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市场调查报告书
商品编码
1831819
全球个人空中交通市场(2025-2035)Global Personal Air Mobility Market 2025-2035 |
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预计2025年全球个人空中交通市场规模将达到125亿美元,到2035年预计将达到415亿美元,2025年至2035年的复合年增长率为12.75%。

技术进步在塑造国防个人空中交通系统的能力和作战可行性方面发挥关键作用。电力推进、电池能量密度和轻质复合材料的技术创新,在不牺牲隐身性和机动性的情况下,实现了更长的飞行时间、更大的有效载荷和更高的机动性。自主导航和先进飞行控制系统的整合,减少了飞行员的工作量,提高了安全性,并使其能够在复杂动态的环境中运作。此外,垂直起降 (VTOL) 技术的进步使这些系统能够在未经准备的地面上作业,从而扩大了部署灵活性。扩增实境 (AR) 介面和可穿戴指挥系统正在研究中,旨在为飞行操作员提供即时个人防护装备和作战数据。此外,个人机动平台与群体人工智慧和网路中心架构的整合,为多单元协同作战、侦察网路和联合战场支援开闢了机会。增强的生存能力,例如低声学特征和自适应伪装,也正在提高衝突环境中的生存能力。这些技术发展不仅扩展了个人空中机动解决方案的作战效用,也加速了其作为下一代国防作战重要工具的应用。
国防个人空中机动市场的成长受到不断变化的作战需求和战略重点的驱动。对快速机动性、战术灵活性和分散式力量投射日益增长的需求,推动了对能够在各种环境中快速有效地运送人员的平台的投资。随着城市战和非对称威胁日益普遍,绕过地面障碍物和实现垂直机动的能力提供了显着的战术优势。特种作战部队尤其需要能够在敌对和难以进入的区域进行隐藏渗透、快速撤离和敏捷作战的工具。对以士兵为中心的技术和个人赋能的关注,正在推动紧凑、易于操作、可穿戴飞行系统的开发。旨在提高机动性、战备能力和与无人系统互通性的国防现代化项目也促进了市场扩张。此外,人们对灾难应变、搜救和边境监视等军民两用应用的兴趣日益浓厚,也提升了个人空中机动平台的吸引力。这些推动因素反映了国防机构对机动性看法的根本转变,他们优先考虑速度、自主性和适应性,将其视为未来作战成功的关键因素。
国防个人空中机动市场的区域动态反映了战略重点、技术能力和现代化议程的差异。在北美,大量投资正投向先进的电动垂直起降 (eVTOL) 系统和喷气背包技术,这通常是透过国防机构、新创公司和航空航天公司之间的合作实现的。欧洲国家正致力于将个人机动解决方案融入更广泛的士兵现代化计划,强调远征部队的互通性和快速部署能力。亚太地区正在成为一个关键的成长区域,这得益于对跨越不同地形和岛屿地区的敏捷战术机动性的需求,以及对自主技术开发的投资。中东国防军正在探索个人空中机动技术,用于边境安全、特种作战和快速反应行动,并经常与西方技术提供者合作。
本报告探讨了全球个人空中机动市场,提供了成长动力、10 年展望以及区域市场趋势和预测。
各地区
各类型
各零件
各终端用户
北美
促进因素,阻碍因素,课题
REST
主要企业
供应商层级格局
企业基准
欧洲
中东
亚太地区
南美
美国
计划製图
最新消息
专利
该市场目前的技术成熟度
加拿大
义大利
法国
德国
荷兰
比利时
西班牙
瑞典
希腊
澳洲
南非
印度
中国
俄罗斯
韩国
日本
马来西亚
新加坡
巴西
The Global PERSONAL AIR MOBILITY market is estimated at USD 12.50 billion in 2025, projected to grow to USD 41.50 billion by 2035 at a Compound Annual Growth Rate (CAGR) of 12.75% over the forecast period 2025-2035.

The defense personal air mobility market is emerging as a transformative domain within modern military operations, focusing on lightweight, agile aerial platforms designed to transport individual soldiers or small teams. These systems, which include jetpacks, personal eVTOLs (electric vertical take-off and landing vehicles), and compact rotorcraft, are being developed to enhance operational agility, speed, and reach in complex combat environments. Unlike traditional aircraft or ground vehicles, personal air mobility platforms offer rapid point-to-point transport, enabling troops to bypass obstacles, traverse difficult terrain, and access remote or hostile locations with minimal support. They are particularly valuable for reconnaissance, special operations, rapid response, and urban warfare scenarios where conventional platforms may be less effective. Additionally, these systems can support logistical tasks such as delivering critical supplies or evacuating personnel from high-risk zones. As defense forces shift toward more decentralized, mobile, and networked operations, personal air mobility solutions represent a significant step in reimagining tactical mobility. Their potential to integrate seamlessly with broader defense ecosystems-including autonomous systems and battlefield networks-positions them as a disruptive capability that can redefine future combat strategies and expand the range of missions executable by small, highly mobile units.
