Chapter 1. Research Scope
1.1. Research Objectives
1.2. Market Definition
1.3. Analysis Period
1.4. Market Size Breakdown by Segments
1.4.1. Market size breakdown, by vehicle type
1.4.2. Market size breakdown, by battery type
1.4.3. Market size breakdown, by service type
1.4.4. Market size breakdown, by region
1.4.5. Market size breakdown, by country
1.5. Market Data Reporting Unit
1.5.1. Value
1.6. Key Stakeholders
Chapter 2. Research Methodology
2.1. Secondary Research
2.1.1. Paid
2.1.2. Unpaid
2.1.3. P&S Intelligence database
2.2. Primary Research
2.3. Market Size Estimation
2.4. Data Triangulation
2.5. Currency Conversion Rates
2.6. Assumptions for the Study
2.7. Notes and Caveats
Chapter 3. Executive Summary
Chapter 4. Market Indicators
Chapter 5. Industry Outlook
5.1. Market Dynamics
5.1.1. Trends
5.1.2. Drivers
5.1.3. Restraints/challenges
5.1.4. Impact analysis of drivers/restraints
5.2. Impact of COVID-19
5.3. Porter’s Five Forces Analysis
5.3.1. Bargaining power of buyers
5.3.2. Bargaining power of suppliers
5.3.3. Threat of new entrants
5.3.4. Intensity of rivalry
5.3.5. Threat of substitutes
Chapter 6. Global Market
6.1. Overview
6.2. Market Revenue, by Vehicle Type (2017–2030)
6.3. Market Revenue, by Battery Type (2017–2030)
6.4. Market Revenue, by Service Type (2017–2030)
6.5. Market Revenue, by Region (2017–2030)
Chapter 7. North America Market
7.1. Overview
7.2. Market Revenue, by Vehicle Type (2017–2030)
7.3. Market Revenue, by Battery Type (2017–2030)
7.4. Market Revenue, by Service Type (2017–2030)
7.5. Market Revenue, by Country (2017–2030)
Chapter 8. Europe Market
8.1. Overview
8.2. Market Revenue, by Vehicle Type (2017–2030)
8.3. Market Revenue, by Battery Type (2017–2030)
8.4. Market Revenue, by Service Type (2017–2030)
8.5. Market Revenue, by Country (2017–2030)
Chapter 9. APAC Market
9.1. Overview
9.2. Market Revenue, by Vehicle Type (2017–2030)
9.3. Market Revenue, by Battery Type (2017–2030)
9.4. Market Revenue, by Service Type (2017–2030)
9.5. Market Revenue, by Country (2017–2030)
Chapter 10. LATAM Market
10.1. Overview
10.2. Market Revenue, by Vehicle Type (2017–2030)
10.3. Market Revenue, by Battery Type (2017–2030)
10.4. Market Revenue, by Service Type (2017–2030)
10.5. Market Revenue, by Country (2017–2030)
Chapter 11. MEA Market
11.1. Overview
11.2. Market Revenue, by Vehicle Type (2017–2030)
11.3. Market Revenue, by Battery Type (2017–2030)
11.4. Market Revenue, by Service Type (2017–2030)
11.5. Market Revenue, by Country (2017–2030)
Chapter 12. U.S. Market
12.1. Overview
12.2. Market Revenue, by Vehicle Type (2017–2030)
12.3. Market Revenue, by Battery Type (2017–2030)
12.4. Market Revenue, by Service Type (2017–2030)
Chapter 13. Canada Market
13.1. Overview
13.2. Market Revenue, by Vehicle Type (2017–2030)
13.3. Market Revenue, by Battery Type (2017–2030)
13.4. Market Revenue, by Service Type (2017–2030)
Chapter 14. Germany Market
14.1. Overview
14.2. Market Revenue, by Vehicle Type (2017–2030)
