エネルギーハーベスティングシステムの世界市場規模・シェア・開発・成長・需要予測

◆英語タイトル:Energy Harvesting System Market by Technology (Light, Vibration, Thermal, Electromagnetic / RF), by Component (Transducer [Photovoltaic, Piezoelectric, Thermoelectric, Electro-Dynamic], PMIC, Storage Systems), by Application (Building & Home Automation, Consumer Electronics, Industrial, Transportation, Security), by Geography (U.S., Canada, Germany, U.K., Italy, China, Japan, India, South Korea, South Africa, U.A.E.) - Global Market Size, Share, Development, Growth, and Demand Forecast, 2013-2023
◆発行会社/調査会社:P&S Market Research
◆商品コード:PSM804007
◆発行日:2018年3月
◆調査対象地域:グローバル
◆産業分野:エネルギー
◆ページ数:141
◆レポート言語:英語
◆レポート形式:PDF
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*** レポート概要(サマリー)***

Growing measures to reduce carbon footprints, lower dependence on fossil fuels, rising adoption of IoT and big data, and growing demand for power-efficient systems are some of the major factors driving the growth of the market.

Insights on Market Segments

Of all applications of energy harvesting systems, building and home automation has been contributing the highest revenue globally, with an estimated contribution of more than 35% in 2017. It is also expected to be the fastest growing category during the forecast period. This is due to rapid increase in implementation and installation of sensor-based technologies, and increase in demand for energy efficient power systems, from residential and commercial sectors.

Europe Stands as the Largest Energy Harvesting System Market

Europe has been contributing the largest revenue share to the energy harvesting system market, followed by North America. It is mainly attributed to the rise in automation of buildings and homes, and rapid growth of the industrial automation sector in these regions.

Rising Adoption of IoT And Big Data is the Key Growth Driver

Energy harvesting system market is developing well, and IoT and big data technologies have given it a real impetus. It is generally considered as the abstraction of operational power from the atmosphere to decrease the requirement of external power sources or batteries. Habitually, electricity is utilized to achieve some active sensing and interconnect the sensor data wirelessly over local area network (LAN) or wide-area network (WAN). In the coming years, millions or billions of devices are going to be connected to the internet. It is not surprising to allude that energy harvesting will be highly beneficial for IoT applications.

Emergence of Motion Energy Harvesters— A Lucrative Opportunity for Market Growth

A majority of wearables available in the energy harvesting system market are fitness trackers and other health application devices, which can also be driven by human motion. As wearables are becoming more preferred and common among consumers, the demand for energy to drive them is also increasing. Energy harvesting is emerging as a way to aid extra battery power in wearables. Energy harvesting also supplies energy to devices when the battery is exhausted and there is no availability of power supply.

Commonly, researchers have their hopes pinned on energy-harvesting to drive wearable devices and ultra-low power devices, that comparatively require less amount of power than conventional sources. In 2017, a team of researchers at Georgia Institute of Technology developed the ways to produce mechanical energy from the movements of human body, not only in standalone devices but also by integrating technology into fabrics. The emergence of new energy harvesting techniques has been proven to drive energy in ultra-low power applications. This provides immense growth opportunities to the energy harvesting system market across the globe.

Energy Harvesting System Market Competitiveness

As the energy harvesting system market sees high growth opportunities due to growth in energy harvesting practices in consumer electronics, and building and home automation categories, the competition gets tightened.

With increasing applications of energy harvesting systems across various industries, companies operating in this market are increasingly launching new products to enhance their offerings. For instance, in January 2018, EnOcean GmbH unveiled self-powered wireless sensors for energy harvesting solutions in IoT, in the International Consumer Electronics Show program which was held in Las Vegas. The solution is based on the company’s Bluetooth and sub 1 GHz band (ISO/IEC 14543-3-1x) wireless standards.

