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Design of multi-objective trajectory optimization with impact angle and time constraints based on fuzzy

机译:基于模糊的冲击角和时间约束的多目标轨迹优化设计

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In order to improve the missile penetration probability, the impact angle and time of a missile should be coordinated. This paper introduces the Gauss pseudo-spectral method to the trajectory planning of a missile, and multi-objective optimal planning. Based on the mass point model of missile, the optimal trajectory planning problem, which have the constraints of terminal constraint, overload and no-fly zone constraints, is transformed to find the solution of a nonlinear programming problem by the pseudo-spectral method. The cost function was improved, according to the principle of more important target has a higher satisfaction-degree at different time, based on the optimization of the fuzzy, by adjusting the parameters to obtain the requirements of optimization and the importance rating of the optimal trajectory at the same time, realize the control of direction and time, and managed to bypass the no-fly zone, and the minimum energy consumption. Finally, missiles coordinated attack conditions are simulated. Simulation results show the effectiveness of the proposed algorithm and reference value for engineering practice.
机译:为了提高导弹的穿透概率,应该对导弹的撞击角度和时间进行协调。本文将高斯伪谱方法引入到导弹的弹道规划中,并提出了多目标最优规划。基于导弹的质点模型,对具有终端约束,过载和禁飞区约束的最优轨迹规划问题进行了变换,以伪谱方法求解了非线性规划问题的解决方案。改进了成本函数,根据重要目标在不同时间具有更高满意度的原则,在模糊优化的基础上,通过调整参数以获得优化要求和最优轨迹的重要性等级同时,实现了方向和时间的控制,并设法绕过了禁飞区,并实现了最低能耗。最后,模拟了导弹协同攻击的条件。仿真结果表明了所提算法的有效性,并为工程实践提供了参考价值。

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