市場調查報告書
商品編碼
1489397
到 2030 年駕駛模擬器市場預測:按車輛類型、模擬器類型、應用、最終用戶和地區進行的全球分析Driving Simulator Market Forecasts to 2030 - Global Analysis By Vehicle Type (Commercial Vehicle and Passenger Car), Simulator Type (Full-Scale Simulator, Advanced Simulator and Other Simulator Types), Application, End User and By Geography |
根據 Stratistics MRC 的數據,2023 年全球駕駛模擬器市場規模將達到 18.5 億美元,預計到 2030 年將達到 30.1 億美元,預測期內複合年成長率為 7.2%。
駕駛模擬器是先進的系統,旨在在受控環境中模擬現實世界的駕駛場景。通常,電腦產生的虛擬環境顯示在螢幕或虛擬實境耳機上,以重建汽車內部,包括輪圈、踏板和儀表板。這些模擬器可用於多種目的,包括駕駛員培訓、交通中人類行為研究以及車輛設計和安全功能測試。透過提供安全且受控的環境,駕駛模擬器可讓您練習駕駛技能、評估駕駛表現並探索不同的駕駛場景,而不會遇到與真實道路相關的危險。
根據每年交通事故統計,全球有超過1.25億人死於交通事故。根據美國卡車運輸協會的研究,2014年美國卡車運輸業面臨38,000名司機短缺,預計2024年將增加至175,000人。
培訓和教育
駕駛員的培訓和教育是推動駕駛模擬器市場成長的重要力量。駕駛模擬器為學習者提供了一個安全、受控的環境來磨練他們的駕駛技能,從而降低了與傳統訓練方法相關的風險。模擬器提供模仿真實駕駛場景的身臨其境型體驗,並提高學習效率。此外,駕駛模擬器也擴大被駕駛學校、商用車和軍事訓練項目採用,推動了市場的擴張。其提供客製化培訓計劃、評估駕駛員表現和模擬不同道路條件的能力進一步增強了其在教育和培訓領域的吸引力。
特定領域限量招聘
由於行業特定的要求和偏好,在某些領域的有限採用可能會限制駕駛模擬器市場。航空、軍事、汽車等領域有嚴格的法規和特殊需求,可能會限制通用駕駛模擬器的應用。例如,航空模擬器需要忠實地再現飛行條件,而軍事模擬器則需要穩健性以及與進階訓練場景的兼容性。汽車製造商也可能更喜歡針對特定車型量身定做的內部解決方案。這些限制可能會阻礙普及和市場成長,因為駕駛模擬器提供者需要滿足不同行業的需求,以有效擴大其市場範圍。
汽車產業整合
汽車產業正處於與駕駛模擬器市場的重大整合機會的風口浪尖。駕駛模擬器提供了一個受控環境來測試和改進汽車技術,從 ADAS(高級駕駛員輔助系統)到自動駕駛汽車。透過利用這些模擬器,汽車製造商可以加快開發週期,降低與實體測試相關的成本,並增強安全通訊協定。此外,此整合還可以再現真實場景,從而可以更全面地檢驗車輛性能和駕駛員體驗。這種協同效應不僅將促進創新,還將加速向下一代行動解決方案的過渡,並最終塑造交通運輸的未來。
比賽與上車訓練
環境因素對駕駛模擬器市場構成重大威脅。隨著社會越來越重視永續性,人們越來越關注駕駛模擬器製造和營運對環境的影響。製造過程使用不可再生資源,經常產生污染。此外,駕駛模擬器的能源消耗也會造成碳排放,特別是由不可再生資源動力來源時。此外,過時模擬器的處置引起了人們對電子廢棄物管理的擔憂。為了在不斷變化的環境中取得成功,駕駛模擬器公司必須採取環保做法並利用可再生能源來源來減輕這些環境威脅。
由於物理互動和運動的限制,COVID-19 的爆發對駕駛模擬器市場產生了重大影響。然而,隨著人們對虛擬訓練和遠距學習的興趣日益濃厚,對駕駛模擬器的需求激增。隨著關門和社交距離措施的到位,汽車、交通和教育等行業已轉向模擬器尋求安全有效的培訓解決方案。市場已經轉向更先進的模擬器,提供真實的駕駛體驗和自適應學習功能。此外,疫情加速了虛擬實境(VR)和擴增實境(AR)技術在駕駛模擬器中的採用,進一步推動了市場成長。
商用車細分市場預計將在預測期內成為最大的細分市場
駕駛模擬器市場商用車領域的成長歸因於物流、運輸和建築等行業對高級駕駛員培訓和模擬解決方案的需求不斷成長。嚴格的安全法規和對具有成本效益的培訓方法的需求正在促使公司投資這些模擬器,以提高駕駛員技能並減少事故。此外,虛擬實境(VR)和擴增實境(AR)等技術進步正在提高商用車模擬器的真實性和有效性,進一步推動市場成長。
馬達和遊戲產業預計在預測期內複合年成長率最高
馬達和遊戲領域的成長是由技術進步所推動的,這些進步帶來了更真實的模擬體驗,吸引了馬達愛好者和遊戲玩家。該部分提供了身臨其境型的體驗,彌合了虛擬和真實賽車之間的差距。此外,電子競技的日益普及正在推動對競爭遊戲平台的需求,進一步推動該細分市場的成長。整合線上多人遊戲和可自訂選項等功能可以提高用戶參與度和重玩價值。因此,製造商越來越注重服務這個利基市場,擴大他們的產品線和市場範圍。
由於汽車行業,特別是商用車和緊急服務領域對駕駛員先進培訓方法的需求不斷增加,北美地區駕駛模擬器市場正在顯著成長。自動駕駛汽車技術的興起推動了對真實模擬環境的需求,以測試和改進這些系統。此外,遊戲產業的影響力導致消費級駕駛模擬器在愛好者中越來越受歡迎。北美主要市場參與者對研發的投資正在導致創新功能和沈浸式體驗的引入,進一步推動市場成長。
由於多種因素,亞太地區駕駛模擬器市場正在顯著成長。快速的都市化和可支配收入的增加正在迅速增加對駕駛培訓和模擬解決方案的需求,特別是在人口稠密的城市,現實世界的駕駛實踐受到限制。隨著科技的進步,駕駛模擬器變得更加身臨其境、更加真實,不僅吸引了個人消費者,也吸引了駕駛座、汽車公司等商業組織。此外,數位學習平台和線上駕駛課程的興起也推動了對虛擬駕駛體驗的需求。
According to Stratistics MRC, the Global Driving Simulator Market is accounted for $1.85 billion in 2023 and is expected to reach $3.01 billion by 2030 growing at a CAGR of 7.2% during the forecast period. A driving simulator is a sophisticated system designed to mimic real-world driving scenarios in a controlled environment. It typically consists of a computer-generated virtual environment displayed on screens or through virtual reality headsets, along with a replica of a car's interior, including the steering wheel, pedals, and dashboard. These simulators are used for various purposes, including driver training, research on human behavior in traffic, and testing of vehicle designs and safety features. By providing a safe and controlled setting, driving simulators allow users to practice driving skills, assess driving performance, and explore various driving scenarios without the risks associated with real roads.
