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Risk Analysis of the Future Implementation of a Safety Management System for Multiple RPAS Based on First Demonstration Flights

机译:基于首飞的多RPAS安全管理系统未来实施的风险分析

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摘要

The modern aeronautical scenario has welcomed the massive diffusion of new key elements, including the Remote Piloted Aircraft Systems (RPAS), initially used for military purposes only. The current decade has seen RPAS ready to become a new airspace user in a large variety of civilian applications. Although RPAS can currently only be flown into segregated airspaces, due to national and international Flight Aviation Authorities′ (FAAs) constraints, they represent a remarkable potential growth in terms of development and economic investments for aviation. Full RPAS development will only happen when flight into non‐segregated airspaces is authorized, as for manned civil and military aircraft. The preliminary requirement for disclosing the airspace to RPAS is the implementation of an ad hoc Safety Management System (SMS), as prescribed by ICAO, for every aeronautical operator. This issue arises in the context of the ongoing restructuring of airspaces management, according to SESAR‐JU in Europe and NextGen in the USA (SESAR‐JU has defined how RPAS research should be conducted in SESAR 2020, all in accordance with the 2015 European ATM Master Plan). This paper provides the basis to implement a risk model and general procedures/methodologies to investigate RPAS safety, according to the operational scenarios defined by EASA (European Aviation Safety Agency). The study is based on results achieved by multiple‐RPAS experimental flights, performed within the RAID (RPAS‐ATM Integration Demonstration) project.
机译:现代航空业已经欢迎新的关键要素的大规模传播,包括最初仅用于军事目的的遥控飞机系统(RPAS)。在当前十年中,RPAS准备成为各种民用应用中的新空域用户。尽管由于国家和国际飞行航空当局(FAA)的限制,目前只能将RPAS运入隔离的空域,但就航空的发展和经济投资而言,它们代表着巨大的潜在增长。完全的RPAS开发只有在获准飞入非隔离空域的情况下才能实现,就像有人和民用飞机一样。向RPA公开空域的初步要求是,按照国际民航组织的规定,为每位航空运营人实施临时安全管理系统(SMS)。根据欧洲SESAR‐JU和美国NextGen的说法,这个问题是在不断进行的空域管理重组的背景下提出的(SESAR‐JU定义了应如何在SESAR 2020中进行RPAS研究,所有这些都符合2015年的欧洲ATM总体规划)。本文根据EASA(欧洲航空安全局)定义的运行方案,为实施风险模型和研究RPAS安全的通用程序/方法提供了基础。该研究基于在RAID(RPAS-ATM集成演示)项目中进行的多次RPA实验飞行获得的结果。

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