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Collision Risk Assessment between UAS and Landing Aircraft in Restricted Airspace Surrounding an Airport using 3D Monte-Carlo Simulation

机译:采用3D Monte-Carlo仿真在机场围绕机场限制空域的UAS和着陆飞机的碰撞风险评估

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The availability of off the shelf, easy to control, unmanned aerial systems (UAS) on the market has led to an increase in report of UAS incursion into aerodrome. Such incursions would often result in lengthy airport shutdowns and cause disruption to air traffic operations throughout the region. Additionally, advancement in UAS flight control, motor efficiency, and battery life made the UAS more attractive to cargo operators for carrying parcels, both in urban area and near major port of call. While advancements have been made in the past decade in detection and avoidance of UAS traffics, the systems depend on either having fully cooperative traffic or sensor capability beyond what is currently available. This paper presents a 3D collision risk assessment model that was created to assess both the collision risk posed by an intruding non-cooperative UAS, as well as the safety risk associated with UAS operating within the 5km restricted airspace using predetermined route. Monte-Carlo simulations based on the 3D flight dynamics of the UAS are used to calculate the probability of collision at each time-step under the different scenarios.
机译:在市场上脱离货架,易于控制的空中系统(UAS)的可用性导致UAS入侵的报告增加到机场。此类离职通常会导致冗长的机场停机并导致整个地区的空中交通运营中断。此外,UAS飞行控制的进步,电机效率和电池寿命使UAS更具吸引力的货物运营商,用于在城市地区和近长的主要港口携带包裹。虽然在过去十年中,在检测和避免UAS流量方面取得了进步,但系统依赖于具有超出目前可用的交通或传感器功能的完全合作流量或传感器能力。本文介绍了3D碰撞风险评估模型,以评估侵入非协作UAS所带来的碰撞风险,以及使用预定路线在5kM限制空域内运行的UA相关的安全风险。基于UA的3D飞行动态的Monte-Carlo模拟用于计算不同场景下每个时间步骤的碰撞概率。

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