According to annual road crash statistics, more than 125 million people die in road crashes globally. According to a research survey conducted by the American Trucking Association, the trucking industry in the U.S. was 38,000 drivers short in 2014, which is expected to grow to 175,000 by 2024.
Training and education
The training and education driver is a pivotal force propelling the growth of the driving simulator market. Driving simulators offer a safe and controlled environment for learners to hone their driving skills, reducing the risks associated with traditional training methods. They provide immersive experiences that mimic real-world driving scenarios, enhancing learning outcomes. Additionally, driving simulators are increasingly adopted by driving schools, commercial fleets, and military training programs, driving market expansion. Their ability to offer tailored training programs, assess driver performance, and simulate diverse road conditions further boosts their appeal in the education and training sector.
Limited adoption in certain sectors
Limited adoption in certain sectors can restrain the driving simulator market due to industry-specific requirements and preferences. Sectors like aviation, military, and automotive may have stringent regulations or specialized needs that limit the applicability of generic driving simulators. For instance, aviation simulators require high-fidelity replication of flight conditions, while military simulators demand robustness and compatibility with advanced training scenarios. Additionally, automotive manufacturers might favor in-house solutions tailored to their specific vehicle models. These constraints can hinder widespread adoption and market growth, as driving simulator providers must address diverse sectoral demands to expand their market reach effectively.
Automotive industry integration
The automotive industry stands on the cusp of a significant integration opportunity with the driving simulator market. Driving simulators offer a controlled environment for testing and refining automotive technologies, from advanced driver-assistance systems to autonomous vehicles. By leveraging these simulators, automakers can accelerate development cycles, reduce costs associated with physical testing, and enhance safety protocols. Moreover, the integration enables real-world scenarios to be replicated, allowing for more comprehensive validation of vehicle performance and driver experiences. This synergy not only fosters innovation but also facilitates the transition towards next-generation mobility solutions, ultimately shaping the future of transportation.
