全球汽車能量回收系統市場:按子系統,車輛類型,地區:產業分析、規模、份額、成長、趨勢、預測(2023-2030)
市場調查報告書
商品編碼
1408948

全球汽車能量回收系統市場:按子系統,車輛類型,地區:產業分析、規模、份額、成長、趨勢、預測(2023-2030)

Automotive Energy Recovery Systems Market by Product Type, End-Users, and Geography (North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa): Global Industry Analysis, Size, Share, Growth, Trends, and Forecast, 2023-2030

出版日期: | 出版商: Persistence Market Research | 英文 174 Pages | 商品交期: 2-5個工作天內

價格
簡介目錄

Persistence Market Research 發布了有關全球汽車能量回收系統市場的詳細研究報告,深入研究了關鍵的市場動態、趨勢、機會和挑戰。該報告致力於提供以數據和統計數據為支持的獨家信息,詳細洞察市場結構,並闡明 2023 年至 2030 年汽車能量回收系統市場的預計增長路徑。Masu。

全球汽車能量回收系統市場預計將以 7.1% 的複合年增長率成長,從 2023 年的 193 億美元成長到 2030 年底的 312 億美元。

重要見解

  • 汽車能量回收系統市場規模(2023年): 193億美元
  • 預測市場規模(2030年): 312億美元
  • 全球市場成長率(2023-2030年複合年增長率): 7.1%
  • 過去的市場成長率(2018-2022年複合年增長率): 5.7%

汽車能量回收系統市場 – 研究範圍

汽車能量回收系統 (ERS) 回收和再利用車輛行駛時浪費的能量,以提高能源效率、減少燃料消耗並降低排放。再生煞車等常見實施方式將煞車能量轉換為儲存的電能。ERS 與汽車行業出於對氣候變遷和促進清潔技術的政府法規的擔憂而對綠色汽車的關注不謀而合。由於對節能交通的需求不斷增加,2023 年至 2030 年 ERS 的前景樂觀。隨著汽車製造商優先發展電動和混合動力汽車,推動市場擴張和創新,ERS 技術的進步(包括能源儲存的改進)提供了成長機會。

汽車能量回收系統市場驅動因素:

由於儲能技術的進步,汽車能量回收系統(ERS)市場正在快速成長。大容量電池和超級電容器的改進增強了煞車和加速過程中的能量再生,從而增加了電動和混合動力汽車的續航裡程。這一進步正在推動 ERS 在整個汽車行業的廣泛採用,使系統更加強大且更具成本效益。

全球對永續發展和環境法規的關注將進一步推動市場成長。世界各國政府都在推動環保交通,而 ERS 在最大限度地減少能源浪費和提高燃油效率方面發揮關鍵作用。汽車製造商正在整合 ERS,以遵守法規、建立綠色形象並滿足消費者對環保汽車的需求。隨著永續發展成為該行業的關鍵差異化因素,ERS 整合順應了趨勢,並透過監管合規性和消費者偏好推動市場成長。

市場限制:

由於潛在的供應鏈中斷影響電池和電容器等關鍵零件,汽車能量回收系統(ERS)市場面臨挑戰。地緣政治緊張局勢和自然災害可能導致供應短缺並擾亂生產。利害關係人需要強大的應急計畫和多樣化的採購策略,以提高供應鏈的彈性。

由於技術和規範缺乏標準化,將 ERS 整合到不同的車輛架構中是一項挑戰。就通用標準達成共識對於相容性和採用非常重要。產業合作和監管措施對於克服整合複雜性和創建精簡的 ERS 環境至關重要。

市場機會:

自動駕駛汽車的興起為汽車能量回收系統(ERS)市場提供了巨大的收入機會。配備 ADAS(高級駕駛輔助系統)或全自動駕駛系統的車輛可以透過 ERS 以給定的加速/減速模式優化能源使用。這種整合不僅提高了能源效率,也滿足了未來交通的永續發展目標。

汽車產業與其他產業之間的合作創造了更多的收入機會。與儲能公司、技術公司和基礎設施開發公司的合作可以帶來創新的ERS解決方案。與智慧電網計畫的整合可實現車輛和電網之間的雙向能量流,透過車輛到電網(V2G)系統創造收入流。與再生能源供應商的合作探索了 ERS 和永續能源之間的協同效應,使 ERS 成為智慧和永續交通解決方案生態系統中的關鍵參與者。

報告回答的關鍵問題

  • 從價值和數量來看,目前全球汽車能量回收系統市場規模有多大?
  • 成長最快的細分市場是什麼?
  • 誰是汽車能量回收系統市場的主要參與者?
  • 汽車能量回收系統市場面臨哪些主要挑戰,例如原料價格、環境法規和技術顛覆?
  • 成長的關鍵機會是什麼?

