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首页> 外文期刊>Canadian journal of electrical and computer engineering >Pairwise optimization of modulation constellations for non-uniform sources
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Pairwise optimization of modulation constellations for non-uniform sources

机译:非均匀源的调制星座图的成对优化

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摘要

The design of two-dimensional signal constellations for the transmission of binary non-uniform memoryless sources over additive white Gaussian noise channels is investigated. The main application of this problem is the implementation of improved constellations where transmitted data is highly non-uniform. A simple algorithm, which optimizes a constellation by re-arranging its points in a pairwise fashion (i.e., two points are modified at a time, with all other points remaining fixed), is presented. In general, the optimized constellations depend on both the source statistics and the signal-to-noise ratio (SNR) in the channel. We show that constellations designed with source statistics considered can yield symbol error rate (SER) performance that is substantially better than rectangular quadrature amplitude modulation signal sets used with either Gray mapping or more recently developed maps. SER gains as high as 5 dB in E_b /N_o SNR are obtained for highly non-uniform sources. Symbol mappings are also developed for the new constellations using a similar pairwise optimization method whereby we assign and compare a weighted score for each pair. These maps, when compared to the mappings used in conjunction with the standard rectangular QAM constellation, again achieve considerable performance gains in terms of bit error rate (BER). Gains as high as 4 dB were achieved over rectangular QAM with Gray mapping, or more than 1 dB better than previously improved mappings. Finally, the uncoded pairwise optimized system is compared to a standard tandem (separate) source and channel coding system. Although neither system is universally better, the uncoded system with optimized constellations outperforms the tandem coding system for low-to-mid SNRs. Performance/complexity trade-offs between the two systems are also discussed.
机译:研究了在加性高斯白噪声通道上传输二进制非均匀无记忆源的二维信号星座图的设计。这个问题的主要应用是在传输数据高度不均匀的情况下实现改进的星座。提出了一种简单的算法,该算法通过以成对的方式重新排列其点来优化星座图(即,一次修改两个点,而所有其他点保持不变)。通常,优化的星座图取决于源统计信息和信道中的信噪比(SNR)。我们表明,在考虑了源统计信息的情况下设计的星座图可产生的符号误码率(SER)性能明显好于用于Gray映射或最近开发的映射的矩形正交幅度调制信号集。对于高度不均匀的信号源,SER的E_b / N_o SNR增益高达5 dB。还使用类似的成对优化方法为新星座开发符号映射,从而为每对分配并比较加权分数。与与标准矩形QAM星座图结合使用的映射相比,这些映射在误码率(BER)方面再次获得了可观的性能提升。在带有Gray映射的矩形QAM上,增益高达4 dB,比以前改进的映射高出1 dB以上。最后,将未编码的成对优化系统与标准串联(独立)源和信道编码系统进行比较。尽管这两个系统都不是普遍更好的系统,但具有优化星座图的未编码系统的性能要优于串联编码系统,以实现中低SNR。还讨论了两个系统之间的性能/复杂性折衷。

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