全球 HEV 能源管理市場 - 2023-2030
市場調查報告書
商品編碼
1396654

全球 HEV 能源管理市場 - 2023-2030

Global HEV Energy Management Market - 2023-2030

出版日期: | 出版商: DataM Intelligence | 英文 188 Pages | 商品交期: 約2個工作天內

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簡介目錄

概述

全球混合動力汽車能源管理市場將於 2022 年達到 65 億美元,預計到 2030 年將達到 124 億美元,到 2030 年將達到 124 億美元,在 2023-2030 年預測期間CAGR為 8.5%。當今全球混合動力汽車能源管理需求的很大一部分是由亞太新興國家產生的,全球經濟成長的大部分集中在這些國家。

混合動力汽車能源管理系統正在成為汽油引擎的替代品,因為這些引擎會釋放溫室氣體,這是全球環境所關注的問題。 HEV能源管理採用內燃機與電動馬達結合的演算法,提高了能源效率和能源管理。

此外,由於能源管理系統有助於減少碳排放和電動車技術進步等各種正面因素,全球混合動力汽車能源管理系統市場動態集中。該市場更加受到汽車製造商、技術企業以及電動引擎系統和混合動力引擎系統供應商的關注。

動力學

燃油效率和成本節約

先進的能源管理系統透過其混合動力引擎車型提供更好的燃油效率,從而延長引擎壽命和性能預期,與傳統引擎相比,這是一種首選選擇,為消費者提供了節省成本和更好體驗的市場優勢。

混合動力汽車能源管理系統是提高燃油消耗和提供更好里程的關鍵因素,有助於管理動力傳動系統並避免客戶頻繁前往加油站,這為長期節省成本提供了窗口,目前吸引了越來越多的人更多的混合動力汽車公司和消費者進入這個市場。

政府政策的變化

全球各國政府正在製定嚴格的排放限制,以盡量減少溫室氣體排放並對抗空氣污染。由於與傳統汽車相比,混合動力汽車能源管理系統能夠減少燃料使用和排放,因此被視為潛在的解決方案,因此全球各國政府正在製定新的政策來推進這些系統。汽車製造商遵守這些法規並達到排放標準的要求推動了市場的發展。

根據環境問題制定的新政策可能會增加全球混合動力汽車的數量以及未來幾年可用的混合動力汽車車型的數量。隨著越來越多的混合動力車上路,預計它們的累積環境影響將比傳統汽車更大。此外,混合動力車的普及可能會鼓勵汽車產業的創新,從而在燃油效率和減排方面取得進一步的進步。

HEV 管理的技術限制

技術正在快速進步,但當前技術的能力仍然存在局限性。它可能導致混合動力汽車能源管理系統的性能有限。技術的進步速度已經大大提高,但當前技術的潛力存在局限性,導致混合動力電動車能量管理系統的性能不確定。

為了應對與混合動力汽車能源管理相關的挑戰,改進策略以改善現有技術非常重要。這些策略將包括更新演算法、機器學習和人工智慧的進步以及先進的電池設計。

複雜的引擎系統架構

這些引擎的複雜框架由多個組件組成,直接影響該系統的製造時間,因為提供能源管理解決方案需要大量計算,而且混合動力汽車的製造成本和價格也會上升,這是一個主要問題植入能源管理系統的缺點。

主要部件需要一定的時間和適當的參數選擇來調節混合動力系統。它使它們適合短速度週期和單次試驗,但由於調整參數並使它們適應模型變化的困難,因此很難在其他情況下使用它們

目錄

第 1 章:方法與範圍

  • 研究方法論
  • 報告的研究目的和範圍

第 2 章:定義與概述

第 3 章:執行摘要

  • 管理策略片段
  • 最終使用者的片段
  • 按地區分類的片段

第 4 章:動力學

  • 影響因素
    • 促進要素
      • 燃油效率和成本節約
      • 政府政策的變化
    • 限制
      • HEV 管理的技術限制
      • 複雜的引擎系統框架
    • 機會
    • 影響分析