競爭資訊與經營策略:

汽車能量回收系統 (ERS) 市場的競爭情報包括收集和分析BorgWarner, Robert Bosch, Hyundai Motors, Mitsubishi Electric, Cummins等主要參與者的資訊。了解競爭對手的產品、市場佔有率和技術進步至關重要。持續監控產業趨勢、法規和新技術,為策略決策提供見解。在這個市場中,符合趨勢、技術和法規的可靠業務策略對於長期成功至關重要。該策略包括產品創新、成本優化和市場多元化。合作夥伴關係、聯盟和收購可以提高您的市場佔有率。

主要公司簡介

  • BorgWarner Inc
  • Robert Bosch GmbH
  • Hyundai Motors Group
  • Mitsubishi Electric Corporation
  • Cummins Inc.
  • Tenneco Inc.
  • Honeywell International Inc.

汽車能量回收系統市場研究細分:

在汽車能量回收系統(AERS)市場中,再生煞車系統(RBS)佔據主導地位,尤其是在電動車(EV)中,在增加電動車的續航裡程和效率方面發揮關鍵作用。在混合動力系統激增的推動下,渦輪增壓器子系統正在經歷快速成長,優化內燃機的效率,在不犧牲燃油經濟性的情況下提供高功率輸出。

電動車 (EV) 透過無縫整合能量回收系統(尤其是再生煞車系統)而引領市場。商用車領域將快速成長,重點是商業運輸領域的燃油效率和減排。

由於嚴格的環境法規、永續發展措施以及強大的電動車基礎設施,歐洲成為 AERS 市場的主導地區。在積極的電氣化努力、蓬勃發展的汽車工業以及政府促進清潔交通的努力的推動下,南亞和大洋洲正在經歷快速增長。該地區大力推動電氣化和不斷發展的汽車工業使其成為不斷發展的 AERS 市場的關鍵參與者。

按子系統

  • 再生煞車系統
  • 渦輪增壓器
  • 廢氣再循環

按車型分類

  • 乘用車
  • 商用車
  • 電子車

按地區

  • 北美
  • 歐洲
  • 東亞
  • 南亞/大洋洲
  • 拉丁美洲
  • 中東/非洲

目錄

第一章內容提要

第二章市場概況

  • 市場範圍和定義
  • 市場動態
    • 促進者
    • 抑制因素
    • 機會
    • 任務
    • 主要趨勢
  • 子系統生命週期分析
  • 汽車能量回收系統市場:價值鏈
    • 原材料供應商名單
    • 製造商名單
    • 經銷商名單
    • 用途一覽
    • 獲利能力分析
  • 波特五力分析
  • 地緣政治緊張局勢:對市場的影響
  • 宏觀經濟因素
    • 按行業劃分的世界展望
    • 世界GDP成長率展望
    • 全球母公司市場概覽
  • 預測變量 - 相關性和影響
  • 監管和技術格局

第三章汽車能量回收系統市場展望:實際(2018-2022)與預測(2023-2030)

  • 主要亮點
  • 市場規模分析與預測
    • 過去的市場規模分析(2013-2016)
    • 當前市場規模預測(2018-2026)
  • 汽車能量回收系統市場展望:按子系統
    • 簡介/主要發現
    • 過去的市場規模與數量分析:按子系統(2018-2022)
    • 目前市場規模與數量預測:按子系統劃分(2023-2030)
  • 市場吸引力分析:按子系統
  • 汽車能量回收系統市場展望:依車型分類
    • 簡介/主要發現
    • 過去的市場規模和數量分析:按車輛類型劃分(2018-2022)
    • 目前市場規模與銷售預測:按車型分類(2023-2030)
  • 市場吸引力分析:按車型

