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首页> 外文期刊>IEEE Transactions on Communications >A User-Independent Successive Interference Cancellation Based Coding Scheme for the Unsourced Random Access Gaussian Channel
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A User-Independent Successive Interference Cancellation Based Coding Scheme for the Unsourced Random Access Gaussian Channel

机译:基于用户无关的连续干扰取消的无距离随机接入高斯通道的编码方案

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摘要

This work introduces a novel coding paradigm for the unsourced multiple access channel model. The envisioned framework builds on a select few key components. First, the transmission period is partitioned into a sequence of sub-blocks, thereby yielding a slotted structure. Second, messages are split into two parts. A portion of the data is encoded using spreading sequences or codewords that are designed to be recovered by a compressed sensing type decoder. In addition to being an integral part of the data, the information bits associated with this first part also determine the parameters of the low-density parity check code employed during the subsequent stages of the communication process. The other portion of the message is encoded using the aforementioned low-density parity check code. The data embedded in this latter stage is decoded using a joint message passing algorithm designed for the T-user binary input real adder channel. Finally, devices repeat their codeword in multiple sub-blocks, with the transmission pattern being a deterministic function of message content independent of the identity of the device. When combined with successive interference cancellation, the ensuing communication infrastructure offers significant performance improvement compared to coding schemes recently published in the literature for unsourced random access.
机译:这项工作介绍了一种用于令人无法控制的多址通道模型的新颖编码范例。设想的框架在选择少数关键组件上构建。首先,将传输周期划分为一系列子块,从而产生开槽结构。其次,消息分为两部分。使用设计为被压缩的感测类型解码器恢复的扩展序列或码字进行编码数据的一部分数据。除了作为数据的组成部分之外,与该第一部分相关联的信息比特还确定在通信过程的后续阶段期间采用的低密度奇偶校验码的参数。使用前述低密度奇偶校验码进行编码消息的其他部分。使用专为T-User二进制输入真实加法器通道设计的联合消息传递算法来解码在后一级中嵌入的数据。最后,设备在多个子块中重复它们的码字,传输模式是消息内容的确定性函数,无关的消息内容无关。与连续干扰取消结合时,随后的通信基础设施与最近在文献中发表的编码方案相比提供了显着的性能改进,以便于无需随机访问。

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