Genetic Algorithms for Satellite Launcher Attitude Controller Design

P. R. Silva, I. Abreu, Paulo Almeida Forte, Henrique Mariano Costa do Amaral
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引用次数: 4

Abstract

For proper attitude control of space-crafts conventional optimal Linear Quadratic (LQ) controllers are designed via trial-and-error selection of the weighting matrices. This time consuming method is inefficient and usually results in a high order complex controller. Therefore, this work proposes a genetic algorithm (GA) for the search problem of the attitude controller gains of a satellite launcher. The GA's fitness function considers some control features as eigenstructure, control goals and constraints. According to simulation results, the search problem of controller parameters with evolutionary algorithms was faster than usual approaches and the designed controller reached all the specifications with satisfactory time responses. These results could improve engineering tasks by speeding up the design process and reducing costs.
卫星发射装置姿态控制器设计的遗传算法
为了实现航天器的姿态控制,通过反复选择权矩阵,设计了传统的最优线性二次控制器。这种耗时且效率低的方法通常会导致高阶复杂控制器。为此,本文提出了一种基于遗传算法的卫星发射姿态控制器增益搜索问题。遗传算法的适应度函数考虑了一些控制特征作为特征结构、控制目标和约束。仿真结果表明,采用进化算法搜索控制器参数的速度比一般方法快,所设计的控制器在满足时间响应的情况下达到了所有规格。这些结果可以通过加快设计过程和降低成本来改善工程任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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