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ワイヤレス充電技術の進歩 - 消費者およ自動車部門への影響

Impact of Wireless Charging Technology Advances in Consumer and Automotive Sectors

発行 Technical Insights (Frost & Sullivan) 商品コード 348555
出版日 ページ情報 英文 70 Pages
納期: 即日から翌営業日
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ワイヤレス充電技術の進歩 - 消費者およ自動車部門への影響 Impact of Wireless Charging Technology Advances in Consumer and Automotive Sectors
出版日: 2015年12月30日 ページ情報: 英文 70 Pages
概要

急速な都市化の進行により、スマートフォンや様々なアプリの利用が増加しています。こういった増加により、ユーザーがより長い時間スマートデバイスを充電した状態にしておく充電技術のニーズが高まってきております。

当レポートでは、ワイヤレス充電技術について調査分析を行い、技術の動向、消費者部門と自動車部門への影響、市場促進因子と課題、市場の潜在性用途、機会評価とロードマッピングなどについて包括的に分析し、まとめています。

第1章 エグゼクティブサマリー

  • 調査の範囲
  • 調査方法
  • 調査方法:段階的アプローチ
  • 主な調査結果

第2章 ワイヤレス充電:技術動向評価

  • 技術の概要
  • 電波ワイヤレス充電
  • 電磁誘導ワイヤレス充電
  • 磁界共鳴ワイヤレス充電
  • 容量ワイヤレス充電
  • ワイヤレス充電技術の比較評価

第3章 用途

  • 用途と消費電力
  • 家電
  • 自動車
  • 今後5年間の電磁誘導充電のEVの種類、バッテリー容量、実現可能性

第4章 ワイヤレス充電標準規格が導入を促進

  • Qi標準規格:ワイヤレスパワーコンソーシアム(WPC)
  • AirFuel(PMA + Rezence標準規格):新たな標準規格

第5章 市場促進因子と課題

  • ワイヤレス充電の導入に影響を及ぼす因子:市場促進因子と課題
  • 市場促進因子

第6章 市場の潜在性

  • 世界市場の機会
  • 市場予測
  • 充電容量に基づく電磁誘導充電の市場導入:自動車産業

第7章 主な革新の評価

第8章 機会評価とロードマッピング

第9章 主な特許

第10章 主な連絡先

第11章 FROST & SULLIVANについて

目次
Product Code: D6CD-01-00-00-00

Paving the way for next-gen charging technologies

This research service assesses various wireless charging technologies that are available in the market. The available wireless technologies in the market are: inductive coupling wireless charging, resonance wireless charging, radio frequency energy harvesting, and capacitive coupling wireless charging. The technology capabilities, market share, applications in consumer electronics and electric vehicle charging are some of the aspects covered in this research study.

The rapid growth of urbanization has led to the increased use of smartphones and their applications for various purposes. This growth has propelled a need for charging technologies that will help the smart device users to keep their devices charged for continuous use. This is one of the largest drivers for market prominence of wireless charging. Inductive and resonance (resonant inductive coupling) charging technologies have already become popular wireless charging options for consumer electronics and electric vehicle charging. Radio charging and capacitive charging technologies are expected to make their market entry soon. Capacitive charging (capacitive coupling or electrostatic induction) in particular is expected to bring significant changes in the wireless power ecosystem.

This research service provides:

  • Trends, insights, and technologies of focus for stakeholders in this segment
  • An overview of technology trends impacting wireless charging.
  • A review of key technological/business challenges influencing the implementation of such technologies
  • Emerging market needs likely to shape R&D efforts in the near future to aid stakeholders to plan their R&D portfolios effectively
  • Strategic insights and technology assessment of wireless charging technologies based on analytical hierarchy process (AHP) Analysis.
  • Insights into the road ahead for adoption of emerging technologies in industrial automation.

Table of Contents

1. EXECUTIVE SUMMARY

  • 1. Research Scope
  • 2. Research Methodology
  • 3. Research Methodology Step by Step Approach
  • 4. Key Findings
  • 5. Key Findings (continued)

2. WIRELESS CHARGING- TECHNOLOGY LANDSCAPE ASSESSMENT

  • 1. Technology Snapshot
  • 2. Radio Wireless Charging
  • 3. Inductive Wireless Charging
  • 4. Resonance Wireless Charging
  • 5. Capacitive Wireless Charging
  • 6. Comparative Assessment of Wireless Charging Technologies

3. APPLICATION LANDSCAPE

  • 1. Applications and Wattage
  • 2. Wireless Charging for Consumer Electronics
  • 3. Wireless Charging for Automobiles
  • 4. EV types, Battery Capacities and Feasibility of Inductive Charging in Next 5 Years

4. WIRELESS CHARGING STANDARDS AIDING ADOPTION

  • 1. Qi Standard- Wireless Power Consortium (WPC)
  • 2. AirFuel (PMA + Rezence standard)- A New Standard

5. MARKET DRIVERS AND CHALLENGES

  • 1. Factors Influencing Adoption of Wireless Charging-Market Drivers and Challenges
  • 2. Market Drivers Explained
  • 3. H

6. MARKET POTENTIAL

  • 1. Global Market Opportunities
  • 2. Market Forecast- Inductive Charging Station Sales Forecast
  • 3. Market Adoption of Inductive Charging based on the Charging Capacity for Automotive Industry

7. KEY INNOVATIONS ASSESSMENT

  • 1. Bidirectional Inductive Charging Systems
  • 2. Inductive Charging Systems
  • 3. Dynamic Wireless Charging System and Test Track
  • 4. Wireless Power Transmission in 3D
  • 5. High Power Wireless Charging System for Buses
  • 6. Wireless Charging for Consumer Electronics and Electric Vehicles
  • 7. Magnetic Resonance Wireless Charging technology
  • 8. Plugless L2
  • 9. eCoupled
  • 10. Duracell Powermat

8. OPPORTUNITY EVALUATION AND ROADMAPPING

  • 1. Analytical Hierarchy Process (AHP)-Based Technology Roadmap
  • 2. Criteria Definitions-Level 0
  • 3. Sub-Criteria Definition-Level 1 and Alternatives
  • 4. Level 0 and Level 1 Criteria-Priority Values
  • 5. Comparison of Alternatives against Level 0 Criteria
  • 6. Alternatives Comparison against Level 1 Criteria- Technology Capabilities and Market Aspect
  • 7. Final Priority Values
  • 8. AHP-based Insights
  • 9. AHP-based Insights (continued)

9. KEY PATENTS

  • 1. Key Patents
  • 2. Key Patents (continued)
  • 3. Key Patents (continued)
  • 4. Key Patents (continued)

10. KEY CONTACTS

  • 1. Key Industry Contacts
  • 2. Legal Disclaimer

11. THE FROST & SULLIVAN STORY

  • 1. The Frost & Sullivan Story
  • 2. Value Proposition: Future of Your Company & Career
  • 3. Global Perspective
  • 4. Industry Convergence
  • 5. 360° Research Perspective
  • 6. Implementation Excellence
  • 7. Our Blue Ocean Strategy
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