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A hybrid intelligent technique for model order reduction in the delta domain: a unified approach

机译:用于达到达域的模型顺序的混合智能技术:统一的方法

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摘要

This paper presents a unified method for reduced-order modelling of higher-order discrete-time systems in the complex delta domain. The approach is unified in the sense that it is fundamentally discrete time, but at a high sampling frequency converges to its continuous-time counterpart. New hybrid algorithms with a blend of grey wolf optimizer (GWO) and chaotic firefly algorithm (CFA) using iterative chaotic map have been proposed for the order reduction of large-scale systems in the delta domain. GWO explores the entire search domain while CFA carries out local search in the proposed hybrid technique with different tuning parameters of FA improvised by one-dimensional iterative map, thus improving the convergence speed and the quality of the solutions. Two examples of single-input single-output systems are taken up to establish the usefulness of the proposed method. The hybrid approach not only yields good matching in the delta domain, but also delivers quality solutions (minimum fitness value) and provides faster convergence speed than the existing techniques. The performances of the reduced systems are also compared with their respective original systems as well as reduced systems reported in the literature in terms of time-domain and frequency-domain parameters. The proposed topology also proved its superiority in terms of some benchmark error indices well established in the literature of systems approach and control.
机译:本文介绍了复杂增量域中的高阶离散时间系统的统一方法。这种方法是统一的,即它基本上是离散的时间,而是在高采样频率会聚到其连续时间对应物。已经提出了使用灰羽优化器(GWO)和混沌萤火虫算法(CFA)混合的新的混合算法(CFA),以减少三角洲域中的大型系统的顺序。 GWO探索整个搜索域,而CFA在提出的混合技术中进行本地搜索,通过一维迭代地图改进FA的不同调谐参数,从而提高了汇聚速度和解决方案的质量。采用单输入单输出系统的两个示例以确定所提出的方法的有用性。混合方法不仅在三角洲域中产生良好的匹配,而且还提供质量解决方案(最小健身值)并提供比现有技术更快的收敛速度。还将减少系统的性能与各自的原始系统以及在文献中的减少系统的比较,以时间域和频域参数在文献中报告。拟议的拓扑也证明了其在系统方法和控制文献中建立的一些基准错误指数的优越性。

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