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首页> 外文期刊>Wireless Communications Letters, IEEE >Flexible-Rate SIC-Free NOMA for Downlink VLC Based on Constellation Partitioning Coding
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Flexible-Rate SIC-Free NOMA for Downlink VLC Based on Constellation Partitioning Coding

机译:基于星座划分编码的下行VLC灵活速率无SIC NOMA

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摘要

Visible light communication (VLC) systems utilizing conventional superposition coding/successive interference cancellation (SPC/SIC)-based non-orthogonal multiple access (NOMA) suffer from the error propagation effect due to imperfect SIC. In this letter, we propose a flexible-rate SIC-free NOMA technique for downlink VLC systems, based on constellation partitioning coding (CPC) and uneven constellation demapping (UCD). By using CPC/UCD, SIC is not required and hence error propagation can be eliminated in NOMA-based VLC systems. Moreover, by selecting a proper bit allocation scheme, flexible-rate multiple access can be supported in the VIC system applying CPC/UCD-based NOMA. Proof-of-concept two-user VLC experiments verify that, compared with conventional SPC/SIC-based NOMA, the bit error rate performance of the near user can be greatly improved by using CPC/UCD-based NOMA, and hence the effective power allocation ratio range can be substantially extended.
机译:由于不完善的SIC,利用常规的基于叠加编码/成功干扰消除(SPC / SIC)的非正交多路访问(NOMA)的可见光通信(VLC)系统遭受误差传播效应。在这封信中,我们基于星座分割编码(CPC)和不均匀星座解映射(UCD),提出了一种适用于下行链路VLC系统的灵活速率无SIC NOMA技术。通过使用CPC / UCD,不需要SIC,因此可以在基于NOMA的VLC系统中消除错误传播。此外,通过选择适当的比特分配方案,可以在应用基于CPC / UCD的NOMA的VIC系统中支持灵活速率的多路访问。概念验证的两用户VLC实验证明,与传统的基于SPC / SIC的NOMA相比,使用基于CPC / UCD的NOMA可以极大地提高附近用户的误码率性能,从而提高有效功率。分配比例范围可以大大扩展。

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