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Separate block-based parameter estimation method for Hammerstein systems

机译:Hammerstein系统的基于块的单独参数估计方法

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摘要

Different from the output–input representation-based identification methods of two-block Hammerstein systems, this paper concerns a separate block-based parameter estimation method for each block of a two-block Hammerstein CARMA system, without combining the parameters of two parts together. The idea is to consider each block as a subsystem and to estimate the parameters of the nonlinear block and the linear block separately (interactively), by using two least-squares algorithms in one recursive step. The internal variable between the two blocks (the output of the nonlinear block, and also the input of the linear block) is replaced by different estimates: when estimating the parameters of the nonlinear part, the internal variable between the two blocks is computed by the linear function; when estimating the parameters of the linear part, the internal variable is computed by the nonlinear function. The proposed parameter estimation method possesses property of the higher computational efficiency compared with the previous over-parametrization method in which many redundant parameters need to be computed. The simulation results show the effectiveness of the proposed algorithm.
机译:与两块式Hammerstein系统的基于输出输入表示的识别方法不同,本文针对两块式Hammerstein CARMA系统的每个块,采用一种单独的基于块的参数估计方法,而没有将两个部分的参数组合在一起。这个想法是通过在一个递归步骤中使用两个最小二乘算法,将每个模块视为一个子系统,并分别(交互式)估计非线性模块和线性模块的参数。两个块之间的内部变量(非线性块的输出以及线性块的输入)被不同的估算值取代:估算非线性零件的参数时,两个块之间的内部变量由线性函数估计线性部分的参数时,内部变量由非线性函数计算。与先前的过参数化方法相比,所提出的参数估计方法具有较高的计算效率,在后者中,需要计算许多冗余参数。仿真结果表明了该算法的有效性。

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