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MedALE RTS Campaign: Data Analysis and Reporting

机译:MedALE RTS活动:数据分析和报告

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摘要

The recently started Mediterranean ATM Live Exercise (MedALE) project among the SESAR Integrated RPAS Demonstration Activities, has the goal to provide to a wide spectrum of European Stakeholders indications and recommendations about the validity and limits of the existing RPAS assets, practices and operational procedure. In addition this project will provide an interesting contribution identifying the future necessary improvements or modifications to comply with the new ATM concepts that SESAR Programme is realizing. The MedALE demonstration programme adopted an incremental and complementary series of steps designed to demonstrate how RPAS may be integrated into non-segregated airspace. A combined approach has been adopted taking into account different levels of complexity and realism: Virtual and Constructive Real Time Simulation (RTS) and Live Trial (LT). RTS have been performed during November 2014 while LT activities are planned in May 2015. This paper is focused on the Real Time simulation exercise that investigated the cooperation between ATC Controllers and RPAS Pilots in non-segregated airspace. In order to represent a real environment, a complex networked infrastructure composed by an integration of several remote simulation platforms was set up. In particular, ENAV ATC simulation system (hosted by NATO M&S CoE) and three RPAS simulator known as SKY-Y Full Mission Simulator (Male UAV), FALCO (Tactical UAV) and C-FLY (Light UAV), provided by Alenia Aermacchi, Selex and Nimbus respectively were linked ad hoc. The Operational Environment selected for the simulation exercise was the Decimomannu (LIED) airport located in Sardinia Island. During simulation campaign three type of scenarios have been considered. (1) Reference Scenario - reproducing the situation without the proposed solution. It means that the scenario didn't include the implementation of the RPAS. (2) Solution Scenario - represented by Reference Scenario with the introduction of three different types (with different performances) RPAS. This scenario was analyzed in both Line Of Sight (LOS) and Beyond Radio Line Of Sight (BRLOS) configurations. BRLOS scenario use RAPTOR simulation platform developed by Thales Alenia Space Italia, a SATCOM simulator in the loop emulating BRLOS C2 data link communications. (3) Non nominal Scenario - represented by Solution Scenario with the implementation of unusual events represented by RPAS loss of power, General Aviation Traffic (GAT) unusual situations and Loss of R/T Voice communication between RPAS Pilot and ATCO. Making the comparison among these different scenarios interesting results have been obtained in terms of Safety and Human Performance Key Performance Area (KPA) with analysis of several indicators (Workload; Situational Awareness, Usability, Teamwork, Change of practices and procedure). The results collected from validation activities for both ATCOs and RPAS Pilots side, provided important feedback about technologies that support these Stakeholders and gave important elements on integration of RPAS traffic in a real ATM environment.
机译:SESAR集成RPAS示范活动中最近启动的地中海ATM实时演练(MedALE)项目旨在为欧洲利益相关者提供各种有关现有RPAS资产,实践和操作程序的有效性和限制的指示和建议。此外,该项目将为确定未来必要的改进或修改以符合SESAR计划正在实现的新ATM概念提供有趣的贡献。 MedALE示范计划采用了一系列补充性补充步骤,旨在证明RPAS如何整合到非隔离空域中。考虑到不同级别的复杂性和现实性,采用了一种组合方法:虚拟和构造实时仿真(RTS)和实时试用(LT)。 RTS已于2014年11月进行,而LT活动则计划于2015年5月进行。本文的重点是实时模拟演习,该演习调查了ATC管制员与RPAS飞行员在非隔离空域之间的合作。为了表示一个真实的环境,建立了一个由多个远程仿真平台集成而成的复杂的网络基础架构。特别是由Alenia Aermacchi提供的ENAV ATC模拟系统(由北约M&S CoE托管)和三个RPAS模拟器,分别是SKY-Y全任务模拟器(男无人机),FALCO(战术无人机)和C-FLY(轻型无人机), Selex和Nimbus分别是临时关联的。为进行模拟演习而选择的运行环境是位于撒丁岛的Decimomannu(LIED)机场。在模拟战役中,已经考虑了三种类型的场景。 (1)参考方案-在没有建议解决方案的情况下重现该情况。这意味着该方案不包括RPAS的实施。 (2)解决方案场景-以参考场景为代表,引入了三种不同类型(具有不同性能)的RPAS。在视线(LOS)和超出无线电视线(BRLOS)配置中都分析了此方案。 BRLOS场景使用Thales Alenia Space Italia开发的RAPTOR仿真平台,该平台是SATCOM模拟器,可以在循环中模拟BRLOS C2数据链路通信。 (3)非标称方案-由解决方案方案代表,以RPAS断电,通用航空交通(GAT)异常情况以及RPAS飞行员与ATCO之间的R / T语音通信丢失为代表的异常事件的实施。通过对几个指标(工作量,情境意识,可用性,团队合作,做法和程序的变更)进行分析,使这些不同方案之间的比较在安全和人类绩效关键绩效领域(KPA)方面获得了有趣的结果。从ATCO和RPAS飞行员双方的验证活动中收集的结果,为支持这些利益相关者的技术提供了重要的反馈,并为在真实ATM环境中集成RPAS流量提供了重要的要素。

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