第四章汽車能量回收系統市場展望:按地區

  • 主要亮點
  • 過去的市場規模和數量分析:按地區(2018-2022)
  • 目前市場規模和銷售預測:按地區(2023-2030)
    • 北美
    • 歐洲
    • 東亞
    • 南亞/大洋洲
    • 拉丁美洲
    • 中東/非洲
  • 市場吸引力分析:按地區

第五章北美汽車能量回收系統市場展望:實際(2018-2022)與預測(2023-2030)

  • 主要亮點
  • 價格分析
  • 過去的市場規模和數量分析:按市場(2018-2022)
    • 按國家
    • 按子系統
    • 按車型分類
  • 當前市場規模和數量預測:按國家/地區劃分(2023-2030 年)
    • 美國
    • 加拿大
  • 目前市場規模與數量預測:按子系統劃分(2023-2030)
    • 再生煞車系統
    • 渦輪增壓器
    • 廢氣再循環
  • 目前市場規模與銷售預測:按車型分類(2023-2030)
    • 乘用車
    • 商用車
    • 電子車
  • 市場吸引力分析

第六章歐洲汽車能量回收系統市場展望:實際(2018-2022)與預測(2023-2030)

  • 主要亮點
  • 價格分析
  • 過去的市場規模和數量分析:按市場(2018-2022)
    • 按國家
    • 按子系統
    • 按車型分類
  • 當前市場規模和數量預測:按國家/地區劃分(2023-2030 年)
    • 德國
    • 法國
    • 英國
    • 意大利
    • 西班牙
    • 俄羅斯
    • 托爾基爾
    • 歐洲其他地區
  • 目前市場規模與數量預測:按子系統劃分(2023-2030)
    • 再生煞車系統
    • 渦輪增壓器
    • 廢氣再循環
  • 目前市場規模與銷售預測:按車型分類(2023-2030)
    • 乘用車
    • 商用車
    • 電子車
  • 市場吸引力分析

第七章東亞汽車能量回收系統市場展望:實際(2018-2022)與預測(2023-2030)

  • 主要亮點
  • 價格分析
  • 過去的市場規模和數量分析:按市場(2018-2022)
    • 按國家
    • 按子系統
    • 按車型分類
  • 當前市場規模和數量預測:按國家/地區劃分(2023-2030 年)
    • 中國
    • 日本
    • 韓國
  • 目前市場規模與數量預測:按子系統劃分(2023-2030)
    • 再生煞車系統
    • 渦輪增壓器
    • 廢氣再循環
  • 目前市場規模與銷售預測:按車型分類(2023-2030)
    • 乘用車
    • 商用車
    • 電子車
  • 市場吸引力分析

第8章南亞/大洋洲汽車能量回收系統市場展望:實際(2018-2022)與預測(2023-2030)

  • 主要亮點
  • 價格分析
  • 過去的市場規模和數量分析:按市場(2018-2022)
    • 按國家
    • 按子系統
    • 按車型分類
  • 當前市場規模和數量預測:按國家/地區劃分(2023-2030 年)
    • 印度
    • 東南亞
    • 新西蘭
    • 其他南亞/大洋洲
  • 目前市場規模與數量預測:按子系統劃分(2023-2030)
    • 再生煞車系統
    • 渦輪增壓器
    • 廢氣再循環
  • 目前市場規模與銷售預測:按車型分類(2023-2030)
    • 乘用車
    • 商用車
    • 電子車
  • 市場吸引力分析

第9章拉丁美洲汽車能量回收系統市場展望:實際(2018-2022)與預測(2023-2030)

  • 主要亮點
  • 價格分析
  • 過去的市場規模和數量分析:按市場(2018-2022)
    • 按國家
    • 按子系統
    • 按車型分類
  • 當前市場規模和數量預測:按國家/地區劃分(2023-2030 年)
    • 巴西
    • 墨西哥
    • 其他拉丁美洲
  • 目前市場規模與數量預測:按子系統劃分(2023-2030)
    • 再生煞車系統
    • 渦輪增壓器
    • 廢氣再循環
  • 目前市場規模與銷售預測:按車型分類(2023-2030)
    • 乘用車
    • 商用車
    • 電子車
  • 市場吸引力分析

第10章中東和非洲汽車能量回收系統市場展望:實際(2018-2022)和預測(2023-2030)

