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市場調査レポート
商品コード
1385052
SDV(Software Defined Vehicle)の世界市場規模、シェア、産業動向分析レポート:提供別、アプリケーション別、車両タイプ別、地域別展望と予測、2023年~2030年Global Software-defined Vehicle Market Size, Share & Industry Trends Analysis Report By Offering (Hardware, Software, and Services), By Application, By Vehicle Type (ICE, BEV, and HEV/PHEV), By Regional Outlook and Forecast, 2023 - 2030 |
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SDV(Software Defined Vehicle)の世界市場規模、シェア、産業動向分析レポート:提供別、アプリケーション別、車両タイプ別、地域別展望と予測、2023年~2030年 |
出版日: 2023年10月31日
発行: KBV Research
ページ情報: 英文 281 Pages
納期: 即納可能
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SDV(Software Defined Vehicle)市場規模は2030年までに5,104億米ドルに達し、予測期間中にCAGR 10.5%の市場成長率で上昇すると予測されています。
KBV Cardinalマトリックスに掲載された分析によると、Harman International Industries, Inc.2023年1月、ハーマン・インターナショナル・インダストリーズは、イタリアのマラネッロに本拠を置くイタリアの高級スポーツカーメーカー、フェラーリと提携しました。この提携により、フェラーリはハーマンインターナショナルインダストリーズの協力を得て、次世代の車内体験を市場に提供することに注力します。フォルクスワーゲンAG、テスラ、エヌビディア・コーポレーションなどの企業は、この市場における主要なイノベーターです。
市場成長要因
自律走行技術の拡大
自律走行車の開発は、知覚、意思決定、制御のための広範なソフトウェアシステムに依存しています。SDVは自律走行開発の基本プラットフォームです。意思決定、経路計画、物体認識には、人工知能と高度な機械学習アルゴリズムが使用されます。GPSや慣性ナビゲーション・システムを含む高精細マップと正確な位置特定技術は、自律走行車が環境との相対的な位置を理解するのに役立ちます。これらのマップは、精度を高めるためにリアルタイムのセンサーデータと組み合わされることが多いです。自律走行技術の増加は市場の拡大に寄与しています。
電気自動車とハイブリッド車の採用増加
電気パワートレインはソフトウェアに大きく依存しています。ソフトウェアが電気モーターの性能を制御し、加速やスムーズな操作のために瞬時にトルクを供給します。EVには多くの場合、走行状況に応じて航続可能距離に関する情報を提供するユーザーインターフェイスが搭載されています。ソフトウェアはこれらの航続距離予測を継続的に計算し、更新します。このコネクティビティにより、充電ステーションの検索、充電枠の予約、充電状況のモニタリングなどの機能が可能になります。電気自動車やハイブリッド車のテレマティクスシステムは、バッテリーの状態、充電オプション、エネルギー消費に関するデータをリアルタイムで提供します。この情報は、 促進要因や車両管理者にとって貴重なものです。電気自動車とハイブリッド車産業の拡大が市場を拡大しています。
市場抑制要因
複雑性と相互運用性の問題
現代の自動車、特に自律走行車や高度に自動化された自動車は、複雑なソフトウェアシステムに依存しています。この複雑さを管理・維持することは、複数のソフトウェア層やコンポーネントを含む難しい課題です。複雑なソフトウェアシステムの安全性を確保することは重要な課題です。開発者は、システムの不具合やエラーのリスクを最小限に抑えるため、ソフトウェアのテストと検証を厳密に行います。SDVから生成される膨大なデータの取り扱いは複雑です。効率的なデータの保存、処理、分析が必要であり、既存のインフラに負担をかける可能性があります。インフォテインメント、コネクティビティ、自律走行、パワートレイン管理など、さまざまな車両システムをシームレスかつ調和的に統合することは、関係する技術が多様であるため複雑です。複雑さと相互運用性の問題は、市場の成長を鈍らせる重大な課題です。
提供の展望
提供によって、市場はハードウェア、ソフトウェア、サービスに分類されます。2022年には、ハードウェア・セグメントが市場で最も高い収益シェアを占めました。高度なマイクロプロセッサーと制御ユニットがSDVの頭脳です。これらのハードウェアコンポーネントは、センサーによって収集された膨大な量のデータを処理し、リアルタイムの意思決定を行う役割を担っています。多くの場合マルチコアを備えた高性能プロセッサは、物体認識や経路計画などのタスクのための複雑なアルゴリズムを実行するために使用されます。コネクティビティは、SDVの基本的な側面です。セルラー、Wi-Fi、V2X(Vehicle-to-Everything)通信用のハードウェアモジュールは、車両、インフラ、クラウド間のデータ交換を可能にします。これらのモジュールは、リモートソフトウェア更新、データ共有、車両間通信をサポートし、安全性と交通管理を強化します。
アプリケーションの展望
市場はアプリケーション別に、パワートレイン・シャシー、ADAS/HAD、ボディ・エネルギー、インフォテインメント、コネクティビティ・セキュリティに区分されます。パワートレイン・シャシーセグメントは、2022年の市場で顕著な収益シェアを記録しました。パワートレイン・シャシーアプリケーションは、ソフトウェアを活用して車両のエネルギー使用と機械システムを最適化します。これには、ハイブリッド車や電気自動車の電力配分を管理して効率を最適化したり、回生ブレーキでエネルギーを回収したりすることが含まれます。パワートレインアプリケーションは、電動化とハイブリッド化の採用を促進します。
車両タイプの展望
