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Handling Trajectory Uncertainties for Airborne Conflict Management

机译:处理机载冲突管理的轨迹不确定性

摘要

Airborne conflict management is an enabling capability for NASA's Distributed Air-Ground Traffic Management (DAG-TM) concept. DAGTM has the goal of significantly increasing capacity within the National Airspace System, while maintaining or improving safety. Under DAG-TM, autonomous aircraft maintain separation from each other and from managed aircraft unequipped for autonomous flight. NASA Langley Research Center has developed the Autonomous Operations Planner (AOP), an onboard decision support system that provides airborne conflict management (ACM) and strategic flight planning support for autonomous aircraft pilots. The AOP performs conflict detection, prevention, and resolution from nearby traffic aircraft and area hazards. Traffic trajectory information is assumed to be provided by Automatic Dependent Surveillance Broadcast (ADS-B). Reliable trajectory prediction is a key capability for providing effective ACM functions. Trajectory uncertainties due to environmental effects, differences in aircraft systems and performance, and unknown intent information lead to prediction errors that can adversely affect AOP performance. To accommodate these uncertainties, the AOP has been enhanced to create cross-track, vertical, and along-track buffers along the predicted trajectories of both ownship and traffic aircraft. These buffers will be structured based on prediction errors noted from previous simulations such as a recent Joint Experiment between NASA Ames and Langley Research Centers and from other outside studies. Currently defined ADS-B parameters related to navigation capability, trajectory type, and path conformance will be used to support the algorithms that generate the buffers.
机译:空中冲突管理是NASA分布式空中地面交通管理(DAG-TM)概念的一项启用功能。 DAGTM的目标是在保持或改善安全性的同时大幅提高国家空域系统的容量。在DAG-TM下,自主飞机保持彼此分离,并与未配备自主飞行的受管理飞机保持隔离。 NASA兰利研究中心开发了自主运行计划器(AOP),这是一种机载决策支持系统,可为自动驾驶飞机飞行员提供机载冲突管理(ACM)和战略飞行计划支持。 AOP可以检测,预防和解决附近交通飞机和区域危险的冲突。假定交通轨迹信息由自动相关监视广播(ADS-B)提供。可靠的轨迹预测是提供有效ACM功能的关键能力。由于环境影响,飞机系统和性能的差异以及意图信息未知而导致的轨迹不确定性会导致预测误差,从而可能对AOP性能产生不利影响。为了适应这些不确定性,对AOP进行了增强,以沿自有飞机和交通飞机的预测轨迹创建跨轨,垂直和沿轨缓冲区。这些缓冲区的构造将基于先前模拟中指出的预测误差,例如NASA Ames和Langley研究中心之间的近期联合实验以及其他外部研究中指出的预测误差。与导航功能,轨迹类型和路径一致性相关的当前定义的ADS-B参数将用于支持生成缓冲区的算法。

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