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Frequency-domain Tuning of Robust Fixed-structure Controllers via Quantum-behaved Particle Swarm Optimizer with Cyclic Neighborhood Topology

机译:通过循环邻域拓扑的量子行为粒子群优化器的频域调整鲁棒固定结构控制器

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This paper presents a constrained particle swarm optimization (PSO) algorithm with a cyclic neighborhood topology inspired by the quantum behavior of particles, and describes its application to the frequency-domain tuning of robust fixed-structure controllers. Two main methodologies for improving the exploration and exploitation performance of the PSO framework are described. First, a PSO scheme with a neighborhood structure based on a cyclic network topology is presented. This scheme enhances the exploration ability of the swarm and effectively reduces the probability of premature convergence to local optima. Second, the above PSO scheme is hybridized using a distributed quantum-principle-based offspring creation mechanism. Such a hybridized PSO framework enables neighboring particles to concentrate the search around the region covered by those particles to refine the candidate solution. A frequency-domain tuning method for fixed-structure controllers is then demonstrated. This method guarantees certain preassigned performance specifications based on the developed PSO technique. A typical numerical example is considered, and the results clearly demonstrate that the proposed PSO scheme provides a novel and powerful impetus with remarkable reliability for robust fixed-structure controller syntheses. Further, an experiment was conducted on a magnetic levitation system to compare the proposed strategy with a well-known frequency-domain tuning method implemented in the MATLAB tool for Structured H-infinity Synthesis. The comparative experimental results validate the effectiveness of the proposed tuning strategy in practical applications.
机译:本文介绍了受粒子量子行为启发的循环邻域拓扑的受约束粒子群优化(PSO)算法,并将其应用于鲁棒固定结构控制器的频域调谐。描述了改进PSO框架的勘探和开发性能的两种主要方法。首先,提出了一种具有基于循环网络拓扑结构的邻域结构的PSO方案。该方案增强了群体的勘探能力,并有效降低了局部最佳趋势的早产趋势。其次,上述PSO方案使用分布式量子原理的后代创建机制杂交。这种杂交的PSO框架使得相邻颗粒能够将搜索集中在由那些颗粒覆盖的区域周围精制候选解决方案。然后对固定结构控制器进行频域调谐方法。该方法根据开发的PSO技术保证某些预先评估的性能规范。考虑了典型的数值示例,结果清楚地表明所提出的PSO方案为强大的固定结构控制器合成具有显着可靠性,提供了一种新颖和强大的推动力。此外,在磁悬浮系统上进行实验,以将所提出的策略与在Matlab工具中实施的众所周知的频域调谐方法进行比较,用于结构化的H-Infinity合成。比较实验结果验证了在实际应用中提出的调谐策略的有效性。

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