Analysis of Belief Propagation for Non-Linear Problems: The Example of CDMA (or: How to Prove Tanaka's Formula)

A. Montanari, David Tse
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引用次数: 164

Abstract

We consider the CDMA (code-division multiple-access) multi-user detection problem for binary signals and additive white gaussian noise. We propose a spreading sequences scheme based on random sparse signatures, and a detection algorithm based on belief propagation (BP) with linear time complexity. In the new scheme, each user conveys its power onto a finite number of chips l̄, in the large system limit. We analyze the performances of BP detection and prove that they coincide with the ones of optimal (symbol MAP) detection in the l̄ → ∞ limit. In the same limit, we prove that the information capacity of the system converges to Tanaka's formula for random 'dense' signatures, thus providing the first rigorous justification of this formula. Apart from being computationally convenient, the new scheme allows for optimization in close analogy with irregular low density parity check code ensembles.
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非线性问题的信念传播分析——以CDMA为例(或:如何证明Tanaka公式)
研究了二进制信号和加性高斯白噪声下CDMA(码分多址)多用户检测问题。提出了一种基于随机稀疏签名的扩展序列方案,以及一种基于线性时间复杂度的信念传播(BP)检测算法。在新方案中,在大系统限制下,每个用户将其功率传输到有限数量的芯片上。我们分析了BP检测的性能,并证明了它们在l ā→∞极限下与最优(符号MAP)检测的性能一致。在相同的极限下,我们证明了系统的信息容量收敛于Tanaka的随机“密集”签名公式,从而提供了该公式的第一个严格证明。除了计算方便外,新方案还允许与不规则低密度奇偶校验码集成密切相似的优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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