More Electric Aircraft Market (2026 - 2035)

更多电动飞机市场规模、份额、行业趋势与分析研究报告信息按飞机类型(商业航空、军事航空、城市空中出行/eVTOL、通用航空)、按平台(固定翼、旋翼/动力升力)、按系统(电力生成与管理、驱动系统、热管理系统、其他系统)、按最终用户(OEM、售后市场)、按地理区域(北美、欧洲、亚太、南美、中东与非洲)– 预测至2035年
ID: MRFR/AD/0737-CR
110 Pages
Shubham Munde, Swapnil Palwe
Last Updated: July 22, 2026
More Electric Aircraft Market
Market Size
Forecast Period2026-2035
CAGR (2026-2035)10.89%
2025 Market SizeUSD 5.96 Billion
2035 Market SizeUSD 17.84 Billion
Key Players
Safran SA
Collins Aerospace
GE Aerospace
Honeywell Aerospace
Thales Group
Rolls-Royce plc
Opportunities
  • Aftermarket Retrofit of Legacy Narrow-Body Fleets
  • eVTOL Supply-Chain Convergence
  • Asia-Pacific Indigenous Aircraft Programs

More Electric Aircraft Market 摘要

主要市场趋势和亮点

更多电动飞机市场因可持续性和技术进步而有望实现显著增长。

  • 可持续性倡议正日益影响更多电动飞机的发展,特别是在北美。
  • 技术进步正在提高固定翼飞机的效率和性能,固定翼飞机仍然是最大的细分市场。
  • 监管支持正在促进军事细分市场的创新和投资,该领域目前是增长最快的领域。
  • 环境法规和消费者对可持续旅行的需求是推动市场前进的关键驱动因素。

市场规模与预测

2024年市场规模 5.742(十亿美元)
2035年市场规模 22.11(十亿美元)
2025 - 2035年复合年增长率 13.04%

More Electric Aircraft Market Drivers

成本效率

成本效率是更多电动飞机市场的一个关键驱动因素,因为航空公司和制造商寻求降低运营费用。与传统飞机相比,电动推进系统以其较低的燃料消耗和减少的维护成本而闻名。根据最近的研究,电动飞机有可能将燃料成本降低多达30%,这对在薄利经营的航空公司来说是一个重要的激励。此外,电气系统的整合可以降低飞机的整体生命周期成本,使其对运营商更具吸引力。随着行业继续关注成本降低,更多电动飞机市场有望增长,受到电气技术经济优势的推动。

环境法规

由于各国政府实施的严格环境法规,更多电动飞机市场正经历需求激增。这些法规旨在减少碳排放并促进可持续航空实践。因此,飞机制造商越来越多地投资于更多电动技术以遵守这些法规。国际民用航空组织设定了减少温室气体排放的雄心勃勃的目标,这促使行业进行创新并采用电动推进系统。这一转变不仅符合监管要求,还增强了飞机的市场竞争力,因为航空公司寻求改善其环境足迹。因此,随着制造商适应这些不断变化的监管环境,更多电动飞机市场可能会见证显著增长。

技术创新

技术创新在塑造更多电动飞机市场中发挥着至关重要的作用。电池技术、电动马达和能源管理系统的进步使得开发更高效、更具能力的电动飞机成为可能。例如,高能量密度电池的引入显著提高了电动飞机的航程和性能,使其适合商业运营。此外,轻质材料和空气动力学的创新有助于提高燃油效率和减少能耗。随着这些技术的不断发展,它们可能会吸引来自各方利益相关者的投资和关注,进一步推动更多电动飞机市场的增长。

政府激励和资金

政府激励和资金倡议是更多电动飞机市场的重要驱动因素。各国政府正在认识到电动航空在减少排放和提高能源效率方面的潜力。因此,他们为电动飞机技术的研究和开发提供财政支持和激励。旨在促进航空航天领域创新的项目鼓励制造商探索电动推进系统。这种财政支持不仅减轻了开发新技术相关的风险,还加快了行业内的创新步伐。因此,更多电动飞机市场预计将受益于这些支持措施,导致投资和增长的增加。

消费者对可持续旅行的需求

更多电动飞机市场越来越受到消费者对可持续旅行选项需求的影响。乘客变得更加关注环境,并积极寻找优先考虑可持续性的航空公司。这种消费者行为的转变促使航空公司投资于更多电动飞机,以提升其可持续性信誉。研究表明,许多旅行者愿意为环保旅行选项支付溢价,这激励航空公司采用电动技术。随着对可持续旅行的需求持续上升,更多电动飞机市场可能会扩大,以满足消费者的期望和偏好。

