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5G技術改變汽車行業:用例的戰略分析

Strategic Analysis of 5G Technology and Use Cases Transforming the Automotive Industry

出版商 Frost & Sullivan 商品編碼 1001173
出版日期 內容資訊 英文 97 Pages
商品交期: 最快1-2個工作天內
價格
5G技術改變汽車行業:用例的戰略分析 Strategic Analysis of 5G Technology and Use Cases Transforming the Automotive Industry
出版日期: 2021年04月01日內容資訊: 英文 97 Pages
簡介

一旦自動駕駛汽車開始在道路上行駛,5G技術將成為汽車行業非常重要的技術。 5G還為V2V(車對車)和V2X(車對所有)連接提供了巨大潛力。此外,5G的低延遲將提高未來道路上自動駕駛汽車的安全性和可靠性。

本報告調查了5G技術在全球汽車行業中的使用情況,概述了5G技術,分析了各種影響市場增長的因素,主要5G解決方案,應用,用例,OEM策略和汽車製造商。商業模式,主要供應商分析,成功戰略和增長機會分析等。

戰略要求

  • 為什麼增長困難
  • 戰略要務8(TM)
  • 前三大戰略要點對市場的影響
  • 促進增長管道引擎(TM)的增長機會

增長機會分析:汽車5G市場

  • 主要調查結果
  • 調查範圍
  • 市場分類
  • 主要公司
  • 主要增長指標
  • 用例
  • 潛在用途
  • 響應度:按地區
  • 預測性前提
  • 增長動力
  • 生長抑製劑
  • Telematics嵌入式互聯汽車預測
  • 3G/4G/5G聯網汽車的普及
  • 帶5GTCU的聯網汽車:場景分析

5G技術概述

  • 蜂窩網絡的演進
  • 5G技術:概述
  • 帶寬分配類型
  • 4G和5G之間的主要區別
  • 5G核心網絡架構:概述
  • 5G核心網絡架構:主要定義
  • 5G主要支柱和用例的分類
  • 4G/5G網絡覆蓋範圍:熱圖
  • 區域亮點:許可的5G頻段覆蓋率分析

市場概況/趨勢分析

  • 5G汽車價值鏈生態系統
  • 5G汽車生態系統入門運營商
  • 汽車5G連接
  • 汽車5G:概述
  • 5G標準的演進:3GPP
  • 實施5G連接的主要OEM策略
  • 影響市場的主要趨勢
  • 5G用於V2V/V2X通信
  • 5GAA:5G V2X用例/路線圖
  • C-V2X測試試用
  • 重要V2X應用程序的未許可帶寬
  • 促進C.A.S.E的5G邊緣計算
  • 5G邊緣計算挑戰/行業計劃
  • 擴展汽車5G聯盟
  • MNO/MNVO聯盟增加
  • 5G MNO/MVNO:商業模式比較
  • 汽車5G:按地區劃分的對應關係

用例分析

  • 5G下載/上傳速度
  • 5G關鍵用例:汽車行業的增長潛力
  • 5G在V2V交互中
  • 軟銀:5G卡車排
  • V2X服務/用例:對於C-ITS
  • C-V2X □ 5G的流量管理
  • 高清映射/RTTI中的5G
  • 5G用於AV數據管理

OBU供應商,MNO和一級供應商的比較分析

總論/未來前景

增長機會的領域

  • 增長機會:5G連接以提升高級V2X安全性
  • 增長機會:基於5G的邊緣計算促進MNO貨幣化機會
  • 增長機會:具有OEM 5G連接的數字座艙

下一步

目錄
Product Code: K559-46

Automakers will Implement 5G to Remain Competitive; Mature Regulations and NR Infrastructure Availability will be Critical for Advanced 5G C-V2X Deployments in the Future

This research study aims to provide an overview of 5G solutions, key use cases, and applications adopted in the automotive industry. The study focuses on the strategies adopted by original equipment manufacturers, the business models used by them, and key vendors analysis. 5G technology will be critical for the automotive industry particularly when higher levels of autonomous vehicles penetrate the roads. The current 4G network is simply not fast enough to give autonomous vehicles human-like reflexes and cooperative driving capabilities in the future. Driverless cars are just one of the many incredible technologies that are likely to be ushered in with 5G. 5G will also present exciting possibilities for Vehicle-to-vehicle (V2V) and Vehicle-to-everything (V2X) connectivity. Furthermore, the technology's low latency will make future autonomous vehicles extraordinarily safe and reliable on roads. This study will explore the different use cases that will require high-speed, low-latency 5G connectivity in the auto industry in the future and market potential for 5G in the industry.

Initially, 5G will be used for HD media streaming and advanced connected services capabilities in vehicles. The automotive industry will pilot edge computing, V2V coordinated driving, automated lane change, automated lane merge, automated overtaking, and teleoperated driving use cases using 5G from 2022. 5G today is very nascent and is being deployed on Non-Standalone (NSA) cellular towers for immediate implementation across industries. The current 5G download and upload speeds through NSA are not sufficient to perform ultra-reliable and low-latency use cases in autonomous vehicles. 5G NR infrastructure will be able to provide the promised 5G data speeds and latency. However, 5G NR will depend on 3GPP's Release 16 and 17 guidelines, and MNOs are currently mitigating legal, operational, and environmental issues and challenges to construct NR base stations. It will take another 4-to-5 years to see global placements of 5G NR cell-towers and base stations. Consortiums' (e.g., 5GAA) push for 5G for V2X services is the biggest 5G influencer for the automotive industry. 5G safety-based V2X use cases will largely depend on future regulations, intense R&D testing, and infrastructure availability and are expected to see commercialization in the industry after 2025.

