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Parametric control to second-order linear time-varying systems based on dynamic compensator and multi-objective optimization

机译:基于动态补偿器的二阶线性时变系统参数控制和多目标优化

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This paper investigates the parametric design approach to second-order linear time-varying systems by using dynamic compensator and multi-objective optimization. On the basis of the solution to a type of second-order generalized Sylvester matrix equations, the generally completely parameterized expression of the dynamic compensator is established, meanwhile, the completely parametric forms of left and right eigenvectors are obtained, it also provides two groups of arbitrary parameters. With the parametric method, the closed-loop system can be converted into a linear constant one with desired eigenstructure. Simultaneously, it also considers a novel technique to multi-objective optimization. Multiple performance indexes such as regional pole assignment, low sensitivity, disturbance attenuation, robustness degree and low gains are formulated by arbitrary parameters. Based on the above indexes, a synthetic objective function which includes each performance index weighted is formulated to express the comprehensive performances of control system. By using the degrees of freedom in arbitrary parameters, a dynamic compensator can be established by solving a multi-objective optimization problem. Finally, an example of spacecraft rendezvous problem is presented to verify that the parametric approach is effective. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文通过使用动态补偿器和多目标优化来调查二阶线性时变系统的参数化设计方法。基于对二阶通用Sylvester矩阵方程的解决方案的基础上,通常建立动态补偿器的大致参数化表达式,同时获得了左右特征向量的完全参数形式,它还提供两组任意参数。利用参数方法,闭环系统可以与所需的特征结构转换成线性常数。同时,它还考虑了一种新的多目标优化技术。通过任意参数制定了多种性能指标,例如区域极值分配,低灵敏度,干扰衰减,鲁棒度和低收益。基于上述索引,配制了包括每个性能指标加权的合成目标函数,以表达控制系统的综合性能。通过使用任意参数的自由度,可以通过解决多目标优化问题来建立动态补偿器。最后,提出了宇宙飞船集合问题的示例以验证参数方法是否有效。 (c)2019 Elsevier Inc.保留所有权利。

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