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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >RPAS integration in non-segregated airspace: Safety metrics for tactical planning
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RPAS integration in non-segregated airspace: Safety metrics for tactical planning

机译:RPAS在非隔离空域中的集成:战术规划的安全指标

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摘要

The integration of remotely piloted aircraft system in non-segregated airspace requires a significant effort and new methodologies to underway this challenge. This paper develops a methodology to assess the impact of remotely piloted aircraft system integration by applying safety metrics in tactical planning. This methodology builds five modules to simulate remotely piloted aircraft system introduction in a conventional-aircraft schedule: Base scenario, path modelling, conflict detection, temporary-blocking window and safety metrics. The safety metrics quantify the safety state of the operation by the number of conflicts, the conflict severity and the airway availability. This last safety metric represents a step forward in the decision-making process because it provides the airway risk-suitability to integrate remotely piloted aircraft system. Moreover, the temporary-blocking window underlies the airway availability metric. This concept provides temporary restrictions to the integration of remotely piloted aircraft system depending on the entry times of the conventional aircraft. Finally, this methodology is applied in an air traffic volume of the Spanish upper airspace. Different simulations were performed by introducing remotely piloted aircraft system covering every airway of the airspace. Results provided the temporary-blocking windows that specified the temporary restrictions to remotely piloted aircraft system introduction as a function of the airway flown by the conventional aircraft. Furthermore, the methodology appraised the airway availability characterising the airways depending on the risk impact by the remotely piloted aircraft system.
机译:将遥控飞机系统集成到非隔离空域中需要付出巨大的努力,并且需要新的方法来应对这一挑战。本文提出了一种通过在战术规划中应用安全指标来评估遥控飞机系统集成的影响的方法。该方法学构建了五个模块,以模拟常规飞机时间表中远程驾驶飞机系统的引入:基本方案,路径建模,冲突检测,临时阻止窗口和安全度量。安全度量标准通过冲突数量,冲突严重性和气道可用性来量化操作的安全状态。这最后一个安全指标代表了决策过程中的进步,因为它提供了整合远程驾驶飞机系统的气道风险适应性。此外,临时阻塞窗口是气道可用性指标的基础。该概念根据常规飞机的进入时间为远程驾驶飞机系统的集成提供了临时限制。最后,这种方法被应用于西班牙高空领空的空中交通量。通过引入覆盖空域每个气道的遥控飞机系统进行了不同的模拟。结果提供了临时阻止窗口,这些窗口指定了对远程驾驶飞机系统引入的临时限制,这取决于常规飞机飞行的气道。此外,该方法根据远程驾驶飞机系统对风险的影响,评估了表征气道的气道可用性。

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