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Investigation of GNSS Integrity Augmentation Synergies with Unmanned Aircraft Sense-and-Avoid Systems

机译:无人驾驶飞机感觉和避免系统的GNSS完整增强协同效应的研究

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Global Navigation Satellite Systems (GNSS) can support the development of low-cost and high performance navigation and guidance architectures for Unmanned Aircraft Systems (UAS) and, in conjunction with suitable data link technologies, the provision of Automated Dependent Surveillance (ADS) functionalities for cooperative Sense-and-Avoid (SAA). In non-cooperative SAA, the adoption of GNSS can also provide the key positioning and, in some cases, attitude data (using multiple antennas) required for automated collision avoidance. A key limitation of GNSS for both cooperative (ADS) and non-cooperative applications is represented by the achievable levels of integrity. Therefore, an Avionics Based Integrity Augmentation (ABIA) solution is proposed to support the development of an Integrity-Augmented SAA (IAS) architecture suitable for both cooperative and non-cooperative scenarios. The performances of this IAS architecture were investigated in representative simulation case studies by testing the ability of the SAA system to exploit the predictive (caution) and reactive (warning) integrity flags generated by ABIA. Additionally, the ABIA False Alarm Rate (FAR) and Detection Probability (DP) performances were examined and an initial evaluation of the complementarity with Space-Based and Ground-Based Augmentation Systems (SBAS/GBAS) was accomplished. Simulation results show that the proposed IAS architecture is capable of performing high-integrity conflict detection and resolution when GNSS is used as the primary source of navigation data and there is a clear synergy with state-of-the art SBAS/GBAS in all applicable flight phases.
机译:全球导航卫星系统(GNSS)可以支持无人驾驶飞机系统(UAS)的低成本和高性能导航和指导架构的开发,以及与合适的数据链路技术一起提供自动化依赖监视(广告)功能合作感觉和避免(SAA)。在非合作SAA中,GNSS的采用还可以提供关键定位,并且在某些情况下,在某些情况下,自动碰撞所需的态度数据(使用多个天线)。合作(广告)和非合作申请的GNSS的关键限制由可实现的完整性级别表示。因此,提出了基于航空电子设备的完整性增强(ABIA)解决方案,以支持适用于合作和非合作情景的完整性增强SAA(IAS)架构的开发。通过测试SAA系统利用ABIA生成的预测(警告)和反应(警告)完整标志的能力,在代表性模拟案例研究中研究了该IAS架构的性能。另外,研究了ABIA误报率(远)和检测概率(DP)性能,并完成了与基于空间和基于地基增强系统(SBAS / GBA)互补的初始评估。仿真结果表明,当GNSS用作导航数据的主要源时,所提出的IAS架构能够执行高完整性冲突检测和分辨率,并且在所有适用飞行中都有一个明确的协同作用。阶段。

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