Li Haoyue, Huang Zhitong, Xiao Yu, Zhan Shuang, Ji Yuefeng
Opt Express. 2017 Nov 27;25(24):29856-29863. doi: 10.1364/OE.25.029856.
Non-orthogonal multiple access (NOMA) has recently attracted significant attention as a promising multiple access scheme for the 5th generation (5G) wireless communication due to its superior spectral efficiency, which has also been studied and shown to achieve a superior performance in visible light communication (VLC) networks. However, the error propagation (EP) problem due to successive interference cancellation (SIC) decoding has not yet been resolved, which degrades the system BER performance and causes user unfairness. In this work, symmetric superposition coding (SSC) and symmetric SIC (SSIC) decoding are proposed for a downlink NOMA-based VLC network, in which the distribution of the demodulation regions of the user allocated with more power will be symmetrical in terms of the decision threshold of the user allocated with less power. Furthermore, the proposed method is experimentally tested and the results show that more than 90% demodulation errors caused by EP are eliminated compared with traditional NOMA VLC.
非正交多址接入(NOMA)作为一种面向第五代(5G)无线通信的有前途的多址接入方案,近来因其卓越的频谱效率而备受关注,该方案在可见光通信(VLC)网络中也得到了研究并显示出具有卓越的性能。然而,由于连续干扰消除(SIC)解码导致的误差传播(EP)问题尚未得到解决,这会降低系统误码率(BER)性能并导致用户不公平。在这项工作中,针对基于下行链路NOMA的VLC网络提出了对称叠加编码(SSC)和对称SIC(SSIC)解码,其中,分配了更多功率的用户的解调区域分布相对于分配了较少功率的用户的判决阈值将是对称的。此外,对所提方法进行了实验测试,结果表明,与传统NOMA VLC相比,由EP引起的解调误差消除了90%以上。