14.3. Market Revenue, by Battery Type (2017–2030)
14.4. Market Revenue, by Service Type (2017–2030)
Chapter 15. France Market
15.1. Overview
15.2. Market Revenue, by Vehicle Type (2017–2030)
15.3. Market Revenue, by Battery Type (2017–2030)
15.4. Market Revenue, by Service Type (2017–2030)
Chapter 16. U.K. Market
16.1. Overview
16.2. Market Revenue, by Vehicle Type (2017–2030)
16.3. Market Revenue, by Battery Type (2017–2030)
16.4. Market Revenue, by Service Type (2017–2030)
Chapter 17. Italy Market
17.1. Overview
17.2. Market Revenue, by Vehicle Type (2017–2030)
17.3. Market Revenue, by Battery Type (2017–2030)
17.4. Market Revenue, by Service Type (2017–2030)
Chapter 18. Spain Market
18.1. Overview
18.2. Market Revenue, by Vehicle Type (2017–2030)
18.3. Market Revenue, by Battery Type (2017–2030)
18.4. Market Revenue, by Service Type (2017–2030)
Chapter 19. Japan Market
19.1. Overview
19.2. Market Revenue, by Vehicle Type (2017–2030)
19.3. Market Revenue, by Battery Type (2017–2030)
19.4. Market Revenue, by Service Type (2017–2030)
Chapter 20. China Market
20.1. Overview
20.2. Market Revenue, by Vehicle Type (2017–2030)
20.3. Market Revenue, by Battery Type (2017–2030)
20.4. Market Revenue, by Service Type (2017–2030)
Chapter 21. India Market
21.1. Overview
21.2. Market Revenue, by Vehicle Type (2017–2030)
21.3. Market Revenue, by Battery Type (2017–2030)
21.4. Market Revenue, by Service Type (2017–2030)
Chapter 22. Australia Market
22.1. Overview
22.2. Market Revenue, by Vehicle Type (2017–2030)
22.3. Market Revenue, by Battery Type (2017–2030)
22.4. Market Revenue, by Service Type (2017–2030)
Chapter 23. South Korea Market
23.1. Overview
23.2. Market Revenue, by Vehicle Type (2017–2030)
23.3. Market Revenue, by Battery Type (2017–2030)
23.4. Market Revenue, by Service Type (2017–2030)
Chapter 24. Brazil Market
24.1. Overview
24.2. Market Revenue, by Vehicle Type (2017–2030)
24.3. Market Revenue, by Battery Type (2017–2030)
24.4. Market Revenue, by Service Type (2017–2030)
Chapter 25. Mexico Market
25.1. Overview
25.2. Market Revenue, by Vehicle Type (2017–2030)
25.3. Market Revenue, by Battery Type (2017–2030)
25.4. Market Revenue, by Service Type (2017–2030)
Chapter 26. Saudi Arabia Market
26.1. Overview
26.2. Market Revenue, by Vehicle Type (2017–2030)
26.3. Market Revenue, by Battery Type (2017–2030)
26.4. Market Revenue, by Service Type (2017–2030)
Chapter 27. South Africa Market
27.1. Overview
27.2. Market Revenue, by Vehicle Type (2017–2030)
27.3. Market Revenue, by Battery Type (2017–2030)
27.4. Market Revenue, by Service Type (2017–2030)
Chapter 28. U.A.E. Market
28.1. Overview
28.2. Market Revenue, by Vehicle Type (2017–2030)
28.3. Market Revenue, by Battery Type (2017–2030)
28.4. Market Revenue, by Service Type (2017–2030)
Chapter 29. Competitive Landscape
29.1. List of Market Players and their Offerings
29.2. Competitive Benchmarking of Key Players
29.3. Product Benchmarking of Key Players
29.4. Recent Strategic Developments