第 5 章:產業分析

  • 波特五力分析
  • 供應鏈分析
  • 定價分析
  • 監管分析
  • 俄烏戰爭影響分析
  • DMI 意見

第 6 章:COVID-19 分析

  • COVID-19 分析
    • 新冠疫情爆發前的情景
    • 新冠疫情期間的情景
    • 新冠疫情後的情景
  • COVID-19 期間的定價動態
  • 供需譜
  • 疫情期間政府與市場相關的舉措
  • 製造商策略舉措
  • 結論

第 7 章:按管理策略

  • 基於最佳的能源管理策略 (OBEMS)
  • 基於規則的能源管理策略 (RBEMS)

第 8 章:最終用戶

  • 汽車製造商
  • 車隊營運商
  • 政府和公共交通機構
  • 油電混合車個人車主

第 9 章:按地區

  • 北美洲
    • 美國
    • 加拿大
    • 墨西哥
  • 歐洲
    • 德國
    • 英國
    • 法國
    • 義大利
    • 西班牙
    • 歐洲其他地區
  • 南美洲
    • 巴西
    • 阿根廷
    • 南美洲其他地區
  • 亞太
    • 中國
    • 印度
    • 日本
    • 澳洲
    • 亞太其他地區
  • 中東和非洲

第 10 章:競爭格局

  • 競爭場景
  • 市場定位/佔有率分析
  • 併購分析

第 11 章:公司簡介

  • Toyota Motor Corporation
    • 公司簡介
    • 產品組合和描述
    • 財務概覽
    • 最近的發展
  • Honda Motor Co., Ltd.
  • Ford Motor Company
  • General Motors Company
  • Hyundai Motor Group
  • Nissan Motor Co., Ltd.
  • BMW Group
  • Volkswagen Group
  • Tesla Inc.
  • Daimler AG

第 12 章:附錄

簡介目錄
Product Code: EP7554

Overview

Global HEV Energy Management Market reached US$ 6.5 billion 2022 in 2022 and is expected to reach US$ 12.4 billion 2030 billion by 2030 growing with a CAGR 8.5% during the forecast period 2023-2030. A significant chunk of the global demand for HEV energy management today is generated by the emerging nations of Asia-Pacific, where a lot of the global economic growth is concentrated.

HEV energy management systems are trending as the substitution for gasoline engines as these engines release greenhouse gasses which is a concern for the global environment. HEV energy management uses the algorithms of a combination of internal combustion engine with the electric motor which increases energy-efficiency and energy management.

Furthermore, the global HEV energy management system market is dynamically focused due to various positive factors like this energy management system helping in reducing carbon emission and advancement in electrical vehicle technology. The market is much more focused by automotive manufacturers, technical businesses and suppliers of electric engine systems and hybrid engine systems.

Dynamics

Fuel Efficiency and Cost Savings

Advanced energy management systems are providing better fuel efficiency with their hybrid engine models which increase engine life and performance expectancy which is a preferred option in comparison to conventional engines which provides an edge to the market with cost saving and better experience for the consumers.

HEV energy management system is the key player in advancing fuel consumption and providing better mileage which helps in managing the power train and avoiding the frequent ongoing of customers to the gasoline fuel stations which provides the window for long term cost saving which is currently attracting more and more HEV companies and consumers to this market.

Changes In Government Policies

Governments globally are enacting tough emission limits in order to minimize greenhouse gas emissions and battle air pollution. HEV energy management systems are seen as a potential solution due to their capacity to cut fuel usage and emissions when compared to conventional automobiles, so governments all globally are making new policies for advancing these systems. The requirement for automakers to comply with these regulations and reach emissions standards drives the market.

New policies in accordance with environmental concerns are likely to expand the global number of HEVs as well as the number of HEV models available in the future years. With more HEVs on the road, it is projected that their cumulative environmental effect would be greater than that of conventional vehicles. Furthermore, the proliferation of HEVs is likely to encourage automotive industry innovation, leading to additional advancements in fuel efficiency and emissions reduction.

