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Performance of Power Allocation and Iterative Receiver in SM-VLC System with Block Markov Superposition Transmission

机译:块马尔可夫叠加传输的SM-VLC系统中功率分配和迭代接收器的性能

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The performance of spatial modulation (SM) in an indoor multiple-input multiple-output visible light communication (MIMO-VLC) system is severely limited by the inherent strong correlations of the optical MIMO channels. To cope with this problem, a power allocation scheme by minimizing the bit-error rate (BER) bound is proposed in this paper, which can achieve a trade-off between the computational complexity and BER performance. On the other hand, a recently proposed coding scheme called block Markov superposition transmission (BMST) is constructed and combined with SM-VLC, where a genie-aided lower bound is also presented to predict the BER performance in the low-BER region. Furthermore, an iterative receiver, which exchanges messages between the BMST decoder and the soft-in soft-out (SISO) SM demapper, is employed to improve the BER performance. Simulation results demonstrate that the BMST-SM-VLC system with power allocation and iterative receiver can achieve significant coding gain even over strongly correlated optical MIMO channels.
机译:室内多输入多输出可见光通信(MIMO-VLC)系统中的空间调制(SM)性能受到光MIMO信道固有的强相关性的严重限制。为了解决这个问题,本文提出了一种通过最小化误码率(BER)范围的功率分配方案,该方案可以在计算复杂度和BER性能之间进行权衡。另一方面,构造了最近提出的称为块马尔可夫叠加传输(BMST)的编码方案,并将其与SM-VLC组合,其中还提供了精灵辅助的下限以预测低BER区域的BER性能。此外,采用了在BMST解码器和软输入软输出(SISO)SM解映射器之间交换消息的迭代接收器,以提高BER性能。仿真结果表明,具有功率分配和迭代接收器的BMST-SM-VLC系统即使在强相关的光学MIMO信道上也可以实现显着的编码增益。

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