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The Trade-off Between Trajectory Predictability and Potential Fuel Savings for Continuous Descent Operations

机译:连续下降操作的轨迹可预测性与潜在燃油节省之间的权衡

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Continuous Descent Operation with a required time of arrival is an environmentally friendly procedure that reduces fuel consumption and emissions. But its idle-thrust demand during flight limits the predictability of trajectory in time dimension, which can be reflected in constrained feasible arrival time window. This paper focuses on finding out the tradeoff relationship between fuel savings and trajectory predictability, with a fixed top of descent. Two conditions under the same scenario are considered and compared in the study. Results show that a time window of 16 seconds could be obtained within a tiny deviation from the minimum fuel consumption and the reachable time window can be enlarged as fuel cost increases. There exists a typical point of extra fuel cost, above which the rate of feasible time window extension becomes rather small.
机译:具有所需到达时间的连续下降操作是一种环保的程序,可减少燃油消耗和排放。但是其在飞行过程中的怠速推力需求限制了轨迹在时间维度上的可预测性,这可以反映在受约束的可行到达时间窗口内。本文着重于找出燃料节省与轨迹可预测性之间的权衡关系,并具有固定的下降顶部。在研究中考虑并比较了在相同情况下的两种情况。结果表明,在最小燃油消耗的微小偏差内可获得16秒的时间窗口,并且随着燃料成本的增加,可达到的时间窗口可以扩大。存在一个典型的额外燃料成本点,在该点上,可行的时间窗口扩展率变得相当小。

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