車両タイプに基づき、市場は内燃機関車、BEV、HEV/PHEVに分類されます。HEV/PHEVセグメントは、2022年の市場で大きな収益シェアを獲得しました。HEVとPHEVは、従来の内燃エンジン(ICE)と電気推進システムを組み合わせたものです。電力を統合することで、これらの車両はより効率的に動作し、燃料消費と排出を削減することができます。SDVの場合、パワートレインの性能を最適化し、電気のみで走行する範囲を拡大するためには、効率性が不可欠です。HEVとPHEVは、ブレーキと減速時にエネルギーを回収して蓄える回生ブレーキシステムを備えています。このエネルギーはその後、車両のバッテリーを充電するために使用されます。回生ブレーキシステムは、SDVのエネルギー効率に不可欠な要素です。
地域別展望
地域別に見ると、市場は北米、欧州、アジア太平洋、LAMEAで分析されます。2022年には、アジア太平洋地域が最も高い収益シェアを獲得して市場をリードしました。アジア太平洋地域はEVの普及で世界をリードしており、中国が最大のEV部門となっています。アジア太平洋地域の多くの新興企業は、モビリティ・ソリューションとSDV技術の開発に注力しています。この地域の多くの都市がスマートシティのコンセプトを採用し、ソフトウェア定義のモビリティソリューションの統合が進んでいます。
The Global Software-defined Vehicle Market size is expected to reach $510.4 billion by 2030, rising at a market growth of 10.5% CAGR during the forecast period.
Powertrain & chassis applications utilize software to optimize the vehicle's energy usage and mechanical systems. Thus, the powertrain & chassis segment acquired $50,020.0 million in 2022. This can involve managing the power distribution in hybrid and electric vehicles for optimal efficiency and energy recovery through regenerative braking. Powertrain applications drive the adoption of electrification and hybridization. Electric powertrains and hybrid systems rely on software to manage the integration of electric motors with traditional internal combustion engines, optimizing energy usage and delivering improved fuel economy. Chassis and powertrain applications enable real-time monitoring and diagnostics of key vehicle components. Chassis applications use software to control torque vectoring and stability systems. These features enhance vehicle stability and handling in various driving conditions, improving safety and performance.
The major strategies followed by the market participants are Partnerships & Collaborations as the key developmental strategy to keep pace with the changing demands of end users. For instance, In September, 2023, Continental AG came into partnership with Google Cloud to develop an innovative lineup of automotive solutions that prioritize safety, efficiency, and user-centric features. alongside a set of management tools. Additionally, In August, 2023, Aptiv PLC came into partnership with Horizon Robotics to revolutionize China's automotive industry by leveraging its distinctive expertise, ultimately offering Chinese drivers and passengers a safer, more convenient, and enjoyable travel experience.
Based on the Analysis presented in the KBV Cardinal matrix; Harman International Industries, Inc. is the forerunners in the Market. In January, 2023, Harman International Industries came into partnership with Ferrari, an Italian luxury sports car manufacturer based in Maranello, Italy. Through this partnership, Ferrari would focus on bringing the next generation of in-cabin experiences to market with the help of Harman International Industries. Companies such as Volkswagen AG, Tesla, Inc., NVIDIA Corporation are some of the key innovators in the Market.
