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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >A New Optimal Guidance Law with Impact Time and Angle Constraints Based on Sequential Convex Programming
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A New Optimal Guidance Law with Impact Time and Angle Constraints Based on Sequential Convex Programming

机译:基于顺序凸编程的影响时间和角度约束的新的最优指导法

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摘要

This paper proposed an optimal time-varying proportional navigation guidance law based on sequential convex programming. The guidance law can achieve the desired impact angle and impact time with look angle and lateral acceleration constraints. By treating the multiconstraints’ guidance problem as an optimization problem and changing the independent variable to linearize the problem and constraints, the original nonlinear and nonconvex problem is transformed into a series of convex optimization problem so that it can be quickly solved by sequential convex programming. Numerical simulations compared to nonlinear programming and traditional analytical guidance law demonstrate the effectiveness and efficiency of the proposed algorithm. Finally, the proposed guidance law is verified to satisfy different impact time periods and impact angle constraints.
机译:本文提出了一种基于顺序凸编程的最佳时变比例导航指导法。 指导法可以通过看起来的角度和横向加速度约束来实现所需的冲击角和冲击时间。 通过将多数组的指导问题视为优化问题并改变独立变量来线性化问题和约束,原始非线性和非耦合问题被转换为一系列凸优化问题,以便通过顺序凸编程快速解决。 与非线性规划和传统分析指导法相比的数值模拟证明了所提出的算法的有效性和效率。 最后,核实拟议的指导法核实以满足不同的影响时间段和影响角度约束。

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