Chapter 30. Company Profiles
30.1. Nio Inc.
30.1.1. Business overview
30.1.2. Product and service offerings
30.1.3. Key financial summary
30.2. Gogoro Inc.
30.2.1. Business overview
30.2.2. Product and service offerings
30.2.3. Key financial summary
30.3. Tesla Inc.
30.3.1. Business overview
30.3.2. Product and service offerings
30.3.3. Key financial summary
30.4. SUN Mobility Private Limited
30.4.1. Business overview
30.4.2. Product and service offerings
30.5. BYD Co. Ltd
30.5.1. Business overview
30.5.2. Product and service offerings
30.5.3. Key financial summary
30.6. Panasonic Holdings Corporation
30.6.1. Business overview
30.6.2. Product and service offerings
30.6.3. Key financial summary
30.7. Kwang Yang Motor Co. Ltd.
30.7.1. Business overview
30.7.2. Product and service offerings
30.8. Lithion Power Private Limited
30.8.1. Business overview
30.8.2. Product and service offerings
30.9. OYIKA Pte Ltd.
30.9.1. Business overview
30.9.2. Product and service offerings
30.10. Esmito Solutions Pvt Ltd.
30.10.1. Business overview
30.10.2. Product and service offerings
30.11. Aulton New Energy Automotive Technology Co. Ltd.
30.11.1. Business overview
30.11.2. Product and service offerings
30.12. IMMOTOR
30.12.1. Business overview
30.12.2. Product and service offerings
30.13. Ample
30.13.1. Business overview
30.13.2. Product and service offerings
30.14. BattSwap Inc.
30.14.1. Business overview
30.14.2. Product and service offerings
30.15. Swobbee GmbH
30.15.1. Business overview
30.15.2. Product and service offerings
Chapter 31. Appendix
31.1. Abbreviations
31.2. Sources and References
31.3. Related Reports
| ※参考情報 二輪車および三輪車用のEVバッテリースワップは、電動二輪車や三輪車のバッテリーを迅速に交換するシステムとして注目されています。このシステムは、充電時間の短縮や利便性の向上を目的に設計されており、特に都市部での移動手段として電動二輪車や三輪車が普及している中で、その重要性が高まっています。 EVバッテリースワップの具体的な定義は、電動車両のバッテリーを、充電が完了したバッテリーと迅速に交換できる仕組みを指します。この方法により、ユーザーは充電を待つことなく、比較的短時間で自車両を再稼働させることができます。一般的に、バッテリースワップステーションと呼ばれる専用の施設が用意されており、そこでバッテリーの交換が行われます。 二輪車用のEVバッテリースワップには、主に二つの種類があります。第一の種類は、標準化された取り外し可能なバッテリーを使用する方式です。このタイプのバッテリーは、各車両に共通する規格に基づいて設計されており、異なるメーカーの二輪車でも同じバッテリーを使用できるため、交換が容易です。第二の種類は、メーカー独自のバッテリーを用いる方式で、特定のブランドやモデル専用のバッテリーがスワップステーションに設置されている場合です。この場合、ユーザーは自己の車両と合致したバッテリーを選択する必要があります。 三輪車についても、二輪車と同様のスワップシステムが導入されています。特に業務用の三輪車、配達用の電動三輪車などにおいて、バッテリースワップの利便性が非常に重視されています。短時間でバッテリー交換が行えるため、配達の効率を大幅に改善し、ビジネスの円滑化に寄与します。 EVバッテリースワップの用途は多岐にわたります。都市の交通におけるエコロジーの推進や、交通量の多いエリアでの渋滞緩和、さらには時間の有効活用など、さまざまな利点を享受できます。このシステムは、特に配達業務やフリート業務において効果を発揮します。 関連技術については、バッテリースワップステーションの自動化や効率的なバッテリー管理技術が挙げられます。例えば、自動化されたスワップシステムでは、ユーザーが車両を駐車するだけで自動的にバッテリーが交換される仕組みが導入されています。この際、IoT技術を活用してバッテリーの状態をリアルタイムで監視し、最適なバッテリーを選ぶことが可能です。 また、バッテリーのライフサイクル管理技術も重要です。バッテリーは充放電回数が増えると劣化しますので、各バッテリーの使用状況や性能を把握し、適切なタイミングでメンテナンスや交換を行うことが求められます。これにより、バッテリーの寿命を延ばし、コストの削減にも寄与します。 最後に、バッテリースワップシステムは、電動車両の普及促進においても重要な役割を果たすと考えられています。利便性が高まることで、利用者の抵抗感が軽減され、電動車両の導入が進むでしょう。公共交通機関や配達サービス、さらには観光業など様々な業種において、環境負荷を軽減しつつ高効率な移動手段を提供できる可能性が広がります。 このように、二輪車および三輪車用のEVバッテリースワップは、環境に優しい移動手段としての価値やビジネスチャンスを提供しており、今後の発展が期待される分野です。 |

