1 Scope of the Report
1.1 Market Introduction
1.2 Years Considered
1.3 Research Objectives
1.4 Market Research Methodology
1.5 Research Process and Data Source
1.6 Economic Indicators
1.7 Currency Considered
1.8 Market Estimation Caveats
2 Executive Summary
2.1 World Market Overview
2.1.1 Global Automotive Near Range Lidar Annual Sales 2018-2029
2.1.2 World Current & Future Analysis for Automotive Near Range Lidar by Geographic Region, 2018, 2022 & 2029
2.1.3 World Current & Future Analysis for Automotive Near Range Lidar by Country/Region, 2018, 2022 & 2029
2.2 Automotive Near Range Lidar Segment by Type
2.2.1 16 Lines
2.2.2 32 Lines
2.2.3 64 Lines
2.2.4 Others
2.3 Automotive Near Range Lidar Sales by Type
2.3.1 Global Automotive Near Range Lidar Sales Market Share by Type (2018-2023)
2.3.2 Global Automotive Near Range Lidar Revenue and Market Share by Type (2018-2023)
2.3.3 Global Automotive Near Range Lidar Sale Price by Type (2018-2023)
2.4 Automotive Near Range Lidar Segment by Application
2.4.1 Passenger Car
2.4.2 Commercial Vehicle
2.5 Automotive Near Range Lidar Sales by Application
2.5.1 Global Automotive Near Range Lidar Sale Market Share by Application (2018-2023)
2.5.2 Global Automotive Near Range Lidar Revenue and Market Share by Application (2018-2023)
2.5.3 Global Automotive Near Range Lidar Sale Price by Application (2018-2023)
3 Global Automotive Near Range Lidar by Company
3.1 Global Automotive Near Range Lidar Breakdown Data by Company
3.1.1 Global Automotive Near Range Lidar Annual Sales by Company (2018-2023)
3.1.2 Global Automotive Near Range Lidar Sales Market Share by Company (2018-2023)
3.2 Global Automotive Near Range Lidar Annual Revenue by Company (2018-2023)
3.2.1 Global Automotive Near Range Lidar Revenue by Company (2018-2023)
3.2.2 Global Automotive Near Range Lidar Revenue Market Share by Company (2018-2023)
3.3 Global Automotive Near Range Lidar Sale Price by Company
3.4 Key Manufacturers Automotive Near Range Lidar Producing Area Distribution, Sales Area, Product Type
3.4.1 Key Manufacturers Automotive Near Range Lidar Product Location Distribution
3.4.2 Players Automotive Near Range Lidar Products Offered
3.5 Market Concentration Rate Analysis
3.5.1 Competition Landscape Analysis
3.5.2 Concentration Ratio (CR3, CR5 and CR10) & (2018-2023)
3.6 New Products and Potential Entrants
3.7 Mergers & Acquisitions, Expansion
4 World Historic Review for Automotive Near Range Lidar by Geographic Region
4.1 World Historic Automotive Near Range Lidar Market Size by Geographic Region (2018-2023)
4.1.1 Global Automotive Near Range Lidar Annual Sales by Geographic Region (2018-2023)
4.1.2 Global Automotive Near Range Lidar Annual Revenue by Geographic Region (2018-2023)
4.2 World Historic Automotive Near Range Lidar Market Size by Country/Region (2018-2023)
4.2.1 Global Automotive Near Range Lidar Annual Sales by Country/Region (2018-2023)
4.2.2 Global Automotive Near Range Lidar Annual Revenue by Country/Region (2018-2023)
4.3 Americas Automotive Near Range Lidar Sales Growth
4.4 APAC Automotive Near Range Lidar Sales Growth
4.5 Europe Automotive Near Range Lidar Sales Growth
4.6 Middle East & Africa Automotive Near Range Lidar Sales Growth
5 Americas
5.1 Americas Automotive Near Range Lidar Sales by Country
5.1.1 Americas Automotive Near Range Lidar Sales by Country (2018-2023)
5.1.2 Americas Automotive Near Range Lidar Revenue by Country (2018-2023)
5.2 Americas Automotive Near Range Lidar Sales by Type
5.3 Americas Automotive Near Range Lidar Sales by Application
5.4 United States
5.5 Canada
5.6 Mexico
