A new fuzzy logic application to search the optimal step size for NLMS beamforming

W. Orozco-Tupacyupanqui, H. Meana, M. Nakano-Miyatake
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引用次数: 3

Abstract

This paper proposes a new application based on fuzzy logic to search the optimal Step Size of the Normalized Least Mean Square (NLMS) algorithm for beamforming systems. The searching of the step size depends on the fuzzy inference results of an estimation of the final value of the cost function (J E ) instead of using its instantaneous value. The update of the step-size is performed outside of the adaptive algorithm and given it feedback by the fuzzy inference system; therefore the step-size is still fixed for the NLMS algorithm but variable for the complete searching scheme. Simulation experimental results show that a useful approximation of the optimal step-size can be obtained for different conditions of signal-to-noise plus interference ratios (SINR) and the minimization of the mean square error for the adaptive beamforming algorithm is also achieved.
一种新的模糊逻辑应用于NLMS波束形成的最佳步长搜索
本文提出了一种基于模糊逻辑的波束形成系统的归一化最小均方(NLMS)算法的最优步长搜索方法。步长的搜索依赖于成本函数(J E)最终值估计的模糊推理结果,而不是使用其瞬时值。步长更新在自适应算法之外进行,并由模糊推理系统反馈;因此,对于NLMS算法,步长仍然是固定的,而对于完整的搜索方案,步长是可变的。仿真实验结果表明,在不同的信噪比(SINR)条件下,可以得到最优步长的近似解,实现了自适应波束形成算法均方误差的最小化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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