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 parking site
1.4.2. Market size breakdown, by component
1.4.3. Market size breakdown, by end user
1.4.4. Market size breakdown, by region
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 Parking Site (2017–2030)
6.3. Market Revenue, by Component (2017–2030)
6.4. Market Revenue, by End User (2017–2030)
6.5. Market Revenue, by Region (2017–2030)
Chapter 7. North America Market
7.1. Overview
7.2. Market Revenue, by Parking Site (2017–2030)
7.3. Market Revenue, by Component (2017–2030)
7.4. Market Revenue, by End User (2017–2030)
7.5. Market Revenue, by Country (2017–2030)
Chapter 8. Europe Market
8.1. Overview
8.2. Market Revenue, by Parking Site (2017–2030)
8.3. Market Revenue, by Component (2017–2030)
8.4. Market Revenue, by End User (2017–2030)
8.5. Market Revenue, by Country (2017–2030)
Chapter 9. APAC Market
9.1. Overview
9.2. Market Revenue, by Parking Site (2017–2030)
9.3. Market Revenue, by Component (2017–2030)
9.4. Market Revenue, by End User (2017–2030)
9.5. Market Revenue, by Country (2017–2030)
Chapter 10. LATAM Market
10.1. Overview
10.2. Market Revenue, by Parking Site (2017–2030)
10.3. Market Revenue, by Component (2017–2030)
10.4. Market Revenue, by End User (2017–2030)
10.5. Market Revenue, by Country (2017–2030)
Chapter 11. MEA Market
11.1. Overview
11.2. Market Revenue, by Parking Site (2017–2030)
11.3. Market Revenue, by Component (2017–2030)
11.4. Market Revenue, by End User (2017–2030)
11.5. Market Revenue, by Country (2017–2030)
Chapter 12. U.S. Market
12.1. Overview
12.2. Market Revenue, by Parking Site (2017–2030)
12.3. Market Revenue, by Component (2017–2030)
12.4. Market Revenue, by End User (2017–2030)
Chapter 13. Canada Market
13.1. Overview
13.2. Market Revenue, by Parking Site (2017–2030)
13.3. Market Revenue, by Component (2017–2030)
13.4. Market Revenue, by End User (2017–2030)
Chapter 14. Germany Market
14.1. Overview
14.2. Market Revenue, by Parking Site (2017–2030)
14.3. Market Revenue, by Component (2017–2030)
14.4. Market Revenue, by End User (2017–2030)
Chapter 15. France Market
15.1. Overview
15.2. Market Revenue, by Parking Site (2017–2030)
15.3. Market Revenue, by Component (2017–2030)
15.4. Market Revenue, by End User (2017–2030)
Chapter 16. U.K. Market
16.1. Overview
16.2. Market Revenue, by Parking Site (2017–2030)
16.3. Market Revenue, by Component (2017–2030)
16.4. Market Revenue, by End User (2017–2030)
Chapter 17. Italy Market
17.1. Overview
17.2. Market Revenue, by Parking Site (2017–2030)
17.3. Market Revenue, by Component (2017–2030)
17.4. Market Revenue, by End User (2017–2030)
Chapter 18. Spain Market
18.1. Overview
18.2. Market Revenue, by Parking Site (2017–2030)
18.3. Market Revenue, by Component (2017–2030)
18.4. Market Revenue, by End User (2017–2030)
Chapter 19. Japan Market
19.1. Overview
19.2. Market Revenue, by Parking Site (2017–2030)
19.3. Market Revenue, by Component (2017–2030)
19.4. Market Revenue, by End User (2017–2030)
Chapter 20. China Market
20.1. Overview
20.2. Market Revenue, by Parking Site (2017–2030)
20.3. Market Revenue, by Component (2017–2030)
20.4. Market Revenue, by End User (2017–2030)
Chapter 21. India Market
21.1. Overview
21.2. Market Revenue, by Parking Site (2017–2030)
21.3. Market Revenue, by Component (2017–2030)
21.4. Market Revenue, by End User (2017–2030)
Chapter 22. Australia Market
22.1. Overview
22.2. Market Revenue, by Parking Site (2017–2030)
22.3. Market Revenue, by Component (2017–2030)
22.4. Market Revenue, by End User (2017–2030)
Chapter 23. South Korea Market
23.1. Overview
23.2. Market Revenue, by Parking Site (2017–2030)
23.3. Market Revenue, by Component (2017–2030)
23.4. Market Revenue, by End User (2017–2030)
Chapter 24. Brazil Market
24.1. Overview
24.2. Market Revenue, by Parking Site (2017–2030)
24.3. Market Revenue, by Component (2017–2030)
24.4. Market Revenue, by End User (2017–2030)
