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市場調查報告書

機器人工學的全球市場:2016-2026年

Robotics 2016-2026

出版商 IDTechEx Ltd. 商品編碼 347349
出版日期 內容資訊 英文 120 Slides
商品交期: 最快1-2個工作天內
價格
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機器人工學的全球市場:2016-2026年 Robotics 2016-2026
出版日期: 2015年12月01日 內容資訊: 英文 120 Slides
簡介

機器人工學產業以來到革命的一步之前。在過去50年中,商業性上最成功的機器人,主要是汽車產業所使用的工業機械臂。可是在今後10年中,移動型的機器人將大幅度成長。機器人工學市場整體的規模預計從目前250億美元,2026年成長到1230億美元的規模。

本報告提供全球機器人工學市場調查、現有的各種技術及用途概要、市場整體及各用途/產品部門的市場規模的變化與預測、新的技術與用途趨勢、主要的開發時間軸,以及主要企業的簡介等彙整。

第1章 摘要整理

第2章 簡介

  • 準確度
  • 價格
  • 規模
  • 速度
  • 強度

第3章 現有技術

  • 工業機械臂:直角坐標
  • 工業機械臂:SCARA
  • 工業機械臂:delta
  • 工業機械臂:關節型
  • 工業機械臂:協調型
  • 手術支援
  • 農業服務
  • 個人:吸塵器
  • 能源儲存
  • 電動機
  • 驅動電子電路
  • 感測器
  • 微控制器

第4章 現有用途

  • 傳統工業機器人用途
  • 協調型機器人工學
  • 軍事用
  • 農業用機器人
  • 物流、倉庫
  • 醫療用
  • 個人機器人

第5章 主要企業

  • Yaskawa Motoman 機器人工學
  • Fanuc
  • ABB
  • KUKA
  • 川崎重工機器人商業中心
  • Mitsubishi 機器人工學
  • Festo
  • Universal Robots
  • Rethink 機器人工學
  • Intuitive Surgical
  • iRobot
  • Dyson
  • Maytronics
  • Lely
  • Husqvarna
  • John Deere
  • 3D 機器人工學
  • 小松製作所

第6章 趨勢

  • 協調型機器人工學
  • 農業服務機器人
  • 中國
  • 日本
  • 手術機器人
  • 生物模擬
  • 移動機器人:UGV
  • 移動機器人:UAV
  • 移動機器人:AUV
  • 產品化、模組化、共享

第7章 新興用途

  • 自主移動車
  • 自主移動車:優點
  • 自主移動車:經營者
  • 建設
  • 建設:經營者
  • 礦業
  • 軍事用途
  • 消費者取向UAV
  • 農業用途
  • 搬運
  • 通訊用UAV
  • 空中監查
  • 教育

第8章 新興技術

  • 協調型機器人工學
  • 扶手尖端安裝工具
  • 軟體機器人工學
  • 蛇扶手機器人

第9章 市場

  • 產業用機器人工學
  • 傳統工業機器人
  • 協調型機器人工學
  • 手術支援
  • 農業
  • 礦業
  • 物流、倉庫
  • 個人機器人
  • 技術成熟度曲線
  • 時間軸
  • 市場預測
  • 市場佔有率預測
  • 絕對成長
目錄

The robotics industry is on the brink of a revolution. For over 50 years the most commercially successful robots have been articulated robot arms used primarily in the automotive industry to manufacture cars. The biggest shift over the next ten years will be massive growth in mobile robots.

This new breed of robots will transport us, deliver our goods, spray and harvest our crops, monitor our streets, fight our enemies and mine minerals not only on the planet surface but from the bottom of the ocean and potentially even from asteroids in space. Smaller but still substantial developments will include the proliferation of traditional industrial robots into countries currently manufacturing using human labour and also the evolution of industrial robots from dangerous machines that must be fenced off for safety to collaborative robots able to sit alongside human workers and contribute safely thanks to developments in sensors, microcontrollers, machine vision and artificial intelligence.

These existing and emerging robotics market sectors amount to a $25bn market today and will grow to $123bn by 2026. This report details each major market sector with case studies, current market values and growth figures in order to build the most comprehensive overall market analysis of the entire robotics industry, both present and future.