Technology Limitations of HEV Management

Technology is improving at a rapid pace but still there are limitations in significance of the capabilities of current technology. It can lead to limited performance of HEV energy management systems. Technology has immensely improved in rate of progress but there are limitations to the potential of current technology which led to an uncertain performance of hybrid electric vehicle energy management systems.

It is important to improve strategies to make the existing technology better in order to address the challenges associated with HEV energy management. Such strategies will include updated algorithms, advances in machine learning and artificial intelligence and advanced battery designs.

Complicated Framework of Engine Systems

Complicated framework of these engines consists of multiple components which directly affecting which takes time to manufacture this system as there is lot of computation is required in providing the solution for energy management and also the manufacture cost and price of HEV will rise, which is a major drawback for implanting the energy management system.

Main components need an amount of time and an adequate selection of parameters to regulate a hybrid powertrain. It makes them suitable for short speed cycles and single trials, but it makes them difficult to employ in other contexts due to the difficulties in tweaking parameters and adapting them to model changes

Segment Analysis

The global HEV energy management market is segmented based on management strategies, end-user and region.

Automotive Manufacturers Benefit from HEV Energy Management

Automotive manufacturers account for more than half of the global market. HEV energy management makes a significant transformation in the automotive industry and contributes to the decarbonization of the planet. Advanced energy management systems in HEVs can offer substantial benefits to both manufacturers and consumers which increase demand and receive encouragement from governments for the management systems.

The value proposition for manufacturers lies in the opportunity to install better energy management solutions in HEVs. By incorporating advanced technologies manufacturers can create more efficient and sustainable vehicles which will attract the attention for environmentally conscious consumers. As demand for cleaner transportation options increases, HEVs with robust energy management systems can capture a significant market share.

Geographical Penetration

Asia-Pacific is a Growing Market For HEV Energy Management

Asia-Pacific is experiencing significant growth in the manufacturing of electric vehicles including HEVs particularly in countries like China, Japan and India and also actively establishing manufacturing units to meet the demand. The growth in HEV production directly increases the need for advanced energy management strategies for these vehicles.

The governments in the region know the importance of sustainable and environmentally friendly transportation, which makes them to continuously evolve in the strategies and policies for this technology. Also, they are implementing policies and regulations that encourage the adoption of electric vehicles and support the development of associated technologies.

COVID-19 Impact Analysis

COVID-19 had a significant impact on the HEV energy management market due to the shutdown of work in companies and only the limited work has been done for several months. It led to a delay in the work updating and advancement of the HEV energy management system, which eventually impacted the HEV energy management market.

The pandemic has majorly impacted the automotive industry, with many plants temporarily shutting down to reduce the spread. It has caused major disruptions in the production of HEV energy management systems. However, the market is expected to bounce back soon, with many countries gradually opening their economies and restarting their automotive businesses.

Russia-Ukraine War Analysis

The conflict between Russia and Ukraine has a major impact on the overall disruption of supply chains for HEV materials and energy management systems. The local suppliers of potential raw material are unable to provide and fulfill the demand of the consumers which leads to potential production delays and increased costs.

The conflict also affected the availability of raw materials required for the production of HEVs in other countries. Ukraine is one of the major global producers of essential metals and other materials which are used in the manufacturing of batteries, electric motors and other components for electric vehicle which affected some major companies that import the material from Ukraine.

AI Impact

AI is having a major impact on the HEV energy management market, with AI algorithms more advanced experiments performed on energy usage and managing vehicle conditions to maximize efficiency. AI algorithms are trained on vast amounts of data to enable the optimization of operations and decisions for electric and hybrid vehicles.AI-based algorithms are continuously used to optimize the performance and fuel efficiency of hybrid electric vehicles, which provides them with the most efficient and effective combination of fuel and electricity.

