小客車的預測性和預防性維護:概述
市場調查報告書
商品編碼
1383288

小客車的預測性和預防性維護:概述

Predictive and Preventive Maintenance in Passenger Vehicles-An Overview

出版日期: | 出版商: Frost & Sullivan | 英文 72 Pages | 商品交期: 最快1-2個工作天內

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簡介目錄

CASE 車輛的變革性大趨勢推動了對綜合預防性維護的需求

在過去的年度中,歐洲和北美的小客車維護已從傳統的被動方法轉變為主動方法,重點是預測性和預防性解決方案。這項變更主要是由於車輛中擴大採用連接功能。連網車輛可以將車輛資料即時傳輸到診斷設備和雲端平台,以預測組件行為、執行故障分析,並向汽車和客戶傳達相應的見解以進行維護和服務。預防性維護解決方案的需求因其預防嚴重故障、減少車輛停機時間、提高安全性和延長零件壽命的能力而凸顯。該研究確定了該行業的成長動力和抑制因素。它還強調了該行業變革中出現的機會,可供市場相關人員和相關人員利用。基準年為2022年,預測期間為2023年至2030年。

主要問題

  • 小客車的預防性維護是如何發展的?
  • 故障預測的有效性如何? OEM、一級供應商和解決方案提供者等相關人員的用例是什麼?
  • 不同的預防性維護提供者提供哪些解決方案?每個業務策略是什麼?
  • 故障預測解決方案提供者的成長機會有哪些?你應該採取什麼策略?

目錄

戰略衝動

  • 為什麼成長如此困難?
  • The Strategic Imperative 8(TM)
  • 關鍵策略激勵措施對預防性維護產業的影響
  • 成長機會推動Growth Pipeline Engine(TM)

成長機會分析

  • 調查範圍
  • 小客車維修市場區隔概況
  • 主要競爭
  • 連網汽車成長指標
  • 生長促進因子
  • 成長抑制因素
  • 預測假設
  • 按地區分類的連網汽​​車銷售
  • 按地區分類的連網汽​​車普及
  • 2023 年區域分析:北美
  • 2023 年區域分析:歐洲
  • 故障預測解決方案的封裝和定價策略
  • 競爭環境

小客車維護:概述

  • 定義
  • 被動式與主動式車輛維修比較
  • 從車輛維護到故障預測的演變
  • 傳統和反應性維護生態系統
  • 主動預防性維護生態系統

小客車預防性維護

  • CASE 行動預防性維護
  • 車輛健康監測與預防性維修資料來源

法規概述和標準

  • 連網車輛法規與值得關注的義務:簡介
  • SAE International 的 IVHM 能力矩陣分類
  • 根據 SAE International 的 IVHM 能力水準

預防性維護解決方案:概述

  • 預防性維護生態系統
  • 博世的連網汽車故障預測
  • HARMAN/proteanTecs 的預測性維護/預防性維護解決方案
  • 使用 RUL 方法透過 KPIT 進行預測性維護
  • Garett 的連網汽車進階診斷和故障預測
  • 用例 1:使用故障預測的智慧型輪胎資產管理
  • 用例 2:電動車電池管理中的預測性維護
  • 領先解決方案提供者的預防性維護見解

預防性維護:業務概述

  • 汽車預防性維護解決方案提供者使用的商業模式
  • 預防性維護相關人員分析
  • 汽車預防性維修的SWOT分析
  • 採用預防性維修的挑戰

OEM預防性維修解決方案

  • BMW 預防性維修見解
  • 其他OEM提供的維護和健康見解

成長機會宇宙

  • 成長機會一:車聯網服務
  • 成長機會2:資料收益
  • 成長機會3:CASE Mobility
  • 結論

下一步

簡介目錄
Product Code: PF3C-46

Transformative Mega Trends in CASE Vehicles Fuel the Need for Integrated Preventive Maintenance