*** レポート目次(コンテンツ)***

Chapter 1. Research Background

1.1 Research Objectives

1.2 Market Definition

1.3 Research Scope

1.3.1 Market Segmentation by Technology

1.3.2 Market Segmentation by Component

1.3.3 Market Segmentation by Application

1.3.4 Market Segmentation by Geography

1.3.5 Analysis Period

1.3.6 Market Data Reporting Unit

1.3.6.1 Value

1.4 Key Stakeholders

Chapter 2. Research Methodology

2.1 Secondary Research

2.2 Primary Research

2.2.1 Breakdown of Primary Research Respondents

2.2.1.1 By region

2.2.1.2 By industry participant

2.2.1.3 By company type

2.3 Market Size Estimation

2.4 Data Triangulation

2.5 Assumptions for the Study

Chapter 3. Executive Summary

Chapter 4. Introduction

4.1 Definition of Market Segments

4.1.1 By Technology

4.1.1.1 Light

4.1.1.2 Vibration

4.1.1.3 Thermal

4.1.1.4 Electromagnetic/ Radio Frequency (RF)

4.1.2 By Component

4.1.2.1 By Transducer

4.1.2.1.1 Electro-dynamic

4.1.2.1.2 Photovoltaic

4.1.2.1.3 Thermoelectric

4.1.2.1.4 Piezoelectric

4.1.2.2 PMIC

4.1.2.3 Storage systems

4.1.3 By Application

4.1.3.1 Building and home automation

4.1.3.2 Consumer Electronics

4.1.3.3 Industrial

4.1.3.4 Transportation

4.1.3.5 Security

4.2 Block Diagram of Energy Harvesting System

4.3 Market Dynamics

4.3.1 Trends

4.3.1.1 Increasing focus on hybrid projects

4.3.1.2 Fundraising in public markets

4.3.1.3 Consolidating Market

4.3.1.4 Increasing spending of developing economies on energy harvesting

4.3.2 Drivers

4.3.2.1 Growing measures to reduce carbon footprints

4.3.2.2 Lower dependence on fossil fuels

4.3.2.3 Rising adoption of IoT and big data

4.3.2.4 Growing demand for power-efficient systems

4.3.2.5 Impact analysis of drivers on market forecast

4.3.3 Restraints

4.3.3.1 Lack of consumer awareness

4.3.3.2 Lack of standardization

4.3.3.3 Impact analysis of restraints on market forecast

4.3.4 Opportunities

4.3.4.1 Advancements in nanotechnology

4.3.4.2 Emergence of motion energy harvesters to supplement battery power in wearables

4.3.4.3 Increasing usage of various vibration sources for piezoelectric energy harvesting

Chapter 5. Global Market Size and Forecast

5.1 By Technology

5.2 By Component

5.2.1 Transducer Market, by Type

5.3 By Application

5.4 By Region

Chapter 6. Europe Market Size and Forecast

6.1 By Technology

6.2 By Component

6.2.1 Transducer Market, by Type

6.3 By Application

6.4 By Country

Chapter 7. North America Market Size and Forecast

7.1 By Technology

7.2 By Component

7.2.1 Transducer Market, by Type

7.3 By Application

7.4 By Country

Chapter 8. APAC Market Size and Forecast

8.1 By Technology

8.2 By Component

8.2.1 Transducer Market, by Type

8.3 By Application

8.4 By Country

Chapter 9. RoW Market Size and Forecast

9.1 By Technology

9.2 By Component

9.2.1 Transducer Market, by Type

9.3 By Application

9.4 By Country

Chapter 10. Competitive Landscape

10.1 Competitive Analysis of Key Players

10.2 Recent Activities of Major Players

10.3 Global Strategic Developments of Key Players

10.3.1 Mergers and Acquisitions

10.3.2 Product Launches

10.3.3 Other Developments

Chapter 11. Company Profiles

11.1 Arveni

11.1.1 Business Overview

11.1.2 Product and Service Offerings

11.1.3 Strategic Growth Plans

11.2 Convergence Wireless

11.2.1 Business Overview

11.2.2 Product and Service Offerings

11.3 Cymbet Corporation

11.3.1 Business Overview

11.3.2 Product and Service Offerings

11.4 Powercast Corporation

11.4.1 Business Overview

11.4.2 Product and Service Offerings

11.5 Texas Instruments Incorporated

11.5.1 Business Overview

11.5.2 Product and Service Offerings

11.5.3 Key Financial Summary

11.5.4 Strategic Growth Plans

11.6 Fujitsu Limited

11.6.1 Business Overview

11.6.2 Product and Service Offerings

11.6.3 Key Financial Summary

11.6.4 Strategic Growth Plans

11.7 ABB Ltd.

11.7.1 Business Overview

11.7.2 Product and Service Offerings

11.7.3 Key Financial Summary

11.7.4 Strategic Growth Plans

11.8 Honeywell International Inc.

11.8.1 Business Overview

11.8.2 Product and Service Offerings

11.8.3 Key Financial Summary

11.8.4 Strategic Growth Plans

11.9 STMicroelectronics N.V.

11.9.1 Business Overview

11.9.2 Product and Service Offerings

11.9.3 Key Financial Summary