AI green technology is a fast-expanding subject providing significant advancements in energy management systems. AI is used in many applications, like as renewable energy forecasting, energy storage optimization, demand response and energy efficiency, by using the charging and discharging cycles with the compatibility of energy demand and supply

By Management Strategy

  • Optimal Based Energy Management Strategy (OBEMS)
  • Rules Based Energy Management Strategy (RBEMS)

By End-User

  • Automotive Manufacturers
  • Fleet Operators
  • Government and Public Transportation Agencies
  • Individual HEV Owners

By Region

  • North America
    • U.S.
    • Canada
    • Mexico
  • Europe
    • Germany
    • UK
    • France
    • Italy
    • Spain
    • Rest of Europe
  • South America
    • Brazil
    • Argentina
    • Rest of South America
  • Asia-Pacific
    • China
    • India
    • Japan
    • Australia
    • Rest of Asia-Pacific
  • Middle East and Africa

Key Development

  • On April 24, 2022, RMA Group declared that it will be expanding its services and launching both Hybrid Electric Vehicle and Plug-In Electric Vehicle Conversion Programs. To power this venture, RMA Group has secured the use of innovative EV (Electric Vehicle) technology from XL Fleet (Spruce Power) located in Wixom, MI, USA.
  • On october,2022 Global Wheel Manufacturer (GWM) has seen its new energy products, which includes hybrid electric vehicle, plug-in hybrid electric vehicle and electric vehicle power forms, experiencing a sales breakthrough in the global market. In 2021(YOY), the HAVAL H6 PHEV saw a growth of up to 14%, well beyond the average market expectations. To capitalize on this momentum, GWM has launched more models for the global market, such as the HAVAL H6 PHEV, which was officially released in China and Thailand.
  • On Wednesday, May 17th, 2023, Kia Corporation hosted a launch event in Riyadh, Saudi Arabia at the Intercontinental Durrat Al Riyadh Resort. The event sought to display Kia's commitment to advancing sustainable mobility and its latest offering of hybrid electric vehicles (HEVs) gave attendees a sneak peek into what eco-friendly driving looks like. With this event, Kia set the stage for a greener future and continues to demonstrate its dedication to environmentally conscious transportation solutions.

Competitive Landscape

The major global players in the market include: Toyota Motor Corporation, Honda Motor Co, Ltd. Ford Motor Company, General Motors Company, Hyundai Motor Group, Nissan Motor Co., Ltd. BMW Group, Volkswagen Group, Tesla Inc, Daimler AG.

Why Purchase the Report?

  • To visualize the global HEV energy management market segmentation based on management strategies, end-user and region, as well as understand key commercial assets and players.
  • Identify commercial opportunities by analyzing trends and co-development.
  • Excel data sheet with numerous data points of HEV energy management market-level with all segments.
  • The PDF report consists of a comprehensive analysis after exhaustive qualitative interviews and an in-depth study.
  • Product mapping available as Excel consisting of key products of all the major players.

The Global HEV energy management market report would provide approximately 53 tables, 51 figures and 188 Pages.

Target Audience 2023

  • Manufacturers/ Buyers
  • Industry Investors/Investment Bankers
  • Research Professionals
  • Emerging Companies

Table of Contents

1. Methodology and Scope

  • 1.1. Research Methodology
  • 1.2. Research Objective and Scope of the Report

2. Definition and Overview

3. Executive Summary

  • 3.1. Snippet by Management Strategy
  • 3.2. Snippet by End-User
  • 3.3. Snippet by Region

4. Dynamics

  • 4.1. Impacting Factors
    • 4.1.1. Drivers
      • 4.1.1.1. Fuel Efficiency and Cost Savings
      • 4.1.1.2. Change in Government Policies
    • 4.1.2. Restraints
      • 4.1.2.1. Technology Limitations of HEV Management
      • 4.1.2.2. Complicated Framework of Engine Systems
    • 4.1.3. Opportunity
    • 4.1.4. Impact Analysis

5. Industry Analysis

  • 5.1. Porter's Five Force Analysis
  • 5.2. Supply Chain Analysis
  • 5.3. Pricing Analysis
  • 5.4. Regulatory Analysis
  • 5.5. Russia-Ukraine War Impact Analysis
  • 5.6. DMI Opinion