Market Growth Factors
Expansion of autonomous driving technologies
The development of autonomous vehicles relies on extensive software systems for perception, decision-making, and control. SDVs are a fundamental platform for autonomous driving development. Artificial intelligence and sophisticated machine learning algorithms are used for decision-making, path planning, and object recognition. High-definition maps and precise localization technologies, including GPS and inertial navigation systems, help autonomous vehicles understand their position relative to their environment. These maps are often combined with real-time sensor data for accuracy. The increasing number of autonomous driving technologies contributes to expanding the market.
Increasing adoption of electric and hybrid vehicles
Electric powertrains are highly software dependent. Software controls the electric motor's performance, delivering instant torque for acceleration and smooth operation. EVs often include user interfaces that provide information about the vehicle's range based on driving conditions. The software continuously calculates and updates these range predictions. This connectivity enables features like finding charging stations, reserving charging slots, and monitoring charging progress. Telematics systems in electric and hybrid vehicles provide real-time data on battery status, charging options, and energy consumption. This information is valuable for drivers and fleet managers. The expansion of the electric and hybrid vehicle industry is increasing the market.
Market Restraining Factors
Complexity and interoperability issues
Modern vehicles, especially autonomous or highly automated ones, rely on intricate software systems. Managing and maintaining this complexity can be challenging, involving multiple software layers and components. Ensuring the safety of complex software systems is a critical challenge. Developers rigorously test and validate software to minimize the risk of system failures or errors. Handling the vast amount of data generated by software-defined vehicles is complex. Efficient data storage, processing, and analysis are necessary, which can strain existing infrastructure. Integrating various vehicle systems, such as infotainment, connectivity, autonomous driving, and powertrain management, seamlessly and harmoniously is complex due to the diversity of technologies involved. Complexity and interoperability issues are significant challenges that can slow down the market growth.
Offering Outlook
By offering, the market is categorized into hardware, software, and services. In 2022, the hardware segment held the highest revenue share in the market. Advanced microprocessors and control units are the brains behind SDVs. These hardware components are responsible for processing the vast amount of data collected by sensors and making real-time decisions. High-performance processors, often with multiple cores, are used to run complex algorithms for tasks like object recognition and path planning. Connectivity is a fundamental aspect of software-defined vehicles. Hardware modules for cellular, Wi-Fi, and V2X (vehicle-to-everything) communication enable data exchange between vehicles, infrastructure, and the cloud. These modules support remote software updates, data sharing, and vehicle-to-vehicle communication for enhanced safety and traffic management.
Application Outlook
By application, the market is segmented into powertrain & chassis, ADAS/HAD, body & energy, infotainment, and connectivity & security. The powertrain & chassis segment recorded a remarkable revenue share in the market in 2022. Powertrain & chassis applications utilize software to optimize the vehicle's energy usage and mechanical systems. This can involve managing the power distribution in hybrid and electric vehicles for optimal efficiency and energy recovery through regenerative braking. Powertrain applications drive the adoption of electrification and hybridization.
Vehicle Type Outlook
Based on vehicle type, the market is classified into ICE, BEV, and HEV/PHEV. The HEV/PHEV segment acquired a substantial revenue share in the market in 2022. HEVs and PHEVs combine traditional internal combustion engines (ICE) with electric propulsion systems. Integrating electric power allows these vehicles to operate more efficiently, reducing fuel consumption and emissions. In the context of SDVs, efficiency is essential for optimizing powertrain performance and extending the range of electric-only driving. HEVs and PHEVs feature regenerative braking systems that capture and store energy during braking and deceleration. This energy is subsequently used to recharge the vehicle's battery. Regenerative braking systems are an essential part of energy efficiency in SDVs.
Regional Outlook
Region-wise, the market is analysed across North America, Europe, Asia Pacific, and LAMEA. In 2022, the Asia Pacific region led the market by generating the highest revenue share. The Asia Pacific region is leading the world in the adoption of EVs, with China being the largest EV sector. Many startups in the Asia Pacific region focus on developing mobility solutions and SDV technologies. Many cities in the region embraced smart city concepts, leading to the integration of software-defined mobility solutions.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Robert Bosch GmbH, Continental AG, Valeo SA, Aptiv PLC, Marelli Holdings Co., Ltd., Tesla, Inc., NVIDIA Corporation, Volkswagen AG, Harman International Industries, Inc. (Samsung Electronics Co., Ltd), BlackBerry Limited, Medtronic PLC
Recent Strategies Deployed in Software-defined Vehicle Market
Mergers & Acquisition:
Oct-2023: Continental AG acquired KINEXON, a Technology, Information, and Internet company in Germany. Through this acquisition, Continental AG would be expanding its worldwide development team and reinforcing their proficiency in mobile robotics systems.