5.7 Brazil
6 APAC
6.1 APAC Automotive Near Range Lidar Sales by Region
6.1.1 APAC Automotive Near Range Lidar Sales by Region (2018-2023)
6.1.2 APAC Automotive Near Range Lidar Revenue by Region (2018-2023)
6.2 APAC Automotive Near Range Lidar Sales by Type
6.3 APAC Automotive Near Range Lidar Sales by Application
6.4 China
6.5 Japan
6.6 South Korea
6.7 Southeast Asia
6.8 India
6.9 Australia
6.10 China Taiwan
7 Europe
7.1 Europe Automotive Near Range Lidar by Country
7.1.1 Europe Automotive Near Range Lidar Sales by Country (2018-2023)
7.1.2 Europe Automotive Near Range Lidar Revenue by Country (2018-2023)
7.2 Europe Automotive Near Range Lidar Sales by Type
7.3 Europe Automotive Near Range Lidar Sales by Application
7.4 Germany
7.5 France
7.6 UK
7.7 Italy
7.8 Russia
8 Middle East & Africa
8.1 Middle East & Africa Automotive Near Range Lidar by Country
8.1.1 Middle East & Africa Automotive Near Range Lidar Sales by Country (2018-2023)
8.1.2 Middle East & Africa Automotive Near Range Lidar Revenue by Country (2018-2023)
8.2 Middle East & Africa Automotive Near Range Lidar Sales by Type
8.3 Middle East & Africa Automotive Near Range Lidar Sales by Application
8.4 Egypt
8.5 South Africa
8.6 Israel
8.7 Turkey
8.8 GCC Countries
9 Market Drivers, Challenges and Trends
9.1 Market Drivers & Growth Opportunities
9.2 Market Challenges & Risks
9.3 Industry Trends
10 Manufacturing Cost Structure Analysis
10.1 Raw Material and Suppliers
10.2 Manufacturing Cost Structure Analysis of Automotive Near Range Lidar
10.3 Manufacturing Process Analysis of Automotive Near Range Lidar
10.4 Industry Chain Structure of Automotive Near Range Lidar
11 Marketing, Distributors and Customer
11.1 Sales Channel
11.1.1 Direct Channels
11.1.2 Indirect Channels
11.2 Automotive Near Range Lidar Distributors
11.3 Automotive Near Range Lidar Customer
12 World Forecast Review for Automotive Near Range Lidar by Geographic Region
12.1 Global Automotive Near Range Lidar Market Size Forecast by Region
12.1.1 Global Automotive Near Range Lidar Forecast by Region (2024-2029)
12.1.2 Global Automotive Near Range Lidar Annual Revenue Forecast by Region (2024-2029)
12.2 Americas Forecast by Country
12.3 APAC Forecast by Region
12.4 Europe Forecast by Country
12.5 Middle East & Africa Forecast by Country
12.6 Global Automotive Near Range Lidar Forecast by Type
12.7 Global Automotive Near Range Lidar Forecast by Application
13 Key Players Analysis
13.1 Hesai Tech
13.1.1 Hesai Tech Company Information
13.1.2 Hesai Tech Automotive Near Range Lidar Product Portfolios and Specifications
13.1.3 Hesai Tech Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.1.4 Hesai Tech Main Business Overview
13.1.5 Hesai Tech Latest Developments
13.2 Robo Sense
13.2.1 Robo Sense Company Information
13.2.2 Robo Sense Automotive Near Range Lidar Product Portfolios and Specifications
13.2.3 Robo Sense Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.2.4 Robo Sense Main Business Overview
13.2.5 Robo Sense Latest Developments
13.3 Beijing LiangDao Automotive Technology
13.3.1 Beijing LiangDao Automotive Technology Company Information
13.3.2 Beijing LiangDao Automotive Technology Automotive Near Range Lidar Product Portfolios and Specifications
13.3.3 Beijing LiangDao Automotive Technology Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.3.4 Beijing LiangDao Automotive Technology Main Business Overview
13.3.5 Beijing LiangDao Automotive Technology Latest Developments
13.4 LeiShen Intelligence System
13.4.1 LeiShen Intelligence System Company Information