  • 主要亮點
  • 價格分析
  • 過去的市場規模和數量分析:按市場(2018-2022)
    • 按國家
    • 按子系統
    • 按車型分類
  • 當前市場規模和數量預測:按國家/地區劃分(2023-2030 年)
    • GCC
    • 埃及
    • 南非
    • 北非
    • 其他中東/非洲
  • 目前市場規模與數量預測:按子系統劃分(2023-2030)
    • 再生煞車系統
    • 渦輪增壓器
    • 廢氣再循環
  • 目前市場規模與銷售預測:按車型分類(2023-2030)
    • 乘用車
    • 商用車
    • 電子車
  • 市場吸引力分析

第十一章競爭格局

  • 市場份額分析(2022 年)
  • 市場結構
  • 公司簡介(詳細資訊 - 概述、財務狀況、策略、最新發展)
    • BorgWarner Inc
    • Robert Bosch GmbH
    • Hyundai Motors Group
    • Mitsubishi Electric Corporation
    • Cummins Inc.
    • Tenneco Inc.
    • Honeywell International Inc.

第十二章附錄

簡介目錄
Product Code: PMRREP33575

Persistence Market Research has released an in-depth report on the worldwide Automotive Energy Recovery Systems market, delivering a thorough examination of crucial market dynamics, trends, opportunities, and challenges. The report furnishes detailed insights into the market structure, striving to provide exclusive information supported by data and statistics that delineate the anticipated growth path of the Automotive Energy Recovery Systems market spanning from 2023 to 2030.

The global Automotive Energy Recovery Systems market is forecast to expand at a CAGR of 7.1% and thereby increase from a value of US$ 19.3 Billion in 2023, to US$ 31.2 Billion by the end of 2030.

Key Insights

  • Automotive Energy Recovery Systems Market Size (2023E): US$ 19.3 Billion
  • Projected Market Value (2030F): US$ 31.2 Billion
  • Global Market Growth Rate (CAGR 2023 to 2030): 7.1%
  • Historical Market Growth Rate (CAGR 2018 to 2022): 5.7%

Automotive Energy Recovery Systems Market - Report Scope

Automotive Energy Recovery Systems (ERS) capture and reuse wasted energy during vehicle operation for enhanced energy efficiency, reduced fuel consumption, and lower emissions. Common implementations, like regenerative braking, convert braking energy into stored electrical energy. ERS aligns with the automotive industry's focus on eco-friendly vehicles, driven by concerns about climate change and government regulations promoting cleaner technologies. The outlook for ERS from 2023 to 2030 is positive, fueled by increasing demand for energy-efficient transportation. Advancements in ERS technologies, including improved energy storage, present growth opportunities as automakers prioritize electric and hybrid vehicles, fostering market expansion and innovation.

Market Growth Drivers for Automotive Energy Recovery Systems:

The Automotive Energy Recovery Systems (ERS) market is rapidly growing, driven by advancements in energy storage technologies. Improvements in high-capacity batteries and supercapacitors enhance energy recuperation during braking and acceleration, extending the range of electric and hybrid vehicles. This progress promotes widespread ERS adoption across automotive segments, making systems more robust and cost-effective.

Global attention to sustainability and environmental regulations further fuels market growth. Governments worldwide are pushing for eco-friendly transportation, with ERS playing a crucial role in minimizing energy waste and improving fuel efficiency. Automakers integrate ERS to comply with regulations, project a green image, and meet consumer demand for environmentally conscious vehicles. As sustainability becomes a key differentiator in the industry, ERS integration aligns with trends, fostering market growth through regulatory compliance and consumer preferences.

Market Restraints:

The Automotive Energy Recovery Systems (ERS) market faces challenges from potential disruptions in the supply chain, impacting key components like batteries and capacitors. Geopolitical tensions or natural disasters can lead to shortages, hindering production. Stakeholders need robust contingency plans and diversified sourcing strategies for supply chain resilience.

Integrating ERS into diverse vehicle architectures is a challenge due to a lack of standardization in technologies and specifications. Achieving consensus on common standards is crucial for compatibility and widespread adoption. Industry collaboration and regulatory initiatives are essential to overcoming integration complexities and creating a streamlined ERS landscape.

