论文标题

通过编码压缩传感的未包含的随机访问:整合放大器和信念传播

Unsourced Random Access with Coded Compressed Sensing: Integrating AMP and Belief Propagation

论文作者

Amalladinne, Vamsi K., Pradhan, Asit Kumar, Rush, Cynthia, Chamberland, Jean-Francois, Narayanan, Krishna R.

论文摘要

近似消息传递(AMP)解码的稀疏回归代码最近引起了很多关注。该编码方案的基础概念扩展到使用编码的压缩传感(CC)的未包含的随机访问,如Fengler,Jung和Caire首次证明。具体而言,他们的方法采用内部放大器解码器的串联编码框架,然后是外部树解码器。在其原始实现中,这两个组件彼此独立起作用,树解码器作用于AMP解码器的静态输出。本文介绍了一个新颖的框架,其中内部放大器解码器和外部树解码器串联运行,动态传递信息,以充分利用基础CCS结构。该方案需要重新设计树代码,以便以计算上的方式使信仰传播。增强的体系结构在一系列系统参数中表现出显着的性能优势。可以通过一组将AMP的状态进化来准确预测所提出的方案的误差性能。这些发现在分析和数值方法上得到支持。

Sparse regression codes with approximate message passing (AMP) decoding have gained much attention in recent times. The concepts underlying this coding scheme extend to unsourced random access with coded compressed sensing (CCS), as first demonstrated by Fengler, Jung, and Caire. Specifically, their approach employs a concatenated coding framework with an inner AMP decoder followed by an outer tree decoder. In their original implementation, these two components work independently of each other, with the tree decoder acting on the static output of the AMP decoder. This article introduces a novel framework where the inner AMP decoder and the outer tree decoder operate in tandem, dynamically passing information back and forth to take full advantage of the underlying CCS structure. This scheme necessitates the redesign of the tree code as to enable belief propagation in a computationally tractable manner. The enhanced architecture exhibits significant performance benefits over a range of system parameters. The error performance of the proposed scheme can be accurately predicted through a set of equations, known as state evolution of AMP. These findings are supported both analytically and through numerical methods.

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