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Precoding and Shaping for General Signal-to-Noise Ratios

机译:一般信噪比的预编码和成形

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We design a combined signal shaping and channel coding scheme that can operate close to the Gaussian capacity limit at any signal-to-noise ratio in the presence of known interference. This is accomplished by using methods from multidimensional quantization and trellis shaping, building on previous results for the low spectral efficiencies. By computing mutual information limits based on extrinsic information transfer curves, we show that for low signal-to-noise ratio MMSE scaling combined with joint decoding of shaping and channel code is required to approach capacity, whereas for high signal-to-noise ratio the problem is reduced to classic sign-bit shaping, where separate decoding of sign-bit and unsigned bits suffices. For all signal-to-noise ratios we use repeat-accumulate codes to approach capacity, and offer guidelines for the performance/complexity trade-off at different SNRs.
机译:我们设计了一种组合信号整形和信道编码方案,其可以在存在已知干扰的情况下以任何信噪比保持接近高斯容量限制。 这是通过使用来自多维量化和格栅塑造的方法来实现的,在以前的频谱效率上建立以前的结果。 通过基于外在信息传输曲线计算互信息限制,我们表明,对于低信噪比,MMSE缩放结合成形和通道代码来接近容量,而对于高信噪比,则需要高信噪比 问题减少到经典的符号位整形,其中单独解码符号位和无符号位就足够了。 对于所有信噪比比,我们使用重复累积的码来接近容量,并提供不同SNR的性能/复杂性权衡的指导。

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