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Iterative Detection and Decoding of Finite-Length Polar Codes in Gaussian Multiple Access Channels

机译:高斯多通道通道有限长度码码的迭代检测和解码

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We consider the usage of finite-length polar codes for the Gaussian multiple access channel (GMAC) with a finite number of users. Based on the interleave-division multiple-access (IDMA) concept, we implement an iterative detection and decoding non-orthogonal multiple access (NOMA) receiver that benefits from a low complexity, while scaling (almost) linearly with the amount of active users. We further show the conceptual simplicity of the belief propagation (BP)-based decoder in a step-by-step illustration of its construction. Beyond its conceptual simplicity, this approach benefits from an improved performance when compared to some recent work tackling the same problem, namely the setup of finite-length forward error-correction (FEC) codes for finite-number of users. We consider the 5th generation mobile communication (5G) polar code with a block length N= 512 applied to both a two-user and a four-user GMAC scenario with a sum-rate of Rsum = 0.5 and Rsum = 1, respectively. Simulation results show that a BP-based soft interference cancellation (SoIC) receiver outperforms a joint successive cancellation (JSC) scheme. Finally, we investigate the effect of a concatenated repetition code which suggests that alternative polar code design rules are required in multi-user scenarios.
机译:我们考虑使用有限数量的用户的高斯多访问通道(GMAC)的有限长度极性代码的使用。基于交织分割多址(IDMA)概念,我们实现了迭代检测和解码非正交多址(NOMA)接收器,其受益于低复杂度,同时用活动用户的量线性缩放(差异)。我们进一步展示了信仰传播(BP)的概念简单性,基于其构造的逐步说明的解码器。除了概念简约之外,与一些最近的工作相比,这种方法有利于改进的性能,即用于解决同一问题的一些工作,即有限数量的用户的有限长度纠错(FEC)代码的设置。我们认为5 th 生成移动通信(5G)块长度n = 512的极码,适用于双用户和四用户GMAC场景,其总和率 sum = 0.5和r sum 分别= 1。仿真结果表明,基于BP的软干扰消除(SOIC)接收器优于联合连续取消(JSC)方案。最后,我们调查连接的重复代码的效果,这表明在多用户场景中需要替代的极地代码设计规则。

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