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Multi-Objective Weight Optimization for Trajectory Planning of an Airplane with Structural Damage

机译:具有结构损伤的飞机轨迹规划的多目标重量优化

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摘要

This paper presents an integrated approach to determine and apply cost criteria weights for the multi-objective optimization (MOO) problem of emergency landing trajectory generation for an aircraft with structural damage. Cost criteria including terrain avoidance, Safety Value Index (SVI), fire cost, hydraulic and fuel costs and safe landing constraints such as touchdown heading and position, airspeed, and glide slope are defined. A potential field strategy is utilized to rapidly generate solutions based on a library of damaged airplane motion primitives including trim states and transition maneuvers between the trim conditions. As is typical, the diverse metrics compete, preventing simultaneous optimization over all objectives. This paper proposes a novel approach to translate the subjective information provided by Pareto analysis into a weighted cost function using an entropy-based weight selection method. The resultant weights reflect the subjective preferences of a decision maker in the total integrated cost metric. Simulation results demonstrate the effectiveness of weight selection based on the proposed method.
机译:本文介绍了一种综合方法,以确定和应用具有结构损伤的飞机应急着陆轨迹生成的多目标优化(MOO)问题的成本标准权重。定义了包括地形避免,安全价值指数(SVI),火灾成本,液压和燃料成本以及安全着陆限制等成本标准,如触地线和位置,空速和滑行斜率等安全降落约束。潜在的场策略用于基于损坏的飞机运动基元文库快速生成解决方案,包括修剪条件之间的修剪状态和过渡机构。与典型的,不同的度量竞争,防止同时优化所有目标。本文提出了一种新颖的方法,将Pareto分析提供的主观信息转化为使用基于熵的权重选择方法的加权成本函数。所得到的重量反映了决策者在总集成成本度量中的主观偏好。仿真结果证明了基于所提出的方法的重量选择的有效性。

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