Market Opportunities:

The rise of autonomous vehicles offers a significant revenue opportunity for the Automotive Energy Recovery Systems (ERS) market. Vehicles equipped with advanced driver assistance systems (ADAS) and full autonomy can optimize energy usage through ERS during constant acceleration and deceleration patterns. This integration not only boosts energy efficiency but also aligns with sustainability goals in future transportation.

Collaborations between the automotive sector and other industries create additional revenue opportunities. Partnering with energy storage companies, technology firms, and infrastructure developers can lead to innovative ERS solutions. Collaborations with smart grid initiatives enable bidirectional energy flow between vehicles and the power grid, creating revenue streams through vehicle-to-grid (V2G) systems. Partnerships with renewable energy providers explore synergies between ERS and sustainable energy sources, positioning ERS as a key player in the ecosystem of intelligent and sustainable transportation solutions.

Key Questions Answered in Report:

  • What is the current size of the global Automotive Energy Recovery Systems market in terms of value and volume?
  • Which market segments are growing the fastest?
  • Who are the key players in the Automotive Energy Recovery Systems market?
  • What are the major challenges facing the Automotive Energy Recovery Systems market, such as raw material pricing, environmental regulations, or technological disruptions?
  • What are the key opportunities for growth?

Competitive Intelligence and Business Strategy:

Competitive intelligence in the automotive energy recovery systems (ERS) market involves gathering and analyzing information about key players like BorgWarner, Robert Bosch, Hyundai, Mitsubishi Electric, and Cummins. Understanding competitors' products, market share, and technological advancements is crucial. Continuous monitoring of industry trends, regulations, and emerging technologies provides insights for strategic decision-making. In this market, a robust business strategy aligning with trends, technology, and regulations is vital for long-term success. This strategy should include product innovation, cost optimization, and market diversification. Partnerships, collaborations, and acquisitions can enhance market presence.

Key Companies Profiled:

  • BorgWarner Inc
  • Robert Bosch GmbH
  • Hyundai Motors Group
  • Mitsubishi Electric Corporation
  • Cummins Inc.
  • Tenneco Inc.
  • Honeywell International Inc.

Automotive Energy Recovery Systems Market Research Segmentation:

In the Automotive Energy Recovery Systems (AERS) market, the regenerative braking system (RBS) dominates, especially in electric vehicles (EVs), playing a crucial role in enhancing EV range and efficiency. The turbocharger subsystem experiences rapid growth, driven by the surge in hybrid powertrains, optimizing internal combustion engine efficiency for higher power outputs without compromising fuel economy.

Electric vehicles (EVs) lead the market, seamlessly integrating energy recovery systems, with a focus on regenerative braking. The commercial vehicle segment grows rapidly, emphasizing fuel efficiency and emissions reduction in the commercial transportation sector.

Europe emerges as a dominant region in the AERS market due to stringent environmental regulations, sustainability commitment, and a robust infrastructure for electric vehicles. South Asia and Oceania experience the fastest growth, driven by dynamic electrification efforts, a thriving automotive industry, and government initiatives promoting cleaner transportation. The region's strong push towards electrification and a growing automotive sector positions it as a key player in the evolving AERS market.

By Subsystem:

  • Regenerative Braking System
  • Turbocharger
  • Exhaust Gas Recirculation

By Vehicle Type:

  • Passenger Cars
  • Commercial Vehicles
  • Electric Vehicles

By Region:

  • North America
  • Europe
  • East Asia
  • South Asia & Oceania
  • Latin America
  • Middle East & Africa

Table of Contents

1. Executive Summary

  • 1.1. Automotive Energy Recovery Systems Market Snapshot, 2023 and 2030
  • 1.2. Market Opportunity Assessment, 2023 - 2030, US$ Mn
  • 1.3. Key Market Trends
  • 1.4. Future Market Projections
  • 1.5. Premium Market Insights
  • 1.6. Industry Developments and Key Market Events
  • 1.7. PMR Analysis and Recommendations

