

2.2.1   Water Scarcity

2.2.2   Leakage and Conservation

2.2.3   Aging Infrastructure

2.2.4   Non-Revenue Water

2.2.5   Utility Operations Savings

2.2.6   The Water-Energy Nexus

2.2.7   The Effects of Urbanization

2.3  Regulatory and Policy Trends

2.3.1   Examples of Water Metering Legislation and Policy

2.3.1.1  United States

2.3.1.2  Europe

2.4  Market Barriers

2.4.1   Finance

2.4.2   Risk Aversion

2.4.3   Consumer Attitudes

2.4.4   The Market Opportunity

2.5  Regional Trends and Case Studies

2.5.1   North America

2.5.2   Europe

2.5.3   Asia Pacific

2.5.4   Latin America

2.5.5   Middle East

2.5.6   Africa

3. Technology Issues

3.1  Definition of Smart Water Infrastructure

3.2  Components of Smart Water Infrastructure

3.3  Smart Water Metering Technology

3.3.1   Mechanical Water Meters

3.3.2   Static or Solid-State Meters

3.3.3   Meter Registers

3.3.4   Meter Encoders

3.3.5   AMI Modules

3.3.6   AMR

3.3.7   Headend Software

3.4  Communications

3.4.1   RF Communications

3.4.2   Network Topologies

3.4.2.1  Mesh Networks

3.4.2.2  Point-to-Point Networks

3.4.2.3  Cellular

3.4.3   ZigBee

3.5  Smart Water Network Management and Monitoring

3.5.1   Leak Detection

3.5.2   Intelligent Pressure Management

3.5.3   Water Quality Monitoring

3.6  Other Aspects of Water Management

3.6.1   Wastewater Recycle

3.6.2   Waste Heat Recapture

3.6.3   Stormwater Overflow and Diversion

3.7  Software

3.7.1   Data Analytics

3.7.2   Customer Data Portals

3.7.3   Integrated Water Management Suites

3.8  Standards

4. Key Industry Players

4.1  Meter Companies

4.1.1   Aclara

4.1.2   Arad Technologies/Master Meter

4.1.3   Badger Meter

4.1.4   Diehl Metering Group

4.1.5   Elster Group

4.1.6   Itron

4.1.7   Mueller

4.1.8   Neptune Technology Group

4.1.9   Sensus

4.2  Data Acquisition and Management Companies

4.2.1   Airborne Underwater Geophysical Signals

4.2.2   Arcadis

4.2.3   Arqiva

4.2.4   Cambrian Innovation

4.2.5   CH2M

4.2.6   Derceto

4.2.7   GE

4.2.8   Global Water Resources

4.2.9   i2O

4.2.10   OptiRTC

4.2.11   Oracle

4.2.12   Schneider Electric

4.2.13   Sentec

4.2.14   Siemens

4.2.15   TaKaDu

4.2.16   Veolia Peer Performance Solutions

4.2.17   Verizon

5. Market Forecasts

5.1  Global Smart Water Infrastructure Market

5.1.1   Smart Water Metering

5.1.2   Smart Water Network Technology and Management Software

5.2  Regional Market Forecasts

5.2.1   North America

5.2.2   Europe

5.2.3   Asia Pacific

5.2.4   Latin America

5.2.5   Middle East & Africa

5.3  Conclusions and Recommendations

6. Acronym and Abbreviation List
7. Table of Contents
8. Table of Charts and Figures
9. Scope of Study, Sources and Methodology, Notes

List of Charts and Figures

  • Global Projected Water Stress in the Year 2040
  • Correlation between Water Intensity and Energy Intensity for a Variety of Industries
  • Mesh Network Configurations
  • Star Network Configurations
  • Non-Revenue Water Rates for Selected Cities, World Markets: 2012
  • Annual Smart Water Meter Shipments by Meter Type, World Markets: 2016-2025
  • Annual Smart Water Meter Revenue by Meter Type, World Markets: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, World Markets: 2016-2025
  • Annual Smart Water Networks Revenue by Region, World Markets: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, North America: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Europe: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Asia Pacific: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Latin America: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Middle East & Africa: 2016-2025

