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VLC sparse channel estimation in the presence of non-Gaussian clipping noise

机译:存在非高斯削波噪声时的VLC稀疏信道估计

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In this paper a new computationally efficient and high performance channel estimation algorithm is proposed for the indoor visible light communication (VLC) sparse channels in the presence of a clipping noise. The clipping noise is modelled as a Gaussian mixture and, a first time in the literature, the matching pursuit (MP) and the space-alternating expectation- maximization (SAGE) algorithms are combined into the new estimation, called the SAGE-MP algorithm for iteratively estimating the sparse channel coefficients as well as their positions efficiently. The MP algorithm is also employed to determine the initial values of the joint iterative algorithm. Computed simulations indicates that the SAGE-MP algorithm converge in 3 iterations at most and yields excellent bit error rate (BER) and mean-square error (MSE) performances for DC-biased optical OFDM (DCO-OFDM) based systems.
机译:本文针对存在削波噪声的室内可见光通信(VLC)稀疏信道,提出了一种新的计算高效,高性能的信道估计算法。削波噪声被建模为高斯混合,并且在文献中首次将匹配追踪(MP)和空间替代期望最大化(SAGE)算法组合到新的估计中,称为SAGE-MP算法。有效地迭代估计稀疏信道系数及其位置。 MP算法还用于确定联合迭代算法的初始值。计算的仿真表明,SAGE-MP算法最多可在3次迭代中收敛,并且对于基于DC偏置的光学OFDM(DCO-OFDM)的系统,可产生出色的误码率(BER)和均方误差(MSE)性能。

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