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首页> 外文期刊>Journal of Lightwave Technology >Sparsity-Aware Nonlinear Equalization With Greedy Algorithms for LED-Based Visible Light Communication Systems
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Sparsity-Aware Nonlinear Equalization With Greedy Algorithms for LED-Based Visible Light Communication Systems

机译:基于LED的可见光通信系统的稀疏感知非线性均衡与贪婪算法

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The nonlinearity of light emitting diode (LED) in visible light communication (VLC) systems is considered as one major limiting factor that deteriorates the systems' performance. In this paper, the nonlinear equalization in VLC systems is deemed to be a sparse recovery problem. Three different greedy sparse recovery algorithms, namely matching pursuit (MP), orthogonal MP (OMP), and regularized OMP (ROMP) are employed in constructing the sparsity-aware nonlinear equalizer for LED-based VLC systems. By adopting these greedy algorithms, the number of kernels in the nonlinear equalizer can be significantly reduced with minor performance loss, which enables low-complexity and high-performance nonlinear equalization. The performance of the proposed sparsity-aware nonlinear equalizers is investigated experimentally in orthogonal frequency division multiplexing (OFDM) based VLC systems with commercially available red-green-blue LEDs. The results show that, with the help of greedy sparse recovery algorithms, the number of kernels in nonlinear equalization can be reduced by 32.5%similar to 62.5% for only 0.5-dB signal-to-noise ratio loss. The compatibility of the proposed sparsity-aware nonlinear equalizer in a similar to 1 Gbit/s adaptive bit-power loading OFDM VLC system is also experimentally demonstrated. The ROMP-based nonlinear equalizer is found to be the best choice that offers the optimal balance between performance and complexity, which achieves almost the same performance as the conventional Volterra time domain nonlinear equalizer in OFDM VLC systems with approximately halved number of kernels.
机译:可见光通信(VLC)系统中发光二极管(LED)的非线性被认为是使系统性能下降的主要限制因素。在本文中,VLC系统中的非线性均衡被视为稀疏恢复问题。在构建基于LED的VLC系统的稀疏感知非线性均衡器时,采用了三种不同的贪婪稀疏恢复算法,即匹配追踪(MP),正交MP(OMP)和正则化OMP(ROMP)。通过采用这些贪婪算法,可以大幅减少非线性均衡器中的内核数,而性能损失较小,从而可以实现低复杂度和高性能的非线性均衡。在具有商用红绿蓝LED的基于正交频分复用(OFDM)的VLC系统中,通过实验研究了提出的稀疏感知非线性均衡器的性能。结果表明,借助贪婪的稀疏恢复算法,仅在0.5 dB的信噪比损失下,非线性均衡中的内核数可以减少32.5%,与62.5%相似。还通过实验证明了所提出的稀疏感知非线性均衡器在类似于1 Gbit / s自适应比特功率负载OFDM VLC系统中的兼容性。人们发现,基于ROMP的非线性均衡器是在性能和​​复杂性之间实现最佳平衡的最佳选择,与具有约一半内核数量的OFDM VLC系统中的传统Volterra时域非线性均衡器实现了几乎相同的性能。

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