2. Market Overview

  • 2.1. Market Scope and Definition
  • 2.2. Market Dynamics
    • 2.2.1. Drivers
    • 2.2.2. Restraints
    • 2.2.3. Opportunity
    • 2.2.4. Challenges
    • 2.2.5. Key Trends
  • 2.3. Subsystem Lifecycle Analysis
  • 2.4. Automotive Energy Recovery Systems Market: Value Chain
    • 2.4.1. List of Raw Material Supplier
    • 2.4.2. List of Manufacturers
    • 2.4.3. List of Distributors
    • 2.4.4. List of Applications
    • 2.4.5. Profitability Analysis
  • 2.5. Porter Five Force's Analysis
  • 2.6. Geopolitical Tensions: Market Impact
  • 2.7. Macro-Economic Factors
    • 2.7.1. Global Sectorial Outlook
    • 2.7.2. Global GDP Growth Outlook
    • 2.7.3. Global Parent Market Overview
  • 2.8. Forecast Factors - Relevance and Impact
  • 2.9. Regulatory and Technology Landscape

3. Automotive Energy Recovery Systems Market Outlook: Historical (2018 - 2022) and Forecast (2023 - 2030)

  • 3.1. Key Highlights
    • 3.1.1. Market Volume (Units) Projections
    • 3.1.2. Market Size and Y-o-Y Growth
    • 3.1.3. Absolute $ Opportunity
  • 3.2. Market Size (US$ Mn) Analysis and Forecast
    • 3.2.1. Historical Market Size Analysis, 2013-2016
    • 3.2.2. Current Market Size Forecast, 2018-2026
  • 3.3. Automotive Energy Recovery Systems Market Outlook:Subsystem
    • 3.3.1. Introduction / Key Findings
    • 3.3.2. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Subsystem, 2018 - 2022
    • 3.3.3. Current Market Size (US$ Mn) and Volume (Units) Forecast By Subsystem, 2023 - 2030
      • 3.3.3.1. Regenerative Braking System
      • 3.3.3.2. Turbocharger
      • 3.3.3.3. Exhaust Gas Recirculation
  • 3.4. Market Attractiveness Analysis: Subsystem
  • 3.5. Automotive Energy Recovery Systems Market Outlook:Vehicle Type
    • 3.5.1. Introduction / Key Findings
    • 3.5.2. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Vehicle Type, 2018 - 2022
    • 3.5.3. Current Market Size (US$ Mn) and Volume (Units) Forecast By Vehicle Type, 2023 - 2030
      • 3.5.3.1. Passenger Cars
      • 3.5.3.2. Commercial Vehicles
      • 3.5.3.3. Electric Vehicles
  • 3.6. Market Attractiveness Analysis: Vehicle Type

4. Automotive Energy Recovery Systems Market Outlook: Region

  • 4.1. Key Highlights
  • 4.2. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Region, 2018 - 2022
  • 4.3. Current Market Size (US$ Mn) and Volume (Units) Forecast By Region, 2023 - 2030
    • 4.3.1. North America
    • 4.3.2. Europe
    • 4.3.3. East Asia
    • 4.3.4. South Asia and Oceania
    • 4.3.5. Latin America
    • 4.3.6. Middle East & Africa (MEA)
  • 4.4. Market Attractiveness Analysis: Region

5. North America Automotive Energy Recovery Systems Market Outlook: Historical (2018 - 2022) and Forecast (2023 - 2030)

  • 5.1. Key Highlights
  • 5.2. Pricing Analysis
  • 5.3. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Market, 2018 - 2022
    • 5.3.1. By Country
    • 5.3.2. By Subsystem
    • 5.3.3. By Vehicle Type
  • 5.4. Current Market Size (US$ Mn) and Volume (Units) Forecast By Country, 2023 - 2030
    • 5.4.1. U.S.
    • 5.4.2. Canada
  • 5.5. Current Market Size (US$ Mn) and Volume (Units) Forecast By Subsystem, 2023 - 2030
    • 5.5.1. Regenerative Braking System
    • 5.5.2. Turbocharger
    • 5.5.3. Exhaust Gas Recirculation
  • 5.6. Current Market Size (US$ Mn) and Volume (Units) Forecast By Vehicle Type, 2023 - 2030
    • 5.6.1. Passenger Cars
    • 5.6.2. Commercial Vehicles
    • 5.6.3. Electric Vehicles
  • 5.7. Market Attractiveness Analysis

