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Steepest-Descent Optimization of CDMA Signatures for Multiple Correlated Sources With Applications to Joint Source-Channel Coding

机译:多个相关源的CDMA签名的最速下降优化及其在联合源信道编码中的应用

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摘要

An approach to transmitting multiple correlated sources over a Gaussian multiple-access channel (GMAC) using code-division multiple-access (CDMA) is investigated. A block coordinate descent (BCD) algorithm is presented which can be used to optimize CDMA signatures for a given source covariance matrix under individual transmitter power constraints. This algorithm can be used to design non-orthogonal CDMA signatures for GMACs with arbitrary input alphabets, fading, and colored noise. While the main focus has been the design of signatures which minimize the mean square error (MSE) of linear decoding, the algorithm can also be used to design signatures which maximize the input-output mutual information of the channel. This paper investigates the uncoded transmission of Gaussian sources and the coded transmission of binary sources over a GMAC using joint source-channel (JSC) optimized CDMA signatures under constraints on transmitter power and channel bandwidth, scenarios relevant to wireless sensor networks. By using simple coding schemes which only rely on linear multi-user detection and independent channel decoding of a large number of sources, it is demonstrated that CDMA-based JSC coding can exploit inter-source correlation to achieve lower distortion (Gaussian sources) or higher rates (binary sources) compared to conventional separate source-channel (SSC) coding over the same channel bandwidth.
机译:研究了一种使用码分多址(CDMA)在高斯多址信道(GMAC)上传输多个相关源的方法。提出了一种块坐标下降(BCD)算法,该算法可用于在各个发射机功率约束下针对给定源协方差矩阵优化CDMA签名。该算法可用于为具有任意输入字母,衰落和有色噪声的GMAC设计非正交CDMA签名。虽然主要的重点是最小化线性解码的均方误差(MSE)的签名设计,但是该算法也可以用于设计使通道的输入输出互信息最大化的签名。本文研究了在发射机功率和信道带宽约束下,与无线传感器网络有关的情况下,使用联合源信道(JSC)优化的CDMA签名在GMAC上对高斯源的未编码传输和二进制源的编码传输。通过使用仅依赖于线性多用户检测和大量源的独立信道解码的简单编码方案,证明了基于CDMA的JSC编码可以利用源间相关来实现较低的失真(高斯源)或更高的失真。速率(二进制源)与相同信道带宽上的常规独立源信道(SSC)编码相比。

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