Passenger vehicle maintenance in Europe and North America has witnessed a transformative shift in the last decade from a traditional reactive approach to one that is proactive, focusing on predictive and preventive solutions. This shift can largely be attributed to the increased adoption of connectivity features in vehicles. Connected vehicles can transfer real-time vehicle data to diagnostic devices or a cloud platform for predicting component behavior, conducting failure analyses, and communicating corresponding insights back to the car or customer for maintenance or service action. The need for preventive maintenance solutions is underscored by their capacity to prevent critical failures, reduce vehicle downtime, enhance safety, and extend component lifetime. This study identifies the factors driving and restraining growth in this space. It also highlights the opportunities emerging from the changes in this industry for market players and stakeholders to leverage. The base year is 2022, and the forecast period is from 2023 to 2030.

Key Issues Addressed

  • How has passenger vehicle preventive maintenance evolved over the years?
  • What are the effects of prognostics? What are some of the use cases for stakeholders such as original equipment manufacturers (OEMs), tier suppliers, and solution providers?
  • What solutions do different preventive maintenance providers offer? What are their business strategies?
  • What are the growth opportunities available for prognostic solution providers? What are the strategies they must adopt?

Table of Contents

Strategic Imperatives

  • Why is it Increasingly Difficult to Grow?
  • The Strategic Imperative 8™
  • The Impact of the Top 3 Strategic Imperatives on the Preventive Maintenance Industry
  • Growth Opportunities Fuel the Growth Pipeline Engine™

Growth Opportunity Analysis

  • Research Scope
  • Overview of Passenger Vehicle Maintenance Market Segmentation
  • Key Competitors
  • Growth Metrics for Connected Vehicles
  • Growth Drivers
  • Growth Restraints
  • Forecast Assumptions
  • Connected Vehicle Sales by Regions
  • Connected Vehicle Penetration by Region
  • 2023 Regional Analysis-NA
  • 2023 Regional Analysis-Europe
  • Prognostics Solutions' Packaging and Pricing Strategy
  • Competitive Environment

Passenger Vehicle Maintenance-Overview

  • Definitions
  • Comparison of Reactive and Proactive Vehicle Maintenance
  • Evolution of Vehicle Maintenance to Prognostics
  • Traditional Reactive Maintenance Ecosystem
  • Proactive Preventive Maintenance Ecosystem

Passenger Vehicle Preventive Maintenance

  • Preventive Maintenance for CASE Mobility
  • Data Sources for Vehicle Health Monitoring and Preventive Maintenance

Regulatory Overview and Standards

  • Notable Connected Vehicle Regulations and Mandates-A Snapshot
  • SAE International's Categorization of IVHM Capability Matrix
  • SAE International's Capability Levels for IVHM

Preventive Maintenance Solutions-Overview

  • Preventive Maintenance Ecosystem
  • Bosch Prognostics for Connected Cars
  • HARMAN and proteanTecs Solution for Predictive and Preventive Maintenance
  • KPIT Predictive Maintenance Using RUL Methodology
  • Garett's Advanced Diagnostics and Prognostics for Connected Cars
  • Use Case 1-Intelligent Tire Asset Management Using Prognostics
  • Use Case 2-Predictive Maintenance for Battery Management in EVs
  • Preventive Maintenance Insights From Select Solution Providers

Preventive Maintenance-Business Overview

  • Business Models that Vehicle Preventive Maintenance Solution Providers Have Adopted
  • Preventive Maintenance Stakeholder Analysis
  • SWOT Analysis for Preventive Vehicle Maintenance
  • Challenges in Adopting Preventive Maintenance

OEMs' Preventive Maintenance Solutions

  • BMW Preventive Maintenance Insights
  • Maintenance and Health Insights offered by Other OEMs

Growth Opportunity Universe

  • Growth Opportunity 1-Connected Vehicle Services
  • Growth Opportunity 2-Data Monetization
  • Growth Opportunity 3-CASE Mobility
  • The Last Word

Next Steps

  • Your Next Steps
  • Why Frost, Why Now?
  • List of Exhibits
  • Legal Disclaimer