市场细分洞察

按应用:商业(最大)与军事(增长最快)

在更多电动飞机市场中,应用细分主要由商业飞机驱动,由于对燃油效率和环保飞机的需求不断增加,商业飞机占据了最大的市场份额。商业航空正在迅速采用更多电动技术,因为航空公司努力降低运营成本、提高效率,并满足关于排放的严格监管要求。因此,该细分市场成为电动推进技术进步的焦点,从而增强了其市场相关性。

应用:商业(主导)与军事(新兴)

商业细分市场在更多电动飞机市场中仍然是主导力量,利用显著的技术进步来改善乘客体验,同时实现更低的运营成本。航空公司越来越专注于在其机队中整合先进的电气架构,帮助实现可持续发展目标并遵守不断变化的法规。相比之下,军事应用正在新兴,受到对增强操作能力的创新飞机解决方案需求的驱动。全球各国军队正在投资电动技术,以开发先进的空中系统,这与关注可持续性和成本效益的更广泛防御战略相一致。这两个细分市场都以对创新的承诺为特征,尽管优先事项和增长轨迹各不相同。

按平台:固定翼飞机(最大)与旋翼飞机(增长最快)

在更多电动飞机市场中,固定翼飞机细分占据了最大的市场份额,反映出其在商业航空中的成熟存在和广泛应用。该细分市场不断发展,以能源效率和增强的推进系统为特征。相反,旋翼飞机细分被认为是增长最快的,受到城市空中出行需求增加和这些飞机所提供的操作灵活性的驱动。这一增长得到了显著的技术创新的支持,改善了它们的性能和可持续性。随着行业向更可持续的航空解决方案转变,无人机(UAV)的增长也值得注意。无人机因其多功能性以及在货物运输、监视和紧急服务中的应用而迅速获得关注。其发展得益于对无人机技术的广泛投资和监管支持,进一步促进了它们在商业航空领域的整合。

固定翼飞机(主导)与无人机(新兴)

固定翼飞机目前是更多电动飞机市场中的主导平台。其设计经过优化,适合长距离和更高的载荷能力,使其非常适合各种商业和货运操作。该细分市场受益于成熟的基础设施和良好的业绩记录,便于更多电动技术的整合。相比之下,无人机在市场中代表了一种新兴力量,以其适应性和在农业、物流和监视等领域日益增长的受欢迎程度为特征。随着电池技术的改善,无人机预计将扩展其能力,使其在效率和操作范围方面更具竞争力。对自动化和数据收集的日益关注进一步增强了它们的市场地位,为更具创新性的应用铺平了道路。

