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Volterra filter modeling of a nonlinear discrete-time system based on a ranked differential evolution algorithm

机译:基于分级微分进化算法的非线性离散时间系统的Volterra滤波器建模

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This paper presents a ranked differential evolution (RDE) algorithm for solving the identification problem of nonlinear discrete-time systems based on a volterra filter model. In the improved method, a scale factor, generated by combining a sine function and randomness, effectively keeps a balance between the global search and the local search. Also, the mutation operation is modified after ranking all candidate solutions of the population to help avoid the occurrence of premature convergence. Finally, two examples including a highly nonlinear discrete-time rational system and a real heat exchanger are used to evaluate the performance of the RDE algorithm and five other approaches. Numerical experiments and comparisons demonstrate that the RDE algorithm performs better than the other approaches in most cases.
机译:本文提出了一种基于Volterra滤波器模型的有序差分演化(RDE)算法,用于解决非线性离散时间系统的辨识问题。在改进的方法中,通过组合正弦函数和随机性而生成的比例因子有效地保持了全局搜索和局部搜索之间的平衡。同样,在对总体的所有候选解进行排序之后,可以修改突变操作,以帮助避免过早收敛的发生。最后,使用两个示例(包括一个高度非线性的离散时间有理系统和一个实际的热交换器)来评估RDE算法和其他五种方法的性能。数值实验和比较表明,在大多数情况下,RDE算法的性能优于其他方法。

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