先进空中机动飞行测试和模拟基础设施的开发

IF 0.1 4区 工程技术 Q4 ENGINEERING, AEROSPACE Aerospace America Pub Date : 2023-08-15 DOI:10.3390/aerospace10080712
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: 1

摘要

先进空中交通(AAM)这一新兴领域通过在城市和区域环境中实现人员和货物的高效、安全和可持续的移动,为彻底改变交通运输带来了巨大希望。AAM包括广泛的电动垂直起降(eVTOL)飞机和支持其运行的基础设施。在这项工作中,我们首先提出了一个新的空域结构,考虑了标准性能车辆(spv)和高性能车辆(hpv)的不同层,适应这种结构的新AAM服务,以及一个安全高效的交通环境的整体应急管理概念。然后,我们确定AAM演示的测试和模拟基础设施的需求和开发过程,其具体目标是探索所提议概念及其用例的分散体系结构。为了展示AAM的全部能力,我们开发了一个基础设施,其中包括先进的u空间服务、适合未来AAM用例(如航空货物交付和空中出租车操作)的真实和模拟平台,以及一个允许所有AAM元素相互协调交互的联合模拟环境。所考虑的基础设施预计将用于与AAM集成相关的工作,特别是那些专注于在复杂交通环境中部署u空间服务的工作,以及那些分析运营商、u空间服务提供商(USSP)和空中交通管制员(ATC)之间交互的工作。
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The Development of an Advanced Air Mobility Flight Testing and Simulation Infrastructure
The emerging field of Advanced Air Mobility (AAM) holds great promise for revolutionizing transportation by enabling the efficient, safe, and sustainable movement of people and goods in urban and regional environments. AAM encompasses a wide range of electric vertical take-off and landing (eVTOL) aircraft and infrastructure that support their operations. In this work, we first present a new airspace structure by considering different layers for standard-performing vehicles (SPVs) and high-performing vehicles (HPVs), new AAM services for accommodating such a structure, and a holistic contingency management concept for a safe and efficient traffic environment. We then identify the requirements and development process of a testing and simulation infrastructure for AAM demonstrations, which specifically aim to explore the decentralized architecture of the proposed concept and its use cases. To demonstrate the full capability of AAM, we develop an infrastructure that includes advanced U-space services, real and simulated platforms that are suitable for future AAM use cases such as air cargo delivery and air taxi operations, and a co-simulation environment that allows all of the AAM elements to interact with each other in harmony. The considered infrastructure is envisioned to be used in AAM integration-related efforts, especially those focusing on U-space service deployment over a complex traffic environment and those analyzing the interaction between the operator, the U-space service provider (USSP), and the air traffic controller (ATC).
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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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