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Minimization of aircraft fuel consumption subjected to arrival time constraint

机译:最小化飞机燃料消耗抵达时间约束

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Purpose - This paper aims to minimize aircraft fuel consumption during the cruise phase when the flight is subjected to a specific time of arrival for different weights and distances. Design/methodology/approach - The approach adopted herein uses sequential quadratic programming algorithm from MATLAB optimization toolbox, which includes a mathematical model of a jet airliner based on the Base of Aircraft Data as a function evaluator, to find out the impact of meet-time of arrival constraints on fuel consumption. The cruising speeds at predefined segments and the altitude are defined as the design variables. Findings - The algorithm determines the optimum cruise altitudes and speeds for minimum fuel consumption in the case of no time constraints, also, for different time constraints where the flight time shall be reduced by increasing speed and lowering the altitude in most of the investigated cases. Practical implications - The algorithm computes the optimum speed and the altitude according to different flight scenarios with the meet-time of arrival constraints for minimum fuel consumption which affects the direct operating cost of the flight. The algorithm might greatly help in decisionmaking for the meet-time of arrival operations. Originality/value - Developing an algorithm to optimize the speed and the altitude of an aircraft based on weight and range for minimization of fuel consumption. It is a pioneer study in the literature that deals with the effect of meet-time constraints on fuel consumption.
机译:目的 - 本文旨在最大限度地减少在巡航阶段期间的飞机燃料消耗,当飞行受到不同权重和距离的特定时间。设计/方法/方法 - 本文采用的方法采用MATLAB优化工具箱的顺序二次编程算法,该算法包括基于飞机数据基础作为函数评估器的喷射机班机的数学模型,以找出满足时间的影响抵达限制对燃料消耗。预定义段和高度的巡航速度被定义为设计变量。结果 - 该算法在没有时间限制的情况下确定最低燃料消耗的最佳巡航高度和速度,而且对于在大多数研究中,通过增加速度和降低海拔地区的飞行时间来降低飞行时间的不同时间约束。实际意义 - 该算法根据不同的飞行方案计算最佳速度和高度,与最小燃料消耗的满足时间限制,影响飞行直接运营成本的最小燃料消耗。该算法可能在决策中大大帮助到达抵达时间。原创性/值 - 开发一种算法,以基于重量和范围来优化飞机的速度和高度,以便最小化燃料消耗。它是文献中的先驱研究,涉及满足时间限制对燃料消耗的影响。

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