11.9.4 Strategic Growth Plans

11.10 EnOcean GmbH

11.10.1 Business Overview

11.10.2 Product and Service Offerings

11.11 Voltree Power Inc.

11.12 Bionic Power Inc.

11.13 Energy Partners

11.14 Yantra Harvest Energy Private Limited

Chapter 12. Appendix

12.1 Abbreviations

12.2 Sources and References

LIST OF TABLES

TABLE 1 ANALYSIS PERIOD OF THE STUDY

TABLE 2 DRIVERS FOR THE MARKET: IMPACT ANALYSIS

TABLE 3 RESTRAINTS FOR THE MARKET: IMPACT ANALYSIS

TABLE 4 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2017)

TABLE 5 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2018 – 2023)

TABLE 6 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2017)

TABLE 7 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2018 – 2023)

TABLE 8 GLOBAL ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2017)

TABLE 9 GLOBAL ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2018 – 2023)

TABLE 10 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2017)

TABLE 11 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2018 – 2023)

TABLE 12 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY REGION, $M (2013 – 2017)

TABLE 13 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY REGION, $M (2018 – 2023)

TABLE 14 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2017)

TABLE 15 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2018 – 2023)

TABLE 16 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2017)

TABLE 17 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2018 – 2023)

TABLE 18 EUROPE ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2017)

TABLE 19 EUROPE ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2018 – 2023)

TABLE 20 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2017)

TABLE 21 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2018 – 2023)

TABLE 22 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2017)

TABLE 23 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2018 – 2023)

TABLE 24 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2017)

TABLE 25 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2018 – 2023)

TABLE 26 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2017)

TABLE 27 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2018 – 2023)

TABLE 28 NORTH AMERICA ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2017)

TABLE 29 NORTH AMERICA ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2018 – 2023)

TABLE 30 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2017)

TABLE 31 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2018 – 2023)

TABLE 32 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2017)

TABLE 33 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2018 – 2023)

TABLE 34 APAC ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2017)

TABLE 35 APAC ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2018 – 2023)

TABLE 36 APAC ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2017)

TABLE 37 APAC ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2018 – 2023)

TABLE 38 APAC ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2017)

TABLE 39 APAC ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2018 – 2023)

TABLE 40 APAC ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2017)

TABLE 41 APAC ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2018 – 2023)

TABLE 42 APAC ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2017)

TABLE 43 APAC ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2018 – 2023)

TABLE 44 ROW ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2017)

TABLE 45 ROW ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2018 – 2023)

TABLE 46 ROW ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2017)

TABLE 47 ROW ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2018 – 2023)

TABLE 48 ROW ENERGY HARVESTING TRANSDUCER SYSTEM MARKET, BY TYPE, $M (2013 – 2017)

TABLE 49 ROW ENERGY HARVESTING TRANSDUCER SYSTEM MARKET, BY TYPE, $M (2018 – 2023)

TABLE 50 ROW ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2017)

TABLE 51 ROW ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2018 – 2023)

TABLE 52 ROW ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2017)

TABLE 53 ROW ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2018 – 2023)

