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Adaptive MMSE Equalizer for Optical Multipath Dispersion in Indoor Visible Light Communication

机译:适用于室内可见光通信中光多径色散的自适应MMSE均衡器

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Multipath dispersion results from optical signals passing through more than one path. In this paper, we investigate a non-directed line of sight (LOS) model using white light emitting diode illumination. Typically in such a link, the optical signals are modeled as a reflection component and a directed LOS component over optical wireless (OW) channels. However, inter-symbol interference (ISI) induced by multipath dispersion critically influences the performance of OW communications. In this paper, we propose the adaptive minimum mean squared error (MMSE) equalizer scheme to suppress the multipath ISI, since this scheme can minimize the mean square error (MSE) between the desired equalizer output and the actual equalizer output. We compared the following two algorithms: Least mean square and recursive least square. Our computer simulations demonstrated that visible light communication using an adaptive MMSE equalizer can alleviate the serious effects of optical multipath dispersion.
机译:多径色散是由光信号通过多条路径引起的。在本文中,我们研究了使用白色发光二极管照明的非定向视线(LOS)模型。通常,在这样的链路中,光信号被建模为光无线(OW)通道上的反射分量和定向LOS分量。但是,由多径色散引起的符号间干扰(ISI)严重影响OW通信的性能。在本文中,我们提出了一种自适应最小均方误差(MMSE)均衡器方案来抑制多径ISI,因为该方案可以最小化所需均衡器输出和实际均衡器输出之间的均方误差(MSE)。我们比较了以下两种算法:最小均方和递归最小二乘。我们的计算机仿真表明,使用自适应MMSE均衡器的可见光通信可以减轻光学多径色散的严重影响。

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