AMU-LED克兰菲尔德飞行试验展示先进的空中机动概念

IF 0.1 4区 工程技术 Q4 ENGINEERING, AEROSPACE Aerospace America Pub Date : 2023-08-31 DOI:10.3390/aerospace10090775
Arinc Tutku Altun, M. Hasanzade, Emre Saldiran, Guney Guner, Mevlut Uzun, Rodolphe Fremond, Yiwen Tang, Prithiviraj Bhundoo, Yu Su, Yan Xu, G. Inalhan, Michael W. Hardt, A. Fransoy, A. Modha, Jose Antonio Tena, Cesar Nieto, M. Vilaplana, M. Tojal, V. Gordo, Pablo Menendez, A. Gonzalez
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引用次数: 0

摘要

先进空中交通(AAM)是一个概念,有望改变当前的航空运输系统,并通过将运营扩展到城市环境,提供更大的灵活性、敏捷性和可达性。本研究的重点是飞行测试、集成和对未来空空概念可行性的分析考虑,并展示了克兰菲尔德大学空中机动城市-大型实验演示(AMU-LED)项目演示的成果。克兰菲尔德演示的目的是通过由真实和模拟标准性能飞行器(SPV)和高性能飞行器(HPV)飞行、载人飞行和通用航空飞行组成的联合仿真环境中的各种用例,探索具有分层空域结构的AAM概念的集成分散架构。在整个真实和模拟飞行中,展示了先进的u空间服务,并在开发的联合模拟环境中测试了应急管理活动,包括紧急行动和着陆。此外,通过关键性能指标分析以及社会接受度研究,对飞行测试进行了验证和验证。提出了今后有关工业和管制活动的建议。
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AMU-LED Cranfield Flight Trials for Demonstrating the Advanced Air Mobility Concept
Advanced Air Mobility (AAM) is a concept that is expected to transform the current air transportation system and provide more flexibility, agility, and accessibility by extending the operations to urban environments. This study focuses on flight test, integration, and analysis considerations for the feasibility of the future AAM concept and showcases the outputs of the Air Mobility Urban-Large Experimental Demonstration (AMU-LED) project demonstrations at Cranfield University. The purpose of the Cranfield demonstrations is to explore the integrated decentralized architecture of the AAM concept with layered airspace structure through various use cases within a co-simulation environment consisting of real and simulated standard-performing vehicle (SPV) and high-performing vehicle (HPV) flights, manned, and general aviation flights. Throughout the real and simulated flights, advanced U-space services are demonstrated and contingency management activities, including emergency operations and landing, are tested within the developed co-simulation environment. Moreover, flight tests are verified and validated through key performance indicator analysis, along with a social acceptance study. Future recommendations on relevant industrial and regulative activities are provided.
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来源期刊
Aerospace America
Aerospace America 工程技术-工程:宇航
自引率
0.00%
发文量
9
审稿时长
4-8 weeks
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