Using 2:1 Shannon mapping for joint source-channel coding

F. Hekland, G. Øien, T. Ramstad
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引用次数: 88

Abstract

The Archimedes' spiral can be used as a 2:1 bandwidth reducing mapping in a joint source-channel coding (JSCC) system. The combined point of two iid Gaussian sources (the source space) is mapped, or approximated, onto a double Archimedes' spiral (the codebook), and the squared angle from the origin to the mapped point is transmitted as an analogue channel symbol (the channel space), e.g. PAM. It is shown that the total distortion of this JSCC system is minimised when the distortion contributions from the approximation noise and channel noise are equal. The given system produces a channel input distribution close to a Laplace probability density function (pdf) instead of the optimal Gaussian pdf. The loss when using this mismatched pdf is shown to be approximately equal to the relative entropy of the two pdf.
采用2:1香农映射进行联合信源信道编码
阿基米德螺旋可以用作联合源信道编码(JSCC)系统中2:1的带宽减少映射。两个iid高斯源的结合点(源空间)被映射或近似到双阿基米德螺旋(码本)上,并且从原点到映射点的平方角度作为模拟信道符号(信道空间)传输,例如PAM。结果表明,当近似噪声和信道噪声的畸变贡献相等时,该JSCC系统的总畸变最小。给定的系统产生一个接近拉普拉斯概率密度函数(pdf)的信道输入分布,而不是最优的高斯pdf。当使用这个不匹配的pdf时,损失近似等于两个pdf的相对熵。
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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