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市場調查報告書
商品編碼
1630569

全球非公路電動與自動改裝市場:2024-2035

Off-highway Electric and Autonomous Retrofit Market, Global, 2024-2035

出版日期: | 出版商: Frost & Sullivan | 英文 83 Pages | 商品交期: 最快1-2個工作天內

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簡介目錄

由於易於安裝和新的經營模式,非公路 (OHW)改裝解決方案正在推動轉型成長

非公路 (OHW) 產業始終依靠改裝解決方案來延長設備生命週期、滿足排放標準並提高營運效率。在過去的十年中,OHW改裝解決方案取得了多項進展。新零售設備的成本正在上升,對於提供特定應用修改的新興企業來說,進入障礙正在崩潰。層級公司與新興企業之間的合作將電池電動式改造解決方案推向市場,使營運商能夠將傳統的 OHW 機器改造為零排放設備。

這催生了為建築、採礦和農業應用提供混合動力、電池電動和氫燃料電池電動改造解決方案的新興企業。儘管市場仍處於起步階段,但脫碳舉措預計將在中短期內推動電力改造的顯著成長。自 2015 年以來,隨著新興企業與OEM、承包商和主要行業相關人員合作,自動駕駛改裝越來越受到關注。雷射雷達系統供應商和軟體平台提供者之間的合作使建設公司和農民能夠在傳統設備上試用自主套件。處理極端負載、24/7 連續運轉和安全的能力推動了 OHW 設備自主技術的發展。該領域的自動化速度比公路領域更快,這主要是由於採礦、建築和農業的標準化且通常孤立的駕駛環境、勞動力短缺以及高昂的營業成本。

本研究分析了全球非公路電動和自動駕駛改裝市場、成長機會、夥伴關係和次趨勢。評估能夠採用改裝方案的市場偏好、政策、當地投資和標準,並了解 2030 年及以後的預期,包括生態系統動態和兩種類型改裝。

目錄

非公路電動與自動駕駛改裝市場的轉型

  • 為什麼成長如此困難?
  • The Strategic Imperative 8(TM)
  • 三個策略重點對非公路 (OHW) 電動和自動駕駛改裝市場的影響

生態系統

  • 分析範圍
  • 非公路市場細分
  • 競爭環境
  • 主要競爭對手

改裝市場概況

  • 經濟環境-GDP成長率
  • 市場概覽 – OHW改裝解決方案
  • 全球電池法規 - 概述
  • 淨零目標 - 全球簡介
  • 美國- OHW 電氣化措施與法規
  • 主要電氣化法規 - 歐洲
  • 主要電氣化法規 - 印度
  • 主要電氣化法規 - 中國
  • 主要電氣化法規 - 非洲
  • 美國自願 OHW 努力
  • 國際標準化組織 (ISO) 框架
  • 國際電工委員會 (IEC) 框架
  • 美國自主科技管理的努力
  • 美國促進特種作物生產自動化和機械化的計劃
  • 美國農業部自動化和機械化計畫資助
  • 歐洲 AV 指南
  • 歐洲機械型式核准與指令
  • 澳洲 - 自治 OHW 監管框架
  • 中國自主解決方案開發框架
  • 自主 OHW 標準和法規的製定 - 概述
  • 電動施工機械主要零件
  • 自動駕駛功能框圖
  • 自主移動裝置的機制

自主改裝市場

  • 自動駕駛解決方案-EIO(運行中的設備)
  • 自動駕駛解決方案 - 競爭格局
  • 自主 OHW 設備 - 價格概覽
  • 自主改裝-部署與經營模式分析
  • 自主改裝-重大計劃(2023)
  • 自主改裝-重大計劃(2024)
  • 自主礦山 -經營模式案例研究

電動改裝市場

  • 挖土機概要比較:柴油挖土機、混合動力挖土機、電動挖土機
  • 內燃機、混合動力、電池電動:效率視角
  • 影響電力改裝市場的關鍵因素
  • 電池和馬達尺寸 - 市場分析
  • 電力改裝:重大計劃
  • Moog Construction 和 ZQuip -案例研究

成長要素:OHW改裝市場

  • 自主 OHW改裝- 成長指標
  • 電力 OHW改裝- 成長指標
  • 成長動力-自主 OHW改裝市場
  • 限制自主OHW改裝市場成長抑制因素
  • 市場促進因素-電力 OHW改裝市場
  • 成長抑制因素- 電力 OHW改裝市場
  • 自主 OHW改裝- 預測性考慮
  • 電力改裝- 預測性考慮
  • 市場預測 - 全球在運作中自主改裝設備 (EIO) 市場
  • 市場預測 - 按地區分類的自主改裝EIO
  • 市場估計與預測 - 電動改裝EIO
  • 預測性考量 - 自主 OHW改裝
  • 預測討論 – 電力 OHW改裝
  • 基礎擴散模型

成長機會領域

  • 成長機會 1:促進協作和採用的靈活融資模式
  • 成長機會2:技術整合與經銷商的協同效應
  • 成長機會三:礦山電氣化與自動化

附錄與後續步驟

  • 成長機會的好處和影響
  • 下一步
  • 附件清單
  • 免責聲明
簡介目錄
Product Code: KB25-42

OHW Retrofit Solutions are Driving Transformational Growth Due to Ease of Installation and New Business Models

The OHW industry has always relied on retrofit solutions to prolong equipment life cycles, meet emission standards, and improve operating efficiency. During the past decade, several developments have happened in OHW retrofit solutions. The increasing cost of new retail equipment is breaking entry barriers for start-ups offering application-specific retrofits. Collaborations between Tier 1 companies and start-ups allow battery-electric retrofit solutions to enter the market, letting operators convert conventional OHW machines into zero-emission equipment.

