Fixed-order H∞ loop-shaping synthesis: A time domain approach

P. Feyel, G. Duc, G. Sandou
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引用次数: 3

Abstract

This work deals with a new approach of loop-shaping H∞ synthesis based on the Particle Swarm Optimization (PSO) algorithm. Indeed, such stochastic algorithms are interesting to solve problems based on complex industrial specifications and so seem to be particularly well suited to optimal robust controller synthesis. In this work we investigate the optimal weight tuning along a fixed order controller computation without any structural assumption on the searched filters except of course their order. The absence of any structural assumption is important to avoid affecting the quality of the solution towards a complex specification and allows us to reduce the synthesis problem to a simple time domain one with static scalings in place of frequency weights. Using a version of PSO well adapted for high dimensional problems, we succeed in computing a fixed-order controller for complex industrial specifications toward a generic non constraint fitness with quite reasonable computing time.
定阶H∞环整形合成:一种时域方法
本文研究了一种基于粒子群优化算法(PSO)的环形H∞综合新方法。事实上,这种随机算法对于解决基于复杂工业规范的问题很有趣,因此似乎特别适合于最优鲁棒控制器合成。在这项工作中,我们研究了沿固定阶控制器计算的最优权值调整,而不需要对搜索滤波器进行任何结构假设,当然除了它们的阶数。没有任何结构假设对于避免影响复杂规范的解决方案的质量非常重要,并允许我们将合成问题减少到一个简单的时域问题,用静态缩放代替频率权重。利用一种适用于高维问题的粒子群算法,我们成功地在相当合理的计算时间内计算出了复杂工业规范的固定阶控制器,达到了一般的无约束适应度。
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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