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Theoretical derivation of minimum mean square error of RBF based equalizer

机译:基于RBF的均衡器最小均方误差的理论推导

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In this paper, the minimum mean square error (MSE) convergence of the RBF equalizer is evaluated and compared with the linear equalizer based on the theoretical minimum MSE. The basic idea of comparing these two equalizers comes from the fact that the relationship between the hidden and output layers in the RBF equalizer is also linear. For the purpose of theoretically evaluating exact minimum MSE for both RBF and linear equalizer, a linear time dispersive channel whose order is one is selected. As extensive studies of this research, various channel models are selected, which include linearly separable channel, slightly distorted channel, and severely distorted channel models. In this work, the theoretical minimum MSE for both RBF and linear equalizers were computed, compared and the sensitivity of minimum MSE due to RBF center spreads was analyzed. It was found that RBF based equalizer always produced lower minimum MSE than linear equalizer, and that the minimum MSE value of RBF equalizer was obtained with the center spread parameter which is relatively higher (approximately 2-10 times more) than variance of AWGN. As a result of that, it leads to the better bit error rate. This work provides an analytical framework for the practical training of RBF equalizer system.
机译:本文评估了RBF均衡器的最小均方误差(MSE)收敛性,并与基于理论最小MSE的线性均衡器进行了比较。比较这两个均衡器的基本思想来自以下事实:RBF均衡器中隐藏层和输出层之间的关系也是线性的。为了从理论上评估RBF和线性均衡器的精确最小MSE,选择了一个阶次为1的线性时间色散通道。作为本研究的广泛研究,选择了各种通道模型,包括线性可分离通道,轻微失真的通道和严重失真的通道模型。在这项工作中,计算了RBF和线性均衡器的理论最小MSE,并进行了比较,并分析了由于RBF中心扩展而引起的最小MSE的敏感性。已经发现,基于RBF的均衡器总是产生比线性均衡器更低的最小MSE值,并且RBF均衡器的最小MSE值是通过中心扩展参数获得的,该中心扩展参数相对于AWGN的方差相对较高(大约高2-10倍)。结果,它导致更好的误码率。这项工作为RBF均衡器系统的实际训练提供了一个分析框架。

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