获取关于More Electric Aircraft Market的更多详细见解

More Electric Aircraft Market市场的主要公司包括

未来展望

More Electric Aircraft Market 未来展望

预计到2035年,更多电动飞机市场将以13.04%的年均增长率增长,受电池技术进步、监管支持和环境可持续性倡议的推动。

到2035年,市场预计将实现显著增长,确立其在可持续航空领域的领导地位。

市场细分

更多电动飞机市场平台展望

  • 固定翼飞机
  • 旋翼飞机
  • 无人机

更多电动飞机市场应用展望

  • 商业
  • 军事

报告范围

FAQs

How do wide-bandgap semiconductors affect procurement decisions for aircraft electrical systems?
SiC and GaN devices reduce inverter weight by up to 40% and tolerate higher operating temperatures, eliminating the need for supplemental cooling in many installations [10]. Procurement teams should evaluate lifecycle cost, including reduced maintenance intervals, rather than unit price alone.
What certification risks should investors consider before funding MEA start-ups?
High-voltage airworthiness standards above 270 VDC remain incomplete at both FAA and EASA, potentially delaying type certificates by 18–24 months beyond initial projections [13]. Investors should stress-test business plans against extended certification timescales.
How does the More Electric Aircraft Market address cybersecurity for networked power buses?
Networked HVDC buses create attack surfaces absent in legacy pneumatic systems, requiring DO-326A compliance and real-time intrusion-detection layers [13]. OEMs increasingly embed hardware security modules directly into power-distribution units.
Can aftermarket STC kits deliver comparable fuel savings to factory-installed MEA systems?
STC retrofit kits typically achieve 60–75% of the fuel savings available from OEM-integrated systems because structural and wiring constraints limit actuator and generator sizing [6]. Airlines still realize positive ROI within 3–5 years on high-utilization narrow-body fleets.
What role do solid-state batteries play in the More Electric Aircraft Market beyond 2030?
Solid-state cells targeting 400+ Wh/kg could enable 500 km range for 19-seat hybrid-electric platforms, but aerospace-qualified production at scale remains unproven [12]. Early adopters will likely be sub-regional and urban air mobility operators.
How does the More Electric Aircraft Market differ between commercial and defense procurement cycles?
Defense programs commit to 10–15 year development timelines with milestone-based funding, while commercial OEMs compress development to 5–7 years, driven by airline delivery schedules [9]. This mismatch creates distinct supply-chain strategies for each segment.
What insurance and liability frameworks apply to high-voltage aircraft systems in revenue service?
Underwriters currently classify HVDC systems above 540 V as elevated-risk, applying premium surcharges of 8–12% on hull and liability policies [21]. Industry working groups at AIA and ASD-Europe are developing standardized risk models to reduce these premiums.    
作者
Author
Author Profile
Shubham Munde LinkedIn
Team Lead - Research
Shubham brings over 7 years of expertise in Market Intelligence and Strategic Consulting, with a strong focus on the Automotive, Aerospace, and Defense sectors. Backed by a solid foundation in semiconductors, electronics, and software, he has successfully delivered high-impact syndicated and custom research on a global scale. His core strengths include market sizing, forecasting, competitive intelligence, consumer insights, and supply chain mapping. Widely recognized for developing scalable growth strategies, Shubham empowers clients to navigate complex markets and achieve a lasting competitive edge. Trusted by start-ups and Fortune 500 companies alike, he consistently converts challenges into strategic opportunities that drive sustainable growth.
Co-Author
Co-Author Profile
Swapnil Palwe LinkedIn
Team Lead - Research
With a technical background as Bachelor's in Mechanical Engineering, with MBA in Operations Management , Swapnil has 6+ years of experience in market research, consulting and analytics with the tasks of data mining, analysis, and project execution. He is the POC for our clients, for their consulting projects running under the Automotive/A&D domain. Swapnil has worked on major projects in verticals such as Aerospace & Defense, Automotive and many other domain projects. He has worked on projects for fortune 500 companies' syndicate and consulting projects along with several government projects.

Research Approach

Research Methodology on More Electric Aircraft Market

The research project will follow a systematic research methodology, to ensure accurate results. There will be various stages of data collection and analysis that the research project will follow to obtain the necessary information. The research methodology will include data collection, data analysis, and data interpretation methods. The research methodology will focus on using both qualitative and quantitative data systems to ensure efficiency and reliability.

Data Collection Methods

Primary research would be the primary source of information in this research project. This primary source of information would come in the form of surveys, interviews, and questionnaires. The collected information would be further supplemented with secondary sources of information. These secondary sources include published reports, journals, magazines, and scholarly literature. The gathered data from both primary and secondary sources would be used for deriving valid and reliable information for the research project.

Data Analysis Techniques

The collected data would be analysed using suitable data analysis techniques such as descriptive analysis, exploratory analysis, inferential analysis, and predictive analysis. The descriptive analysis involves summarizing the gathered data. The exploratory analysis involves discovering any potential relationships between the gathered data. Inferential analysis involves understanding the collected data and making inferences from it. Predictive analysis involves making predictions regarding future trends and developments. All these analysis techniques would provide reliable and valid information.

Data Interpretation

The analysed data is interpreted and the conclusions will be drawn using suitable methods. The data interpretation methods would involve the comparison of the gathered data to the previous studies and research conducted on the subject. The data will also be compared to the current industry trends and developments to understand and gain insights into the current trends and developments in the ‘More Electric Aircraft’ sector. The interpretations of the data are supported by suitable evidence and data sources.

This comprehensive research methodology would help ensure accuracy and reliability in the results obtained from the research project. The research methodology is followed for the entire duration of the research project to ensure accuracy and reliability in the results obtained.

下载免费样本

请填写以下表格以获取本报告的免费样本

Download PDF ×

We do not share your information with anyone. However, we may send you emails based on your report interest from time to time. You may contact us at any time to opt-out.