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Optimizing Aircraft Trajectories with Multiple Cruise Altitudes in the Presence of Winds

机译:有风时在多巡航高度下优化飞机轨迹

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This study develops a trajectory-optimization algorithm for approximately minimizing aircraft travel time and fuel burn by combining a method for computing minimum-time routes in winds on multiple horizontal planes and an aircraft fuel burn model for generating fuel-optimal vertical profiles. It is applied to assess the potential benefits of flying user-preferred routes for commercial cargo flights operating between Anchorage, Alaska and major airports in Asia and the contiguous United States. Flying wind-optimal trajectories with a fuel-optimal vertical profile reduces average fuel burn of international flights cruising at a single altitude by 1-3%. The potential fuel savings of performing en route step climbs are not significant for many shorter domestic cargo flights that have only one step climb. Wind-optimal trajectories reduce fuel burn and travel time relative to the flight-plan route by up to 3% for the domestic cargo flights. However, for transoceanic traffic, the fuel burn savings could be as much as 10%. The actual savings in operations will vary from the simulation results due to differences in the aircraft models and user-defined cost indices. In general, the savings are proportional to trip length, and depend on the en route wind conditions and aircraft types.
机译:这项研究通过结合一种用于计算多个水平面上风中最小时间路线的方法和一个用于生成燃料最佳垂直剖面的飞机燃料燃烧模型,开发了一种轨迹优化算法,用于将飞机的飞行时间和燃料消耗最小化。它用于评估在安克雷奇,阿拉斯加和亚洲以及邻近美国的主要机场之间运营的商业航线航班中,用户首选航线的潜在收益。具有最佳燃油垂直剖面的飞行风最佳轨迹使在单个高度巡航的国际航班的平均燃油消耗降低了1-3%。对于许多只有一步爬升的较短国内货运航班而言,执行途中爬升的潜在燃料节省并不重要。对于国内货运航班而言,风向最优的轨迹可将燃油消耗和相对于飞行计划路线的旅行时间减少多达3%。但是,对于越洋交通而言,节省的燃油消耗可能高达10%。由于飞机型号和用户定义的成本指数不同,实际的运营节省将与仿真结果有所不同。通常,节省的费用与行程长度成正比,并取决于航路的风况和飞机类型。

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