This is giving rise to start-ups offering hybrid, battery electric, and hydrogen fuel cell electric retrofit solutions catering to construction, mining, and agricultural applications. Though the market is at a nascent stage, the push toward decarbonization initiatives will likely drive significant short to medium-term growth for electric retrofits. Autonomous retrofits have gained traction since 2015, with start-ups partnering with OEMs, contractors, and key stakeholders in the industry. Collaborations between LiDAR system providers and software platform providers have allowed construction firms and farmers to run pilots fitting conventional equipment with autonomous kits. The ability to handle extreme loads, continuous 24/7 operation, and safety will drive the development of autonomous technologies for OHW equipment. Automation will advance faster in this segment than in the on-highway space, mainly because of the standardized and often isolated mining, construction, and agricultural operating environments, labor shortages, and higher operating costs.

This study analyzes the global autonomous and electric OHW retrofit market, growth opportunities, partnerships, and sub-trends. It evaluates market favorability, policies, regional investments, and standards enabling the adoption of retrofit solutions, including ecosystem dynamics and competitive landscape for both retrofit types, to understand what to expect by 2030 and beyond.

Table of Contents

Transformation in the Off-Highway Electric and Autonomous Retrofit Market

  • Why is it Increasingly Difficult to Grow?
  • The Strategic Imperative 8™
  • The Impact of the Top 3 Strategic Imperatives on the Off-highway (OHW) Electric and Autonomous Retrofit Market

Ecosystem

  • Scope of Analysis
  • Off-highway Market Segmentation
  • Competitive Environment
  • Key Competitors

Retrofitting Market Overview

  • Economic Environment-GDP Growth
  • Market Overview-OHW Retrofit Solutions
  • Global Battery Regulations-Overview
  • Net-zero Targets-Global Snapshot
  • United States-OHW Electrification Initiatives and Regulations
  • Major Electrification Regulations-Europe
  • Major Electrification Regulations-India
  • Major Electrification Regulations-China
  • Major Electrification Regulations-RoW
  • US Autonomous OHW Initiatives
  • International Organization for Standardization (ISO) Framework
  • International Electrotechnical Commission (IEC) Framework
  • US Autonomous Technology Administrative Efforts
  • USDA Programs Promoting the Adoption of Automation and Mechanization in Specialty Crops Production
  • USDA Automation and Mechanization Program Funding
  • European Guidelines on AVs
  • European Type Approvals and Directives for Machinery
  • Australia-Autonomous OHW Regulatory Framework
  • Chinese Autonomous Solutions Development Framework
  • Autonomous OHW Standards and Regulations Development-Summary
  • Major Components of Electric Construction Equipment
  • Functional Block Diagram of Autonomous Operation
  • Autonomous Equipment Mechanism

Autonomous Retrofit Market

  • Autonomous Retrofit Solutions-Equipment in Operation (EIO)
  • Autonomous Retrofit Solutions-Competitive Landscape
  • Autonomous OHW Equipment-Pricing Overview
  • Autonomous Retrofit-Implementation and Business Model Analysis
  • Autonomous Retrofits-Key Projects, 2023
  • Autonomous Retrofits-Key Projects, 2024
  • Autonomous Mining-Business Model Case Study

Electric Retrofit Market

  • Schematic Comparison of Excavator: Diesel vs Hybrid vs Electric
  • ICE, Hybrid Electric, and Battery Electric Excavators: Efficiency Perspective
  • Key Factors Influencing the Electric Retrofit Market
  • Battery and Motor Sizing-Market Analysis
  • Electric Retrofits-Key Projects
  • Moog Construction and ZQuip-Case Study

Growth Generator: OHW Retrofitting Market

  • Autonomous OHW Retrofits-Growth Metrics
  • Electric OHW Retrofits-Growth Metrics
  • Growth Drivers-Autonomous OHW Retrofit Market
  • Growth Restraints-Autonomous OHW Retrofit Market
  • Growth Drivers-Electric OHW Retrofit Market
  • Growth Restraints-Electric OHW Retrofit Market
  • Autonomous Retrofits-Forecast Considerations
  • Electric Retrofits-Forecast Considerations
  • Market Forecasts-Global Autonomous Retrofit Equipment in Operation (EIO)
  • Market Forecasts-Regional Autonomous Retrofit EIO
  • Market Forecasts-Estimated Electric Retrofit EIO
  • Forecast Discussion-Autonomous OHW Retrofits
  • Forecast Discussion-Electric OHW Retrofits
  • Bass Diffusion Model

Growth Opportunity Universe

  • Growth Opportunity 1: Flexible Financing Models to Drive Collaboration and Adoption
  • Growth Opportunity 2: Synergies Arising from Technology Integration and Distributorship
  • Growth Opportunity 3: Mining Electrification and Automation

Appendix & Next Steps

  • Benefits and Impacts of Growth Opportunities
  • Next Steps
  • List of Exhibits
  • Legal Disclaimer