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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Convergence properties of an adaptive lattice filter exploiting nonlinear dynamics of a biochemical reaction system
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Convergence properties of an adaptive lattice filter exploiting nonlinear dynamics of a biochemical reaction system

机译:利用生化反应系统的非线性动力学的自适应晶格滤波器的收敛特性

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摘要

An adaptive lattice filter (ALF) which computes the PARCOR coefficients through a cyclic enzyme system has recently been developed by the author. Using nonlinear dynamics of the cyclic enzyme system, the ALF becomes robust against impulsive noise, and the stability of the estimated AR model can be ensured. The convergence properties of the ALF are studied. First, a theoretical expression for the asymptotic error variance of the PARCOR coefficient is derived. Simulation results are presented, and the theoretical and simulated values show a very good match. Next, the convergence speed of the proposed ALF is compared with that of the simplified ALF. The step sizes are then determined by using the above theoretical expression such that both ALF's achieve the same error variance in steady states. The results show that the proposed ALF has excellent convergence properties than the simplified one.
机译:作者最近开发了一种通过循环酶系统计算PARCOR系数的自适应晶格滤波器(ALF)。利用循环酶系统的非线性动力学,ALF变得对脉冲噪声具有鲁棒性,并且可以确保估计的AR模型的稳定性。研究了ALF的收敛特性。首先,导出PARCOR系数的渐近误差方差的理论表达式。给出了仿真结果,并且理论值和仿真值显示出非常好的匹配。接下来,将所提出的ALF的收敛速度与简化ALF的收敛速度进行比较。然后,通过使用上述理论表达式确定步长,以使两个ALF在稳态下都实现相同的误差方差。结果表明,所提出的ALF具有比简化的ALF优良的收敛性。

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