6. Europe Automotive Energy Recovery Systems Market Outlook: Historical (2018 - 2022) and Forecast (2023 - 2030)

  • 6.1. Key Highlights
  • 6.2. Pricing Analysis
  • 6.3. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Market, 2018 - 2022
    • 6.3.1. By Country
    • 6.3.2. By Subsystem
    • 6.3.3. By Vehicle Type
  • 6.4. Current Market Size (US$ Mn) and Volume (Units) Forecast By Country, 2023 - 2030
    • 6.4.1. Germany
    • 6.4.2. France
    • 6.4.3. U.K.
    • 6.4.4. Italy
    • 6.4.5. Spain
    • 6.4.6. Russia
    • 6.4.7. T rkiye
    • 6.4.8. Rest of Europe
  • 6.5. Current Market Size (US$ Mn) and Volume (Units) Forecast By Subsystem, 2023 - 2030
    • 6.5.1. Regenerative Braking System
    • 6.5.2. Turbocharger
    • 6.5.3. Exhaust Gas Recirculation
  • 6.6. Current Market Size (US$ Mn) and Volume (Units) Forecast By Vehicle Type, 2023 - 2030
    • 6.6.1. Passenger Cars
    • 6.6.2. Commercial Vehicles
    • 6.6.3. Electric Vehicles
  • 6.7. Market Attractiveness Analysis

7. East Asia Automotive Energy Recovery Systems Market Outlook: Historical (2018 - 2022) and Forecast (2023 - 2030)

  • 7.1. Key Highlights
  • 7.2. Pricing Analysis
  • 7.3. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Market, 2018 - 2022
    • 7.3.1. By Country
    • 7.3.2. By Subsystem
    • 7.3.3. By Vehicle Type
  • 7.4. Current Market Size (US$ Mn) and Volume (Units) Forecast By Country, 2023 - 2030
    • 7.4.1. China
    • 7.4.2. Japan
    • 7.4.3. South Korea
  • 7.5. Current Market Size (US$ Mn) and Volume (Units) Forecast By Subsystem, 2023 - 2030
    • 7.5.1. Regenerative Braking System
    • 7.5.2. Turbocharger
    • 7.5.3. Exhaust Gas Recirculation
  • 7.6. Current Market Size (US$ Mn) and Volume (Units) Forecast By Vehicle Type, 2023 - 2030
    • 7.6.1. Passenger Cars
    • 7.6.2. Commercial Vehicles
    • 7.6.3. Electric Vehicles
  • 7.7. Market Attractiveness Analysis

8. South Asia & Oceania Automotive Energy Recovery Systems Market Outlook: Historical (2018 - 2022) and Forecast (2023 - 2030)

  • 8.1. Key Highlights
  • 8.2. Pricing Analysis
  • 8.3. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Market, 2018 - 2022
    • 8.3.1. By Country
    • 8.3.2. By Subsystem
    • 8.3.3. By Vehicle Type
  • 8.4. Current Market Size (US$ Mn) and Volume (Units) Forecast By Country, 2023 - 2030
    • 8.4.1. India
    • 8.4.2. Southeast Asia
    • 8.4.3. ANZ
    • 8.4.4. Rest of South Asia & Oceania
  • 8.5. Current Market Size (US$ Mn) and Volume (Units) Forecast By Subsystem, 2023 - 2030
    • 8.5.1. Regenerative Braking System
    • 8.5.2. Turbocharger
    • 8.5.3. Exhaust Gas Recirculation
  • 8.6. Current Market Size (US$ Mn) and Volume (Units) Forecast By Vehicle Type, 2023 - 2030
    • 8.6.1. Passenger Cars
    • 8.6.2. Commercial Vehicles
    • 8.6.3. Electric Vehicles
  • 8.7. Market Attractiveness Analysis

9. Latin America Automotive Energy Recovery Systems Market Outlook: Historical (2018 - 2022) and Forecast (2023 - 2030)

  • 9.1. Key Highlights
  • 9.2. Pricing Analysis
  • 9.3. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Market, 2018 - 2022
    • 9.3.1. By Country
    • 9.3.2. By Subsystem
    • 9.3.3. By Vehicle Type
  • 9.4. Current Market Size (US$ Mn) and Volume (Units) Forecast By Country, 2023 - 2030
    • 9.4.1. Brazil
    • 9.4.2. Mexico
    • 9.4.3. Rest of Latin America
  • 9.5. Current Market Size (US$ Mn) and Volume (Units) Forecast By Subsystem, 2023 - 2030
    • 9.5.1. Regenerative Braking System
    • 9.5.2. Turbocharger
    • 9.5.3. Exhaust Gas Recirculation
  • 9.6. Current Market Size (US$ Mn) and Volume (Units) Forecast By Vehicle Type, 2023 - 2030
    • 9.6.1. Passenger Cars
    • 9.6.2. Commercial Vehicles
    • 9.6.3. Electric Vehicles
  • 9.7. Market Attractiveness Analysis