Chapter 25. Mexico Market
25.1. Overview
25.2. Market Revenue, by Parking Site (2017–2030)
25.3. Market Revenue, by Component (2017–2030)
25.4. Market Revenue, by End User (2017–2030)
Chapter 26. Saudi Arabia Market
26.1. Overview
26.2. Market Revenue, by Parking Site (2017–2030)
26.3. Market Revenue, by Component (2017–2030)
26.4. Market Revenue, by End User (2017–2030)
Chapter 27. South Africa Market
27.1. Overview
27.2. Market Revenue, by Parking Site (2017–2030)
27.3. Market Revenue, by Component (2017–2030)
27.4. Market Revenue, by End User (2017–2030)
Chapter 28. U.A.E. Market
28.1. Overview
28.2. Market Revenue, by Parking Site (2017–2030)
28.3. Market Revenue, by Component (2017–2030)
28.4. Market Revenue, by End User (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. Amano Corporation
30.1.1. Business overview
30.1.2. Product and service offerings
30.1.3. Key financial summary
30.2. Robert Bosch GmbH
30.2.1. Business overview
30.2.2. Product and service offerings
30.2.3. Key financial summary
30.3. Barcelona Smart Technologies, S.L. (URBIOTICA)
30.3.1. Business overview
30.3.2. Product and service offerings
30.3.3. Key financial summary
30.4. Smart Parking Limited
30.4.1. Business overview
30.4.2. Product and service offerings
30.4.3. Key financial summary
30.5. Kapsch TrafficCom AG
30.5.1. Business overview
30.5.2. Product and service offerings
30.5.3. Key financial summary
30.6. IPS Group, Inc.
30.6.1. Business overview
30.6.2. Product and service offerings
30.7. ParkMobile LLC
30.7.1. Business overview
30.7.2. Product and service offerings
30.8. Worldsensing S.L.
30.8.1. Business overview
30.8.2. Product and service offerings
30.9. Siemens AG
30.9.1. Business overview
30.9.2. Product and service offerings
30.9.3. Key financial summary
30.10. Valeo SE
30.10.1. Business overview
30.10.2. Product and service offerings
30.10.3. Key financial summary
30.11. Continental AG
30.11.1. Business overview
30.11.2. Product and service offerings
30.11.3. Key financial summary
30.12. Xerox Holdings Corporation
30.12.1. Business overview
30.12.2. Product and service offerings
30.12.3. Key financial summary
30.13. Cisco Systems Inc.
30.13.1. Business overview
30.13.2. Product and service offerings
30.13.3. Key financial summary
30.14. Nedap N.V.
30.14.1. Business overview
30.14.2. Product and service offerings
30.14.3. Key financial summary
30.15. Tata Elxsi Limited
30.15.1. Business overview
30.15.2. Product and service offerings
30.15.3. Key financial summary
Chapter 31. Appendix
31.1. Abbreviations
31.2. Sources and References
31.3. Related Reports
| ※参考情報 スマートパーキングシステムは、駐車の効率を向上させ、運転者にとっての利便性を高めるために設計された技術です。このシステムは、リアルタイムで駐車場の空き状況を把握し、ドライバーに適切な駐車場を案内します。スマートパーキングは、都市部における交通渋滞の緩和や、環境負荷の軽減にも寄与します。 スマートパーキングの種類には、大きく分けてセンサー型、カメラ型、モバイルアプリ型などがあります。センサー型は、駐車スペースに設置されたセンサーによって、空き状況をリアルタイムで監視します。これにより、駐車スペースの埋状況を正確に把握し、ドライバーに提供できます。カメラ型は、駐車場全体を監視するカメラを用いて、車両の入出庫状況や駐車スペースの空き状況を解析します。この方法は、特に広範囲な駐車場において効果的です。また、モバイルアプリ型は、スマートフォンを通じて駐車場の情報を提供します。ユーザーはアプリに接続することで、駐車スペースの予約や支払いを行うことができます。 用途としては、公共施設や商業施設、オフィスビルなど、駐車需要が高い場所に適用されます。例えば、ショッピングモールや駅近くの駐車場では、スマートパーキングシステムにより混雑を緩和し、顧客がストレスなく駐車できる環境を提供します。また、都市部における駐車の最適化は、交通の流れを改善し、移動時間の短縮につながります。 スマートパーキングシステムは、IoT(Internet of Things)技術やビッグデータ、クラウドコンピューティング、AI(人工知能)などの関連技術によって支えられています。IoT技術により、センサーやカメラから収集されたデータがリアルタイムでクラウドへ送信され、駐車場の状態が瞬時に把握できます。ビッグデータの解析によって、過去の駐車傾向を分析し、将来の駐車需要を予測することが可能です。 AI技術は、駐車場の最適な利用方法を提案する際に有用です。機械学習を用いて、運転者の行動パターンを学習し、個々のニーズに合った駐車提案ができるようになります。例えば、特定の時間帯に多くの車が駐車する傾向がある場合、その情報をもとに駐車場の利用を促進する施策を講じることが可能です。 さらに、スマートパーキングは、他の交通管理システムとも連携することができます。交通信号の制御や公共交通機関の運行情報と統合することで、よりスムーズな交通の流れを実現します。このような取り組みによって、都市全体の交通効率が向上し、持続可能な社会の実現に寄与します。 最近では、環境への配慮から、電気自動車(EV)の充電ステーションを備えたスマートパーキングシステムも増えてきています。これにより、EVユーザーが駐車しながら充電できる環境を提供し、再生可能エネルギーの利用を促進することが期待されます。 総じて、スマートパーキングシステムは、駐車効率の向上だけでなく、都市交通の最適化や環境への負荷軽減にも貢献する重要な技術です。今後、さらに進化することが期待され、都市生活をより快適にするためのキーとなるでしょう。 |
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