Some of the growth opportunities identified in this study explained below.

  • 1. Running of L4 vehicles individually does not require 5G network connectivity. However, safe driving of two or more L4 vehicles on highways and roads will require 5G NR infrastructure to transmit data regularly between L4 vehicles and aid in safe driving coordination.
  • 2. Effective use of edge cloud as well as 5G NR infrastructure will support the futuristic deployment of C-V2X services and smart city and traffic relevant use cases.
  • 3. mmWave bands will be critical for advanced 5G use case testing and deployments in the future. However, they are not utilized much by MNOs due to low signal coverage issues.

Table of Contents

Strategic Imperatives

  • Why Is It Increasingly Difficult to Grow?
  • The Strategic Imperative 8™
  • The Impact of the Top Three Strategic Imperatives 8™ on the Automotive 5G Industry
  • Growth Opportunities Fuel the Growth Pipeline Engine™

Growth Opportunity Analysis

  • Automotive 5G Market-Key Findings
  • Automotive 5G Market-Scope Analysis
  • Automotive 5G Market Segmentation
  • Key Competitors in the Automotive 5G Market
  • Key Growth Metrics for the Automotive 5G Market
  • Overview of Automotive 5G Use Cases
  • Potential 5G Applications in Automotive Industry
  • Automotive 5G Regional Readiness
  • Forecast Assumptions-Automotive 5G Market
  • Growth Drivers for Automotive 5G Market
  • Growth Restraints for Automotive 5G Market
  • Connected Cars With Embedded Telematics-Forecast to 2030
  • 3G, 4G, and 5G Connected Cars Penetration (Likely Scenario)
  • Connected Cars With 5G TCUs-Bullish Scenario
  • Connected Cars With 5G TCUs-Likely Scenario
  • Connected Cars With 5G TCUs-Bearish Scenario
  • Analysis of 5G Growth Factors in Different Scenarios
  • Analysis of 5G Growth Factors in Different Scenarios (continued)

Introduction to 5G Technology

  • Cellular Network Evolution
  • 5G Technology-Overview
  • 5G-Types of Spectrum Allocation
  • 4G Versus 5G Key Differences
  • 5G Core Network Architecture-Overview
  • 5G Core Network Architecture-Key Definitions
  • 5G Key Pillars and Use Case Categorization
  • Heatmap of 4G Versus 5G Network Coverage-Global
  • Regional Highlights-Licensed 5G Bands and Coverage Analysis
  • Regional Highlights-Licensed 5G Bands and Coverage Analysis (continued)

5G Automotive-Market Overview and Trends Analysis

  • 5G Automotive Value Chain and Ecosystem
  • 5G Automotive Ecosystem Participants-Overview
  • 5G Connectivity in Vehicles
  • 5G in Automotive-Overview
  • 5G Standards Evolution by 3GPP
  • Key OEM Strategies to Implement 5G Connectivity
  • Key Trends Impacting the Automotive 5G Market
  • 5G for V2V and V2X Communications
  • 5GAA-Roadmap of 5G V2X Use Cases
  • Global C-V2X Test and Trials
  • Unlicensed Spectrum for Critical V2X Applications
  • 5G Edge Computing to Drive C.A.S.E
  • 5G Edge Computing Challenges and Industry Initiatives
  • Increasing Automotive 5G Partnerships
  • Increasing Automotive 5G Partnerships (continued)
  • MNO and MNVOs Partnerships will Increase in future
  • Comparison of 5G MNO and MVNO Business Models
  • Automotive 5G-Regional Readiness
  • Automotive 5G-Regional Readiness (continued)
  • Automotive 5G-Regional Readiness (continued)

5G Automotive-Use Case Analysis

  • Global 5G Download and Upload Speeds-Automotive Use
  • Top 5G Use Cases-Growth Potential in the Auto Industry
  • 5G in V2V Interactions
  • Softbank-5G Truck Platooning
  • V2X Services and Use Cases-For C-ITS
  • 5G in C-V2X and Traffic Management
  • 5G in HD Mapping and RTTI
  • 5G for AV Data Management

5G Automotive-OBU Suppliers, MNOs, and Tier-1 Supplier Analysis

  • OBU Suppliers-Comparative Analysis
  • OBU Suppliers-Comparative Analysis (continued)
  • Telecom Operators-Comparative Analysis (US and China)
  • Telecom Operators-Comparative Analysis (Europe)
  • Telecom Operators-Comparative Analysis (Japan, South Korea, Canada, and Australia)
  • 5G Infrastructure Providers-Comparative Analysis
  • Automotive Tier-1 Suppliers-Comparative Analysis

Conclusions and Future Outlook

  • Key Future Scenarios of Automotive 5G
  • 5G in Automotive-What are Challenges Ahead?
  • Key Conclusions and Future Outlook

Growth Opportunity Universe

  • Growth Opportunity 1: 5G Connectivity to Push Advanced V2X Safety Use Cases in Vehicles
  • Growth Opportunity 1: 5G Connectivity to Push Advanced V2X Safety Use Cases in Vehicles, 2020 (continued)
  • Growth Opportunity 2: 5G-based Edge Computing to Drive Monetization Opportunities for MNOs
  • Growth Opportunity 2: 5G-based Edge Computing to Drive Monetization Opportunities for MNOs (continued)
  • Growth Opportunity 3: Digital Cockpits With 5G Connectivity to be Launched by OEMs
  • Growth Opportunity 3: Digital Cockpits With 5G Connectivity to be Launched by OEMs (continued)

Next Steps

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