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Automated Flight Track Taxonomy for Measuring Benefits from Performance Based Navigation

机译:自动飞行路径分类用于测量基于性能的导航效果

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A flight track taxonomy is presented which decomposes a set of radar tracks according to their lateral, vertical, and conformance segments. These identifications are based upon a novel set of filtering, segment identification and track decomposition algorithms. These algorithms have been optimized such that they can batch process large data sets efficiently and robustly. Radar filtering algorithms rely upon a series of mixed nonparametric least squares filters, which are shown to isolate and minimize several sources of radar error. Next, a generalized change point analysis is described and used to identify lateral and vertical maneuvers within each radar track. Large collections of radar tracks are approximated by a reduced order module using Proper Orthogonal Decomposition (POD) and then a k-means clustering technique is applied to group these simplified tracks into common flows. In conjunction with a series of coordinate projections, this flow reduction is used measure conformance to existing procedures. In particular, deviations from nominal procedure paths due to radar vectors, direct-to clearance, and turn onto final may be identified and catalogued. This taxonomy provides numerous metrics which are valuable for measuring the benefits from performance based navigation. Two examples are demonstrated where the taxonomy is applied to the analysis of terminal descent profiles and the lateral conformance of an area navigation (RNAV) departure.
机译:提出了一种飞行路径分类,其根据其横向,垂直和一致性段分解一组雷达轨道。这些标识基于一组新颖的滤波,段识别和跟踪分解算法。已经优化了这些算法,使得它们可以有效且鲁棒地批处理大数据集。雷达滤波算法依赖于一系列混合的非参数最小二乘滤波器,其被示出为隔离和最小化若干雷达误差源。接下来,描述广义改变点分析并用于识别每个雷达轨道内的横向和垂直机动。使用适当的正交分解(POD)的缩小订单模块近似雷达轨道的大集合近似值,然后将这些简化的轨道应用于普通流量。结合一系列坐标投影,使用该流量衡量现有程序的一致性。特别地,可以识别和编目由于雷达矢量引起的标称过程路径的偏差和转向最终的偏差。该分类系统提供了许多指标,可用于测量基于性能的导航的好处。证明了分类法应用于终端血液血液的分析以及区域导航(RNAV)出发的横向一致性的分类。

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