Technological advancements are playing a pivotal role in shaping the capabilities and operational potential of defense personal air mobility systems. Innovations in electric propulsion, battery energy density, and lightweight composite materials are enabling longer flight durations, greater payload capacities, and improved maneuverability without compromising stealth or portability. The integration of autonomous navigation and advanced flight control systems is reducing pilot workload, enhancing safety, and enabling operations in complex and dynamic environments. Additionally, advances in vertical take-off and landing technologies allow these systems to operate from unprepared surfaces, expanding deployment flexibility. Augmented reality interfaces and wearable command systems are being explored to provide real-time Personal Protective Equipment and mission data to operators during flight. Furthermore, the convergence of personal mobility platforms with swarm AI and network-centric architectures is opening opportunities for coordinated multi-unit missions, reconnaissance networks, and integrated battlefield support. Enhanced survivability features, such as low acoustic signatures and adaptive camouflage, are also increasing their viability in contested environments. Together, these technological developments are not only expanding the operational utility of personal air mobility solutions but also accelerating their adoption as integral tools for next-generation defense operations.
The growth of the defense personal air mobility market is being fueled by evolving operational demands and strategic priorities. The increasing need for rapid maneuverability, tactical flexibility, and decentralized force projection is driving investment in platforms that can deliver personnel quickly and efficiently across varied environments. As urban warfare and asymmetric threats become more prevalent, the ability to bypass ground obstacles and achieve vertical mobility provides significant tactical advantages. Special operations forces, in particular, are seeking tools that allow stealthy infiltration, rapid exfiltration, and agile mission execution in hostile or inaccessible regions. The emphasis on soldier-centric technologies and enhanced individual capabilities is further promoting the development of compact, wearable, and easy-to-operate flight systems. Defense modernization programs aimed at improving mobility, responsiveness, and interoperability with unmanned systems are also contributing to market expansion. Moreover, growing interest in dual-use applications-such as disaster response, search and rescue, and border surveillance-is broadening the appeal of personal air mobility platforms. Collectively, these drivers reflect a fundamental shift in how defense organizations view mobility, prioritizing speed, autonomy, and adaptability as key enablers of future mission success.
Regional dynamics in the defense personal air mobility market reflect differing strategic priorities, technological capabilities, and modernization agendas. In North America, significant investment is directed toward advanced eVTOL systems and jetpack technologies, often through collaborations between defense agencies, startups, and aerospace companies. European nations are focusing on integrating personal mobility solutions into broader soldier modernization initiatives, emphasizing interoperability and rapid deployment capabilities for expeditionary forces. The Asia-Pacific region is emerging as a key growth area, driven by the need for agile tactical mobility across diverse terrains and island territories, as well as investments in indigenous technology development. Middle Eastern defense forces are exploring personal air mobility for border security, special operations, and rapid response missions, often leveraging partnerships with Western technology providers. In Latin America and Africa, adoption is slower but growing, with interest primarily in cost-effective platforms for surveillance, disaster relief, and rapid troop transport. Across all regions, government funding, pilot programs, and defense innovation ecosystems are accelerating R&D and testing. These regional trends underscore the strategic importance of personal air mobility as militaries seek to enhance individual soldier capability, increase operational agility, and prepare for the demands of next-generation warfare.
Navy Vice Chief Vice Admiral SN Ghormade reviewed the development and observed flight trials of 'Varuna,' a personal air mobility vehicle capable of being launched from and recovered onto moving ships, the Navy announced on Thursday. The vehicle is intended for inter-ship transfer of personnel and supplies. Varuna has been developed by M/s Sagar Defence Engineering in collaboration with the Naval Innovation & Indigenisation Organization (NIIO), which is working closely with the company to develop variants for these transfer operations. The system has already demonstrated autonomous launch and QR code-based recovery on moving platforms at sea.
Table of Contents
By Region
By Type
By Component
By End User
The 10-year Personal Air Mobility market analysis would give a detailed overview of Personal Air Mobility market growth, changing dynamics, technology adoption overviews and the overall market attractiveness is covered in this chapter.
This segment covers the top 10 technologies that is expected to impact this market and the possible implications these technologies would have on the overall market.
The 10-year Personal Air Mobility market forecast of this market is covered in detailed across the segments which are mentioned above.
The regional Personal Air Mobility market trends, drivers, restraints and Challenges of this market, the Political, Economic, Social and Technology aspects are covered in this segment. The market forecast and scenario analysis across regions are also covered in detailed in this segment. The last part of the regional analysis includes profiling of the key companies, supplier landscape and company benchmarking. The current market size is estimated based on the normal scenario.
North America
Drivers, Restraints and Challenges
REST
Key Companies
Supplier Tier Landscape
Company Benchmarking
Europe
Middle East
APAC
South America
This chapter deals with the key programs in this market, it also covers the latest news and patents which have been filed in this market. Country level 10 year market forecast and scenario analysis are also covered in this chapter.
US
Program Mapping
Latest News
Patents
Current levels of technology maturation in this market
Canada
Italy
France
Germany
Netherlands
Belgium
Spain
Sweden
Greece
Australia
South Africa
India
China
Russia
South Korea
Japan
Malaysia
Singapore
Brazil
The opportunity matrix helps the readers understand the high opportunity segments in this market.
Hear from our experts their opinion of the possible analysis for this market.