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首页> 外文期刊>Applied Soft Computing >Differential evolution-based nonlinear system modeling using a bilinear series model
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Differential evolution-based nonlinear system modeling using a bilinear series model

机译:使用双线性级数模型的基于差分演化的非线性系统建模

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摘要

This paper presents a new modeling method for nonlinear dynamic systems based on using bilinear series model. Basically, bilinear model is an extension of infinite impulse response (IIR) filter and belongs to the recursive nonlinear system model, i.e., its past output signals will heavily affect the present output. This kind of model can efficiently approximate a large class of nonlinear systems with fewer parameters than other non-recursive models. To adjust the model kernels, we here adopt an evolutionary computation called the differential evolution (DE) algorithm. This algorithm is based on real-valued manipulations and has a good convergence property for finding the global solution or the near global solution of optimized problem. Design steps of DE-based nonlinear system modeling are clearly given in this study. Finally, two kinds of digital systems are illustrated to demonstrate the efficiency of the proposed method.
机译:提出了一种基于双线性级数模型的非线性动力学系统建模方法。基本上,双线性模型是无限脉冲响应(IIR)滤波器的扩展,属于递归非线性系统模型,即其过去的输出信号将严重影响当前的输出。与其他非递归模型相比,这种模型可以用更少的参数有效地近似一类大型非线性系统。为了调整模型内核,我们在这里采用一种称为微分进化(DE)算法的进化计算。该算法基于实值操作,并且具有良好的收敛性,可用于找到优化问题的全局解或近似全局解。本研究明确给出了基于DE的非线性系统建模的设计步骤。最后,说明了两种数字系统,以证明所提方法的有效性。

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