List of Tables

  • Water Use Intensity of Select Energy Conversion Process
  • Energy Metering Exclusions
  • Water Metering Exclusions
  • Non-Revenue Water Rates for Selected Cities, World Markets: 2012
  • Annual Smart Water Networks Revenue by Region, World Markets: 2016-2025
  • Cumulative Smart Water Networks Revenue by Region, World Markets: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, World Markets: 2016-2025
  • Water Meter Installed Base (All Types) by Region, World Markets: 2016-2025
  • Installed Base of All Water Meters by Meter Type and Region, World Markets: 2016-2025
  • Percentage of Water Meter Installed Base by Meter Type and Region, World Markets: 2016-2025
  • Water Meter Installed Base (All Types) by Meter Type, World Markets: 2016-2025
  • Annual Smart Water Meter Shipments by Meter Type, World Markets: 2016-2025
  • Annual Smart Water Meter Revenue by Meter Type, World Markets: 2016-2025
  • Annual Smart Water Meter Shipments by Meter Type, North America: 2016-2025
  • Annual Smart Water Meter Revenue by Meter Type, North America: 2016-2025
  • Annual Smart Water Meter Shipments by Meter Type, Europe: 2016-2025
  • Annual Smart Water Meter Revenue by Meter Type, Europe:  2016-2025
  • Annual Smart Water Meter Shipments by Meter Type, Asia Pacific: 2016-2025
  • Annual Smart Water Meter Revenue by Meter Type, Asia Pacific: 2016-2025
  • Annual Smart Water Meter Shipments by Meter Type, Latin America: 2016-2025
  • Annual Smart Water Meter Revenue by Meter Type, Latin America: 2016-2025
  • Annual Smart Water Meter Shipments by Meter Type, Middle East & Africa: 2016-2025
  • Annual Smart Water Meter Revenue by Meter Type, Middle East & Africa: 2016-2025
  • Annual Smart Water Meter Average Selling Price by Meter Type and Region, World Markets: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, North America: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Europe: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Asia Pacific: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Latin America: 2016-2025
  • Annual Smart Water Networks Revenue by Technology, Middle East & Africa: 2016-2025

 

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プレスリリース

[プレスリリース原文]

Global Revenue from Smart Water Networks Projected to Reach $7.2 Billion in 2025

During the next decade, increasing affordability of related technologies is expected to drive market growth

 

October 19, 2016

A new report from Navigant Research analyzes the market for smart water network products and services, with details related to market issues, opportunities, and barriers to expansion, in addition to global forecasts for installed capacity and revenue from meters and other smart water network technologies, through 2025.

In many regions of the world, water infrastructure has either fallen into disrepair or is not sufficient to supply the needs of the population. The challenge of supplying clean water to a growing global population requires a more sophisticated approach than traditional mechanical technologies allow, calling for a shift toward digital solutions for water metering, infrastructure monitoring, and customer billing.  According to a new report from Navigant Research, global revenue from smart water networks is projected to grow from
$2.6 billion in 2016 to $7.2 billion in 2025.

“Non-revenue water, aging infrastructure, and quality concerns are driving water utilities to adopt smarter systems, in the form of advanced metering infrastructure (AMI) and automated meter reading (AMR),” says Anne Wrobetz, research analyst with Navigant Research. “This transition is occurring in regions like North America, where metering is widespread but tends to be carried out by often inaccurate, mechanical meters, and in regions where metering and point-of-use distribution networks are relatively recent, such as in some parts of Asia.”

As the costs of AMR and AMI technologies gradually fall over the next decade, the affordability of smart water systems is expected to drive continued market growth, notably after 2023, according to the report. A majority of the revenue generated will be from sales and installation of intelligent water meters, though communication devices, data management systems, and water network monitoring and control services will also significantly contribute.

The report, Smart Water Networks, examines the global market for smart water network products and services. The study analyzes the major market issues, including the business case for communicating water infrastructure, opportunities, and barriers to market expansion, related to smart water networks. Global market forecasts for installed capacity and revenue from meters and other smart water network technologies, segmented by technology, meter type, and region, extend through 2025. The report also examines the key technologies related to smart water networks, as well as the competitive landscape.

 

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