13.4.2 LeiShen Intelligence System Automotive Near Range Lidar Product Portfolios and Specifications
13.4.3 LeiShen Intelligence System Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.4.4 LeiShen Intelligence System Main Business Overview
13.4.5 LeiShen Intelligence System Latest Developments
13.5 Continental
13.5.1 Continental Company Information
13.5.2 Continental Automotive Near Range Lidar Product Portfolios and Specifications
13.5.3 Continental Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.5.4 Continental Main Business Overview
13.5.5 Continental Latest Developments
13.6 Velodyne
13.6.1 Velodyne Company Information
13.6.2 Velodyne Automotive Near Range Lidar Product Portfolios and Specifications
13.6.3 Velodyne Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.6.4 Velodyne Main Business Overview
13.6.5 Velodyne Latest Developments
13.7 Ouster
13.7.1 Ouster Company Information
13.7.2 Ouster Automotive Near Range Lidar Product Portfolios and Specifications
13.7.3 Ouster Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.7.4 Ouster Main Business Overview
13.7.5 Ouster Latest Developments
13.8 Cepton
13.8.1 Cepton Company Information
13.8.2 Cepton Automotive Near Range Lidar Product Portfolios and Specifications
13.8.3 Cepton Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.8.4 Cepton Main Business Overview
13.8.5 Cepton Latest Developments
13.9 WHST
13.9.1 WHST Company Information
13.9.2 WHST Automotive Near Range Lidar Product Portfolios and Specifications
13.9.3 WHST Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.9.4 WHST Main Business Overview
13.9.5 WHST Latest Developments
13.10 Beijing Yijing Technology
13.10.1 Beijing Yijing Technology Company Information
13.10.2 Beijing Yijing Technology Automotive Near Range Lidar Product Portfolios and Specifications
13.10.3 Beijing Yijing Technology Automotive Near Range Lidar Sales, Revenue, Price and Gross Margin (2018-2023)
13.10.4 Beijing Yijing Technology Main Business Overview
13.10.5 Beijing Yijing Technology Latest Developments
14 Research Findings and Conclusion
※参考情報 自動車用近距離ライダー(Automotive Near Range Lidar)は、近距離での環境認識や安全運転支援のために設計されたセンサー技術です。この技術は、特に自動運転車や高度な運転支援システム(ADAS)において重要な役割を果たしています。ライダー(Lidar)は「Light Detection and Ranging」の略称で、レーザー光を使用して周囲の物体との距離を測定し、その情報を基に高精度な三次元地図を生成することが可能です。近距離ライダーは、特に0.5メートルから20メートルの範囲に焦点を当てており、都市部での運転や駐車など、狭い空間での安全確保に適しています。 この技術の特長の一つは、高解像度のデータを素早く取得できる点です。近距離ライダーは、レーザー光を連続的に発射し、物体に反射した光を受信することで、その距離や形状、動体の速度を高精度に測定します。このデータは、リアルタイムで処理され、周囲の状況を瞬時に把握することができます。また、近距離ライダーは、悪天候や暗い環境においても効果的に機能するため、安全性が高まります。 種類としては、近距離ライダーは一般的に固体型と回転型の2種類に分類されます。固体型は、コンパクトで耐久性が高く、特に自動車のボディに組み込みやすいため、近距離での物体認識において有利です。一方、回転型は、広い範囲をカバーすることができ、多角的なデータ取得が可能ですが、構造上、複雑で故障のリスクもあります。最近の技術革新により、固体型ライダーの性能が向上しており、さらに多くの自動車に採用されると予想されます。 近距離ライダーの主な用途は、都市部での運転支援や自動駐車システムです。具体的には、歩行者や自転車の検知、障害物回避、車両の周囲における360度の監視などが挙げられます。これにより、安全運転が促進され、事故のリスクが大幅に低減します。また、障害物を的確に認識することで、駐車場での車両の自動駐車がスムーズに行えるようになります。 関連技術としては、カメラやレーダーセンサーなどがあります。これらの技術は、近距離ライダーと組み合わせることで補完的な役割を果たし、より高精度な環境認識が可能になります。例えば、カメラは色やテクスチャを検知する能力に優れており、ライダーが測定した距離データと組み合わせることで、より詳細な情報を提供します。これにより、運転支援システムは物体を特定しやすくなり、認識精度が向上します。 また、近距離ライダーは機械学習やAI(人工知能)と結びつけることで、その性能をさらに向上させることができます。AIを用いたデータ解析により、運転環境におけるパターン認識や予測が行われ、信号や標識の認識、歩行者の動きの予測などが可能となります。これにより、運転者や自動運転車にとって、より安全で快適な運転環境が提供されます。 現状では、近距離ライダーは自動運転技術の発展とともに進化し続けており、他のセンサー技術との統合や新たな用途の開発が急速に進行しています。自動運転の実用化に向けては、今後も技術の進歩が求められ、より高度な安全性や信頼性が追求されることでしょう。 全体として、自動車用近距離ライダーは、現代の自動車技術において重要な要素となっており、その応用可能性や技術革新は今後ますます注目されることでしょう。特に都市部での交通混雑や安全問題に対して、効果的な解決策を提供することが期待されており、より多くの道路利用者にとって安全で快適な環境を実現するための鍵となるでしょう。近距離ライダーの進化は、自動車産業の未来において不可欠な要素となり、さらなる技術開発や研究が求められています。 |