首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Geographical area selection and construction of a corresponding routing grid used for in-flight management system flight trajectory optimization
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Geographical area selection and construction of a corresponding routing grid used for in-flight management system flight trajectory optimization

机译:用于飞行管理系统飞行轨迹优化的地理区域选择和相应的路由网格的构建

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This paper proposes a new method for selecting an ellipse-shaped geographical area and constructing a routing grid that circumscribes the contour of the designated area. The resulting grid describes the set of points used by the flight trajectory optimization algorithms to determine an aircraft's optimal flight trajectory as a function of given particular atmospheric conditions. This method was developed with the intent of its employment in the context of Flight Management System trajectory optimization algorithms, but can be used in Air Traffic Management environments as well. The routing grid limits the trajectory's maximal total ground distance (between the departure and destination airports), maximizes the geographical area (for a better consideration of the wind conditions) and minimizes the number of grid nodes. The novelty of the proposed method resides in the fact that it allows a distinct and independent parameterization and control of the ellipse's total surface, and the required size of the take-off/landing procedure maneuvering areas at the departure/destination airports. The ellipse contour constructed using this method is, therefore, well adapted to the particular configuration of the trajectory for which the optimization is performed. Each design variables' influence is presented, as well as a set of routing grids generated for trajectories corresponding to different total flight distances, and were further compared with real flight trajectory data retrieved using the website Flight Aware.
机译:本文提出了一种选择椭圆形地理区域并构造围绕指定区域轮廓的路由网格的新方法。生成的网格描述了飞行轨迹优化算法所使用的一组点,用于根据给定的特定大气条件确定飞机的最佳飞行轨迹。开发此方法的目的是在飞行管理系统轨迹优化算法的背景下使用该方法,但也可以在空中交通管理环境中使用。路由网格限制了轨迹的最大总地面距离(在出发机场和目的地机场之间),最大化了地理区域(为了更好地考虑风况),并且最小化了网格节点的数量。所提出的方法的新颖性在于,它允许对椭圆的总表面进行独特且独立的参数化和控制,以及起飞/降落机场的起飞/着陆程序操纵区域的所需大小。因此,使用该方法构造的椭圆轮廓非常适合于对其进行优化的轨迹的特定配置。给出了每个设计变量的影响,以及为对应于不同总飞行距离的轨迹生成的一组路由网格,并将它们与使用网站Flight Aware检索的实际飞行轨迹数据进行了比较。

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