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市場調查報告書
商品編碼
1831819
全球個人空中交通市場(2025-2035)Global Personal Air Mobility Market 2025-2035 |
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預計2025年全球個人空中交通市場規模將達到125億美元,到2035年預計將達到415億美元,2025年至2035年的複合年增長率為12.75%。

技術進步在塑造國防個人空中交通系統的能力和作戰可行性方面發揮關鍵作用。電力推進、電池能量密度和輕質複合材料的技術創新,在不犧牲隱身性和機動性的情況下,實現了更長的飛行時間、更大的有效載荷和更高的機動性。自主導航和先進飛行控制系統的整合,減少了飛行員的工作量,提高了安全性,並使其能夠在複雜動態的環境中運作。此外,垂直起降 (VTOL) 技術的進步使這些系統能夠在未經準備的地面上作業,從而擴大了部署靈活性。擴增實境 (AR) 介面和可穿戴指揮系統正在研究中,旨在為飛行操作員提供即時個人防護裝備和作戰數據。此外,個人機動平台與群體人工智慧和網路中心架構的整合,為多單元協同作戰、偵察網路和聯合戰場支援開闢了機會。增強的生存能力,例如低聲學特徵和自適應偽裝,也正在提高衝突環境中的生存能力。這些技術發展不僅擴展了個人空中機動解決方案的作戰效用,也加速了其作為下一代國防作戰重要工具的應用。
國防個人空中機動市場的成長受到不斷變化的作戰需求和戰略重點的驅動。對快速機動性、戰術靈活性和分散式力量投射日益增長的需求,推動了對能夠在各種環境中快速有效地運送人員的平台的投資。隨著城市戰和非對稱威脅日益普遍,繞過地面障礙物和實現垂直機動的能力提供了顯著的戰術優勢。特種作戰部隊尤其需要能夠在敵對和難以進入的區域進行隱藏滲透、快速撤離和敏捷作戰的工具。對以士兵為中心的技術和個人賦能的關注,正在推動緊湊、易於操作、可穿戴飛行系統的開發。旨在提高機動性、戰備能力和與無人系統互通性的國防現代化項目也促進了市場擴張。此外,人們對災難應變、搜救和邊境監視等軍民兩用應用的興趣日益濃厚,也提升了個人空中機動平台的吸引力。這些推動因素反映了國防機構對機動性看法的根本轉變,他們優先考慮速度、自主性和適應性,將其視為未來作戰成功的關鍵因素。
國防個人空中機動市場的區域動態反映了戰略重點、技術能力和現代化議程的差異。在北美,大量投資正投向先進的電動垂直起降 (eVTOL) 系統和噴氣背包技術,這通常是透過國防機構、新創公司和航空航天公司之間的合作實現的。歐洲國家正致力於將個人機動解決方案融入更廣泛的士兵現代化計劃,強調遠徵部隊的互通性和快速部署能力。亞太地區正在成為一個關鍵的成長區域,這得益於對跨越不同地形和島嶼地區的敏捷戰術機動性的需求,以及對自主技術開發的投資。中東國防軍正在探索個人空中機動技術,用於邊境安全、特種作戰和快速反應行動,並經常與西方技術提供者合作。
本報告探討了全球個人空中機動市場,提供了成長動力、10 年展望以及區域市場趨勢和預測。
各地區
各類型
各零件
各終端用戶
北美
促進因素,阻礙因素,課題
REST
主要企業
供應商層級格局
企業基準
歐洲
中東
亞太地區
南美
美國
計劃製圖
最新消息
專利
該市場目前的技術成熟度
加拿大
義大利
法國
德國
荷蘭
比利時
西班牙
瑞典
希臘
澳洲
南非
印度
中國
俄羅斯
韓國
日本
馬來西亞
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.