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Flight testing avionics of an optionally piloted aircraft for UAS integration in the civil airspace

机译:用于民用空域的UAS集成的可选飞行员飞机的飞行测试航空电子设备

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Flight-testing of Unmanned Aerial Systems (UASs) avionic technologies can be quite difficult and expensive due to the current flight safety restrictions. Optionally Piloted Aircrafts (OPAs) overcome part of these issues thanks to the presence of an on-board safety pilot (SP). This paper describes the Italian Aerospace Research Centre's (CIRA) on-board, communication and on-ground systems used to convert a commercial manned fixed wing Aircraft (A/C) into an OPA that can be operated like a Remotely Piloted Aircraft System (RPAS). This facility allowed a low cost flight campaign to analyse the feasibility of UAS Integration in the Civil Airspace and evaluate the workload of Traffic Controller (TC) and Remote Flight Operator (RFO). The paper also illustrates the process and tests requested by the National Aviation Authority to grant the Permit to Fly (PtF). Finally, some selected results of the flight test campaign are included to demonstrate the performance and capabilities of the proposed OPA avionic architecture to perform UAS-like real operating missions and so safely allow low cost flight trials for RPAS integration in the civil airspace.
机译:由于当前的飞行安全限制,无人航空系统(UAS)航空电子技术的飞行测试可能非常困难且昂贵。由于配备了机上安全飞行员(SP),因此可选地,试飞飞机(OPA)可以部分解决这些问题。本文介绍了意大利航空航天研究中心(CIRA)的机载,通信和地面系统,这些系统用于将商用载人固定翼飞机(A / C)转换为可像遥控飞机系统(RPAS)一样操作的OPA )。该设施允许进行低成本的飞行战役,以分析在民用空域中进行UAS集成的可行性,并评估交通管制员(TC)和远程飞行操作员(RFO)的工作量。该文件还说明了国家航空局要求授予飞行许可证(PtF)的过程和测试。最后,包括飞行测试活动的一些选定结果,以证明拟议的OPA航空电子体系结构的性能和功能,可以执行类似UAS的实际操作任务,因此可以安全地进行低成本飞行试验,以在民用空域进行RPAS集成。

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