10. Middle East & Africa Automotive Energy Recovery Systems Market Outlook: Historical (2018 - 2022) and Forecast (2023 - 2030)

  • 10.1. Key Highlights
  • 10.2. Pricing Analysis
  • 10.3. Historical Market Size (US$ Mn) and Volume (Units) Analysis By Market, 2018 - 2022
    • 10.3.1. By Country
    • 10.3.2. By Subsystem
    • 10.3.3. By Vehicle Type
  • 10.4. Current Market Size (US$ Mn) and Volume (Units) Forecast By Country, 2023 - 2030
    • 10.4.1. GCC
    • 10.4.2. Egypt
    • 10.4.3. South Africa
    • 10.4.4. Northern Africa
    • 10.4.5. Rest of Middle East & Africa
  • 10.5. Current Market Size (US$ Mn) and Volume (Units) Forecast By Subsystem, 2023 - 2030
    • 10.5.1. Regenerative Braking System
    • 10.5.2. Turbocharger
    • 10.5.3. Exhaust Gas Recirculation
  • 10.6. Current Market Size (US$ Mn) and Volume (Units) Forecast By Vehicle Type, 2023 - 2030
    • 10.6.1. Passenger Cars
    • 10.6.2. Commercial Vehicles
    • 10.6.3. Electric Vehicles
  • 10.7. Market Attractiveness Analysis

11. Competition Landscape

  • 11.1. Market Share Analysis, 2022
  • 11.2. Market Structure
    • 11.2.1. Competition Intensity Mapping By Market
    • 11.2.2. Competition Turbocharger
    • 11.2.3. Apparent Product Capacity
  • 11.3. Company Profiles (Details - Overview, Financials, Strategy, Recent Developments)
    • 11.3.1. BorgWarner Inc
      • 11.3.1.1. Overview
      • 11.3.1.2. Segments and Product
      • 11.3.1.3. Key Financials
      • 11.3.1.4. Market Developments
      • 11.3.1.5. Market Strategy
    • 11.3.2. Robert Bosch GmbH
      • 11.3.2.1. Overview
      • 11.3.2.2. Segments and Product
      • 11.3.2.3. Key Financials
      • 11.3.2.4. Market Developments
      • 11.3.2.5. Market Strategy
    • 11.3.3. Hyundai Motors Group
      • 11.3.3.1. Overview
      • 11.3.3.2. Segments and Product
      • 11.3.3.3. Key Financials
      • 11.3.3.4. Market Developments
      • 11.3.3.5. Market Strategy
    • 11.3.4. Mitsubishi Electric Corporation
      • 11.3.4.1. Overview
      • 11.3.4.2. Segments and Product
      • 11.3.4.3. Key Financials
      • 11.3.4.4. Market Developments
      • 11.3.4.5. Market Strategy
    • 11.3.5. Cummins Inc
      • 11.3.5.1. Overview
      • 11.3.5.2. Segments and Product
      • 11.3.5.3. Key Financials
      • 11.3.5.4. Market Developments
      • 11.3.5.5. Market Strategy
    • 11.3.6. Tenneco Inc.
      • 11.3.6.1. Overview
      • 11.3.6.2. Segments and Product
      • 11.3.6.3. Key Financials
      • 11.3.6.4. Market Developments
      • 11.3.6.5. Market Strategy
    • 11.3.7. Honeywell International Inc.
      • 11.3.7.1. Overview
      • 11.3.7.2. Segments and Product
      • 11.3.7.3. Key Financials
      • 11.3.7.4. Market Developments
      • 11.3.7.5. Market Strategy

12. Appendix

  • 12.1. Research Methodology
  • 12.2. Research Assumptions
  • 12.3. Acronyms and Abbreviations