The following forecasts are given:

  • Total market values forecast 2016-2026
  • Individual market forecasts 2016-2026 for traditional industrial robots, collaborative robots, surgical assistants, agricultural and personal robots (broken down into 3D printers, lawn mowers, pool cleaners and vacuum cleaners).
  • Market share by sector 2016-2026
  • Absolute growth (in $) for each market sector 2016-2026
  • Time line of major developments expected from 2016 to 2026
  • Hype curve indicating the state of evolution of each market sector/technology today

The following sectors are covered in detail:

  • Industrial robots (inside and outside China)
  • Surgical
  • Military
  • Logistics/warehousing
  • Personal
  • Agriculture
  • Mining
  • Collaborative
  • Autonomous transport

Companies across North America, Europe and Asia were studied in order to get a fully global picture. Specifically, companies from 18 different countries: Belgium, Canada, China, Denmark, France, Germany, Ireland, Israel, Italy, Japan, Korea, Netherlands, Sweden, Switzerland, Taiwan, UK, US and Vietnam.

Analyst access from IDTechEx

All report purchases include up to 30 minutes telephone time with an expert analyst who will help you link key findings in the report to the business issues you're addressing. This needs to be used within three months of purchasing the report.

Table of Contents

1. EXECUTIVE SUMMARY

  • 1.1. Current markets
  • 1.2. Current markets: industrial robots
  • 1.3. Current markets: professional service robots
  • 1.4. Current markets: personal robots
  • 1.5. Value chains: most common
  • 1.6. Value chains: compacted
  • 1.7. Value chains: commodity
  • 1.8. Trends
  • 1.9. Trends: mobile robots
  • 1.10. Trends
  • 1.11. Growth
  • 1.12. Market forecast

2. INTRODUCTION

  • 2.1. Precision
  • 2.2. Price
  • 2.3. Size
  • 2.4. Speed
  • 2.5. Strength

3. EXISTING TECHNOLOGIES

  • 3.1. Industrial robot arms: Cartesian
  • 3.2. Industrial robot arms: SCARA
  • 3.3. Industrial robot arms: delta
  • 3.4. Industrial robot arms: articulated
  • 3.5. Industrial robot arms: collaborative
  • 3.6. Surgical assistants
  • 3.7. Agricultural service
  • 3.8. Personal: vacuum cleaner
  • 3.9. Energy storage
  • 3.10. Electric motors
  • 3.11. Drive electronics
  • 3.12. Sensors
  • 3.13. Microcontrollers

4. EXISTING APPLICATIONS

  • 4.1. Traditional industrial robot applications
  • 4.2. Collaborative robotics
  • 4.3. Military
  • 4.4. Agricultural robots
  • 4.5. Logistics and warehousing
  • 4.6. Medical
  • 4.7. Personal robots

5. MAIN PLAYERS

  • 5.1. Yaskawa Motoman Robotics
  • 5.2. Fanuc
  • 5.3. ABB
  • 5.4. KUKA
  • 5.5. Kawasaki Robotics
  • 5.6. Mitsubishi Robotics
  • 5.7. Festo
  • 5.8. Universal Robots
  • 5.9. Rethink Robotics
  • 5.10. Intuitive Surgical
  • 5.11. iRobot
  • 5.12. Dyson
  • 5.13. Maytronics
  • 5.14. Lely
  • 5.15. Husqvarna
  • 5.16. John Deere
  • 5.17. 3D Robotics
  • 5.18. Komatsu

6. TRENDS

  • 6.1. Collaborative robotics
  • 6.2. Agricultural service robots
  • 6.3. China
  • 6.4. Japan
  • 6.5. Surgical robots
  • 6.6. Biomimicry
  • 6.7. Mobile robots: UGVs
  • 6.8. Mobile robots: UAVs
  • 6.9. Mobile robots: AUVs
  • 6.10. Commoditization, modularization and sharing

7. EMERGING APPLICATIONS

  • 7.1. Autonomous vehicles
  • 7.2. Autonomous vehicles: benefits
  • 7.3. Autonomous vehicles: players
  • 7.4. Construction
  • 7.5. Construction: players
  • 7.6. Construction: players
  • 7.7. Mining
  • 7.8. Military applications
  • 7.9. Consumer UAVs
  • 7.10. Agricultural applications
  • 7.11. Haulage
  • 7.12. UAVs for communications
  • 7.13. Aerial inspection
  • 7.14. Education

8. EMERGING TECHNOLOGIES

  • 8.1. Collaborative robotics
  • 8.2. End-of-arm tooling
  • 8.3. Soft robotics
  • 8.4. Snake arm robots

9. MARKETS

  • 9.1. Industrial robotics
  • 9.2. Traditional industrial robots
  • 9.3. Collaborative robotics
  • 9.4. Surgical assistants
  • 9.5. Agricultural
  • 9.6. Mining
  • 9.7. Logistics and warehousing
  • 9.8. Personal robots
  • 9.9. Hype curve
  • 9.10. Time line
  • 9.11. Market forecast
  • 9.12. Market share forecast
  • 9.13. Absolute growth
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