6. COVID-19 Analysis

  • 6.1. Analysis of COVID-19
    • 6.1.1. Scenario Before COVID
    • 6.1.2. Scenario During COVID
    • 6.1.3. Scenario Post COVID
  • 6.2. Pricing Dynamics Amid COVID-19
  • 6.3. Demand-Supply Spectrum
  • 6.4. Government Initiatives Related to the Market During Pandemic
  • 6.5. Manufacturers Strategic Initiatives
  • 6.6. Conclusion

7. By Management Strategy

  • 7.1. Introduction
    • 7.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Management Strategy
    • 7.1.2. Market Attractiveness Index, By Management Strategy
  • 7.2. Optimal Based Energy Management Strategy (OBEMS)*
    • 7.2.1. Introduction
    • 7.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
  • 7.3. Rules Based Energy Management Strategy (RBEMS)

8. By End-User

  • 8.1. Introduction
    • 8.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
    • 8.1.2. Market Attractiveness Index, By End-User
  • 8.2. Automotive Manufacturers*
    • 8.2.1. Introduction
    • 8.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
  • 8.3. Fleet Operators
  • 8.4. Government and Public Transportation Agencies
  • 8.5. Individual HEV Owners

9. By Region

  • 9.1. Introduction
    • 9.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Region
    • 9.1.2. Market Attractiveness Index, By Region
  • 9.2. North America
    • 9.2.1. Introduction
    • 9.2.2. Key Region-Specific Dynamics
    • 9.2.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Management Strategy
    • 9.2.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
    • 9.2.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
      • 9.2.5.1. U.S.
      • 9.2.5.2. Canada
      • 9.2.5.3. Mexico
  • 9.3. Europe
    • 9.3.1. Introduction
    • 9.3.2. Key Region-Specific Dynamics
    • 9.3.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Management Strategy
    • 9.3.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
    • 9.3.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
      • 9.3.5.1. Germany
      • 9.3.5.2. UK
      • 9.3.5.3. France
      • 9.3.5.4. Italy
      • 9.3.5.5. Spain
      • 9.3.5.6. Rest of Europe
  • 9.4. South America
    • 9.4.1. Introduction
    • 9.4.2. Key Region-Specific Dynamics
    • 9.4.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Management Strategy
    • 9.4.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
    • 9.4.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
      • 9.4.5.1. Brazil
      • 9.4.5.2. Argentina
      • 9.4.5.3. Rest of South America
  • 9.5. Asia-Pacific
    • 9.5.1. Introduction
    • 9.5.2. Key Region-Specific Dynamics
    • 9.5.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Management Strategy
    • 9.5.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
    • 9.5.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
      • 9.5.5.1. China
      • 9.5.5.2. India
      • 9.5.5.3. Japan
      • 9.5.5.4. Australia
      • 9.5.5.5. Rest of Asia-Pacific
  • 9.6. Middle East and Africa
    • 9.6.1. Introduction
    • 9.6.2. Key Region-Specific Dynamics
    • 9.6.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Management Strategy
    • 9.6.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User

10. Competitive Landscape

  • 10.1. Competitive Scenario
  • 10.2. Market Positioning/Share Analysis
  • 10.3. Mergers and Acquisitions Analysis

11. Company Profiles

  • 11.1. Toyota Motor Corporation*
    • 11.1.1. Company Overview
    • 11.1.2. Product Portfolio and Description
    • 11.1.3. Financial Overview
    • 11.1.4. Recent Developments
  • 11.2. Honda Motor Co., Ltd.
  • 11.3. Ford Motor Company
  • 11.4. General Motors Company
  • 11.5. Hyundai Motor Group
  • 11.6. Nissan Motor Co., Ltd.
  • 11.7. BMW Group
  • 11.8. Volkswagen Group
  • 11.9. Tesla Inc.
  • 11.10. Daimler AG

LIST NOT EXHAUSTIVE

12. Appendix

  • 12.1. About Us and Services
  • 12.2. Contact Us