Competition from real-world training
Environmental factors pose a significant threat to the driving simulator market. As societies increasingly prioritize sustainability, concerns about the environmental impact of manufacturing and operating driving simulators grow. The production process often involves the use of non-renewable resources and generates pollution. Moreover, the energy consumption of driving simulators contributes to carbon emissions, especially if powered by non-renewable sources. Additionally, the disposal of outdated simulators raises concerns about electronic waste management. To thrive in this changing landscape, driving simulator companies must adopt eco-friendly practices and utilize renewable energy sources to mitigate these environmental threats.
The COVID-19 pandemic significantly impacted the driving simulator market as restrictions limited physical interactions and travel. However, the demand for driving simulators surged due to increased interest in virtual training and remote learning. With lockdowns and social distancing measures in place, industries like automotive, transportation, and education turned to simulators for safe and effective training solutions. The market saw a shift towards more advanced simulators offering realistic driving experiences and adaptive learning features. Additionally, the pandemic accelerated the adoption of virtual reality (VR) and augmented reality (AR) technologies in driving simulators, further driving market growth.
The commercial vehicle segment is expected to be the largest during the forecast period
The growth of the commercial vehicle segment in the driving simulator market can be attributed to the increasing demand for advanced driver training and simulation solutions in industries such as logistics, transportation, and construction. Stringent safety regulations and the need for cost-effective training methods are prompting companies to invest in these simulators to enhance driver skills and reduce accidents. Moreover, advancements in technology, such as virtual reality (VR) and augmented reality (AR), are improving the realism and effectiveness of commercial vehicle simulators, further fueling market growth.
The motor sports & gaming segment is expected to have the highest CAGR during the forecast period
The growth in the motor sports and gaming segment is driven by advancements in technology that allowed for more realistic simulation experiences, attracting both motorsports enthusiasts and gamers alike. This segment offers immersive experiences that bridge the gap between virtual and real-world racing. Additionally, the rising popularity of esports has fuelled demand for competitive gaming platforms, further driving growth in this segment. Integration of features like online multiplayer and customizable options enhances user engagement and replay value. As a result, manufacturers are increasingly focusing on catering to this niche market, leading to an expansion in offerings and market reach.
The North American region has experienced significant growth in the driving simulator market due to the increasing demand for advanced training methods in the automotive industry, particularly for drivers of commercial vehicles and emergency services. The rise of autonomous vehicle technologies has prompted the need for realistic simulation environments to test and refine these systems. Moreover, the gaming industry's influence has contributed to the popularity of consumer-grade driving simulators among enthusiasts. Investments in research and development by key market players in North America have led to the introduction of innovative features and immersive experiences, further driving market growth.
The Asia-Pacific region has witnessed substantial growth in the driving simulator market owing to several factors. Rapid urbanization and increasing disposable incomes have led to a surge in demand for driving training and simulation solutions, especially in densely populated cities where real-world driving practice is limited. Advancements in technology have made driving simulators more immersive and realistic, attracting both individual consumers and commercial entities like driving schools and automotive companies. Furthermore, the rise of e-learning platforms and online driving courses has bolstered the demand for virtual driving experiences.
Key players in the market
Some of the key players in Driving Simulator market include AB Dynamics PLC, Aeronautical Accessories, Ansible Motion Limited, AVSimulation Inc, Cruden, FAAC Incorporated, Mechtronix Simulation, Moog, SMC International Training, Tecknotrove Simulator System Private Limited, VI-grade GmbH, Virage Simulation Inc and XPI Simulation Inc.
In April 2024, AB Dynamics plc has acquired Venshure Test Services (VTS), a leading provider of dynamometer-based testing services to the automotive sector in the US that is focused on the development and deployment of electric vehicles (EVs). Headquartered in Chelsea, Michigan, VTS offers a full range of testing services including mileage accumulation and assessment of EV powertrain and battery performance across a range of extreme climatic conditions.
In January 2024, Space Falcon and Cruden companies participated in UMEX and SimTEX 2024 with a set of innovative unmanned aerial systems and simulators. Cruden is exhibiting its state-of-the-art fast graft simulator that trains fast boats' pilots and navigators. This simulator is used to train crews before they begin their actual training on the water.