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Airspace Risk Management for UAVs A Framework for Optimising Detector Performance Standards and Airspace Traffic using JARUS SORA

机译:无人机空域风险管理使用JARUS SORA优化探测器性能标准和空域交通的框架

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The Joint Authority for Rulemaking on UAS (JARUS) recently released a process for managing air and ground risk for Unmanned Aerial Vehicle (UAV) operations: the Specific Operations Risk Assessment (SORA) [1]. This paper focuses on the air risk element, where the challenge of balancing equipment performance for detect and avoid functions against the likelihood they will be needed (encounter rates) is further complicated by safety and costs implications. To date, attempts to achieve this balance have largely been conducted using qualitative measures. The problem with this approach is that it risks superimposing unnecessary cost burdens on industry without transparent evidence it is delivering the perceived safety benefit, or conversely, the process results in under-estimates for encounter rates with inadequate performance standards stipulated. To address this issue, we introduce a Bayesian framework that explicitly links encounter rate exposure, detection performance, cost and safety. We then detail how the framework can be deployed to appropriately match airspace characteristics with suitable equipment performance levels, whilst optimising safety and cost. As part of our testing regime, we identified that a mis-representation of actual traffic encounter rates creates compounding implications for detector performance standards and safety. Accordingly, we incorporate our efforts to characterise a region of Australian airspace, and contrast it with a the qualitative characterisation methods employed within the SORA.
机译:UAS规则制定联合机构(JARUS)最近发布了一种管理无人飞行器(UAV)运营的空中和地面风险的流程:特定运营风险评估(SORA)[1]。本文着重于空气风险因素,在此方面,平衡设备性能以检测和避免功能与将需要它们的可能性(相遇率)之间的挑战因安全性和成本影响而变得更加复杂。迄今为止,为达到这种平衡而进行的尝试主要是使用定性手段进行的。这种方法的问题在于,如果没有透明的证据表明它正在提供可感知的安全效益,则有可能给行业增加不必要的成本负担,或者相反,该过程会导致对所规定的性能标准不足的遭遇率的估计不足。为了解决这个问题,我们引入了贝叶斯框架,该框架明确地链接了遇到率暴露,检测性能,成本和安全性。然后,我们将详细介绍如何部署框架,以使空域特征与合适的设备性能水平相匹配,同时优化安全性和成本。作为测试方案的一部分,我们发现对实际流量遭遇率的错误表述会给检测器性能标准和安全性带来复杂的影响。因此,我们将我们的努力用于表征澳大利亚领空的区域,并将其与SORA中采用的定性表征方法进行对比。

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