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Color-Domain SCMA NOMA for Visible Light Communication

机译:用于可见光通信的彩色域SCMA NOMA

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摘要

Visible light communications (VLC) has emerged as a promising technology for the next-generation communication systems. For VLC, several non-orthogonal multiple access (NOMA) techniques have emerged, among which sparse-code multiple access (SCMA) is particularly viable due to promised shaping and coding gain, and typically minimalo error propagation as compared to power-domain NOMA (PD-NOMA). In this work, we introduce using polychromatic light emitting diodes (LEDs) as transmitters, where several users are overlapped on each color using SCMA; consequently, the SCMA codewords on each color are overlapped in the color-domain before transmission. At the receiver, after color-filtering, the residual color-coupling is removed by inverting the coupling matrix. Finally, the users' signals over each color-channel are recovered using the message passing algorithm. Further, asymptotic error-rate expressions are derived for the proposed color-domain SCMA. These expressions are validated by simulations assuming VLC channel-models for random waypoint user-mobility. The analytical results promise a potential gain in the sum-rate while supporting a larger number of users as compared to a monochromatic white-LED based SCMA system.
机译:可见光通信(VLC)已成为下一代通信系统的有希望的技术。对于VLC,已经出现了几种非正交多次访问(NOMA)技术,其中稀疏码多访问(SCMA)由于承诺的整形和编码增益而特别可行,并且与功率域相比,通常最小/无误差传播NOMA(PD-NOMA)。在这项工作中,我们使用多色发光二极管(LED)作为变送器介绍,其中几个用户使用SCMA在每种颜色上重叠;因此,每种颜色上的SCMA码字在传输之前在颜色域中重叠。在接收器处,通过反转耦合矩阵除去滤色器之后,通过反转耦合矩阵除去残留的颜色耦合。最后,使用消息传递算法恢复每个颜色通道上的用户的信号。此外,为所提出的彩色域Scma导出渐近误差率表达式。假设VLC通道模型用于随机航路点用户移动性的仿真验证了这些表达式。分析结果承诺在与基于单色白板的SCMA系统相比的同时支持总和率的潜在增益,同时支持更多的用户。

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