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Unmanned Aircraft System Sense and Avoid Integrity and Continuity Risk for Non-Cooperatve Intruders

机译:无人机系统感知并避免非合作入侵者的完整性和连续性风险

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This paper describes new methods to quantify safety of sense and avoid (SAA) functions for Unmanned Aircraft Systems (UAS) by evaluating integrity and continuity risks. These methods can set sensor requirements. The closest point of approach (CPA) distance and time to CPA, tau, are used to measure the hazards associated with the intruder aircraft. This paper presents a method to determine hazard state estimates and estimate error. These variances are used to establish (1) the integrity risk of the SAA system not detecting imminent loss of self-separation and (2) the probability of false alert, the continuity risk. A preliminary analysis assumes a constant relative velocity model with normal, independent and stationary measurement errors. A sensitivity analysis evaluates the impact on integrity and continuity of sensor noise, range and sample interval. This research can set potential SAA sensor requirements for UAS integration into the National Airspace System.
机译:本文介绍了通过评估完整性和连续性风险来量化无人飞机系统(UAS)的感知安全和避免安全(SAA)功能的新方法。这些方法可以设置传感器要求。距CPA的最接近进场点(CPA)距离和时间tau用于测量与入侵飞机相关的危害。本文提出了一种确定危险状态估计值和估计误差的方法。这些差异用于确定(1)SAA系统未检测到即将发生的自我分离损失的完整性风险,以及(2)错误警报的可能性,即连续性风险。初步分析假设一个恒定的相对速度模型,该模型具有正常,独立和固定的测量误差。灵敏度分析评估对传感器噪声,范围和采样间隔的完整性和连续性的影响。这项研究可以为将UAS集成到国家空域系统中设置潜在的SAA传感器要求。

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