TABLE 54 COMPETITIVE ANALYSIS OF KEY PLAYERS

TABLE 55 ARVENI – AT A GLANCE

TABLE 56 CONVERGENCE WIRELESS – AT A GLANCE

TABLE 57 CYMBET CORPORATION – AT A GLANCE

TABLE 58 POWERCAST CORPORATION – AT A GLANCE

TABLE 59 TEXAS INSTRUMENTS INCORPORATED – AT A GLANCE

TABLE 60 TEXAS INSTRUMENTS INCORPORATED KEY FINANCIAL SUMMARY

TABLE 61 FUJITSU LIMITED – AT A GLANCE

TABLE 62 FUJITSU LIMITED – KEY FINANCIAL SUMMARY

TABLE 63 ABB LTD – AT A GLANCE

TABLE 64 ABB LIMITED – KEY FINANCIAL SUMMARY

TABLE 65 HONEYWELL INTERNATIONAL INC. – AT A GLANCE

TABLE 66 HONEYWELL INTERNATIONAL INC. – KEY FINANCIAL SUMMARY

TABLE 67 STMICROELECTRONICS N.V.– AT A GLANCE

TABLE 68 STMICROELECTRONICS N.V. – KEY FINANCIAL SUMMARY

TABLE 69 ENOCEAN GMBH – AT A GLANCE

TABLE 70 VOLTREE POWER INC. – AT A GLANCE

TABLE 71 BIONIC POWER INC. – AT A GLANCE

TABLE 72 ENERGY PARTNERS – AT A GLANCE

TABLE 73 YANTRA HARVEST ENERGY PRIVATE LIMITED – AT A GLANCE

LIST OF FIGURES

FIG 1 RESEARCH SCOPE

FIG 2 RESEARCH METHODOLOGY

FIG 3 REGIONAL SPLIT OF PRIMARY AND SECONDARY RESEARCH

FIG 4 BREAKDOWN OF PRIMARY RESEARCH BY REGION

FIG 5 BREAKDOWN OF PRIMARY RESEARCH BY INDUSTRY PARTICIPANT

FIG 6 BREAKDOWN OF PRIMARY RESEARCH BY COMPANY TYPE

FIG 7 DATA TRIANGULATION APPROACH

FIG 8 GLOBAL ENERGY HARVESTING SYSTEM MARKET SUMMARY

FIG 9 ENERGY HARVESTING SYSTEM BLOCK DIAGRAM

FIG 10 PUBLIC MARKET INVESTMENT IN RENEWABLE ENERGY BUSINESS

FIG 11 GROWING DEMAND FOR POWER-EFFICIENT SYSTEMS

FIG 12 PORTER’S FIVE FORCES ANALYSIS

FIG 13 BARGAINING POWER OF BUYERS

FIG 14 BARGAINING POWER OF SUPPLIERS

FIG 15 THREAT OF NEW ENTRANTS

FIG 16 INTENSITY OF RIVALRY

FIG 17 THREAT OF SUBSTITUTES

FIG 18 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2023)

FIG 19 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2023)

FIG 20 GLOBAL ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2023)

FIG 21 GLOBAL ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2023)

FIG 22 WORLDWIDE MAJOR MARKETS FOR ENERGY HARVESTING SYSTEMS

FIG 23 EUROPE ENERGY HARVESTING SYSTEM MARKET SNAPSHOT

FIG 24 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2023)

FIG 25 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2023)

FIG 26 EUROPE ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2023)

FIG 27 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2023)

FIG 28 EUROPE ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2023)

FIG 29 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET SNAPSHOT

FIG 30 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2023)

FIG 31 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2023)

FIG 32 NORTH AMERICA ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2023)

FIG 33 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2023)

FIG 34 NORTH AMERICA ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2023)

FIG 35 APAC ENERGY HARVESTING SYSTEM MARKET SNAPSHOT

FIG 36 APAC ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2023)

FIG 37 APAC ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2023)

FIG 38 APAC ENERGY HARVESTING TRANSDUCER MARKET, BY TYPE, $M (2013 – 2023)

FIG 39 APAC ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2023)

FIG 40 APAC ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2023)

FIG 41 ROW ENERGY HARVESTING SYSTEM MARKET SNAPSHOT

FIG 42 ROW ENERGY HARVESTING SYSTEM MARKET, BY TECHNOLOGY, $M (2013 – 2023)

FIG 43 ROW ENERGY HARVESTING SYSTEM MARKET, BY COMPONENT, $M (2013 – 2023)

FIG 44 ROW ENERGY HARVESTING TRANSDUCER SYSTEM MARKET, BY TYPE, $M (2013 – 2023)

FIG 45 ROW ENERGY HARVESTING SYSTEM MARKET, BY APPLICATION, $M (2013 – 2023)

FIG 46 ROW ENERGY HARVESTING SYSTEM MARKET, BY COUNTRY, $M (2013 – 2023)

FIG 47 RECENT ACTIVITIES OF MAJOR PLAYERS

FIG 48 TEXAS INSTRUMENTS INCORPORATED–REVENUE SPLIT BY SEGMENT AND GEOGRAPHY (2017)

FIG 49 FUJITSU LIMITED– REVENUE SPLIT BY SEGMENT AND BY GEOGRAPHY (2017)

FIG 50 ABB LTD. REVENUE-SPLIT BY OPERATING SEGMENTS AND GEOGRAPHY (2017)

FIG 51 HONEYWELL INTERNATIONAL INC. – REVENUE SPLIT BY OPERATING SEGMENT (2016)

FIG 52 STMICROELECTRONICS N.V. – REVENUE SPLIT BY SEGMENT AND GEOGRAPHY (2017)



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