Dec-2022: Aptiv PLC acquired Intercable Automotive Solutions, a Plastics Manufacturing company in Brunico/South Tyrol. Through this acquisition, Intercable Automotive Solutions will bolster Aptiv's standing as a worldwide frontrunner in vehicle architecture systems.
Feb-2022: Harman International Industries took over Apostera, a Germany-based automotive technology company. Through this acquisition, Harman International Industries would enhance the range of automotive products and establish the company as a leader in designing automotive augmented reality/mixed reality experiences.
Partnerships, Collaborations & Agreements:
Sep-2023: Continental AG came into partnership with Google Cloud, a suite of cloud computing services that provides a series of modular cloud services including computing, data storage, data analytics, and machine learning. This partnership would enhance Continental's proficiency in automotive technology with Google's data and AI capabilities, aiming to develop an innovative lineup of automotive solutions that prioritize safety, efficiency, and user-centric features. alongside a set of management tools.
Aug-2023: Aptiv PLC came into partnership with Horizon Robotics, a Motor Vehicle Manufacturing company in China. Through this partnership, Aptiv PLC would intend to revolutionize China's automotive industry by leveraging its distinctive expertise, ultimately offering Chinese drivers and passengers a safer, more convenient, and enjoyable travel experience.
May-2023: Valeo SA came into partnership with Renault Group, a French multinational automobile manufacturing company. Through this partnership, Valeo SA would streamline the development process and cut down on expenses related to electrical and electronic architecture, all the while prioritizing high performance, compatibility, and safety.
May-2023: NVIDIA Corporation came into partnership with MediaTek, a Taiwanese fabless semiconductor company that provides chips for wireless communications, high-definition television, and handheld mobile devices. This partnership will offer the automotive sector increased adaptability and ease, enabling the delivery of highly inclusive solutions in terms of both features and extent.
Mar-2023: NVIDIA Corporation came into partnership with BYD, a publicly listed Chinese conglomerate manufacturing company headquartered in Shenzhen, Guangdong, China. Through this partnership, BYD would extend the utilization of DRIVE Orin through an enhanced partnership across multiple models in its forthcoming Dynasty and Ocean series of vehicles, with the aim of introducing safe and intelligent vehicles to the market.
Jan-2023: Valeo SA came into partnership with C2A Security, a Computer and Network Security company in Israel. Through this partnership, Valeo SA would be able to bolster its product cybersecurity management, providing an additional level of assurance to Valeo's clients and transforming cybersecurity into a genuine driver of business success.
Jan-2023: Marelli Holdings Co., Ltd. came into collaboration with Sibros, a software development company in San Jose, California. Through this collaboration, both the companies would develop some new and innovative solutions to unleash a diverse array of fresh customer advantages through a unified platform.
Jan-2023: Harman International Industries came into partnership with Ferrari, an Italian luxury sports car manufacturer based in Maranello, Italy. Through this partnership, Ferrari would focus on bringing the next generation of in-cabin experiences to market with the help of Harman International Industries. Additionally, Ferrari intends to utilize HARMAN's Ready Upgrade hardware and software solutions to efficiently and affordably introduce fully customizable consumer electronics-grade experiences in all their vehicle models.
Sep-2022: BlackBerry Limited came into partnership with L-SPARK Accelerator, a Canadian tech accelerator that specializes in helping early-stage B2B SaaS companies grow and succeed. Through this partnership, both companies would work together to develop Vehicles and IoT devices that can be more reliable, secure, and scalable, ensuring greater safety.
Feb-2022: Robert Bosch GmbH came into partnership with Microsoft Corporation, an American multinational technology corporation headquartered in Redmond, Washington. Through this partnership, Bosch would streamline and expedite the creation and implementation of software for vehicles, ensuring that it will comply with the established standards for automotive quality across the entire lifespan of the vehicle.
Apr-2020: Marelli Holdings Co., Ltd. came into partnership with Transphorm Inc., a semiconductor company focused on producing transistors made from gallium nitride for use in switched-mode power supplies. Through this partnership, Marelli and Transphorm were engaged in the sharing of expertise and information to develop innovative power conversion solutions for the automotive and electric vehicle (EV) industry.
Market Segments covered in the Report:
By Offering
By Application
By Vehicle Type
By Geography
Companies Profiled
Unique Offerings from KBV Research