On the Optimality of MAP Bit Detection of Coded M-PSK Signals

Jun Zhang, K. Shi, Hua Peng
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引用次数: 2

Abstract

The optimality of the maximum a posteriori probability(MAP) bit detection for differentially encoded M-PSK signals over static non-ISI channels is emphasized, in which the demodulator computes loglikelihood ratio (LLR) of individual coded bits directly, but not via transforming those successive detected symbolspsila LLR into bitspsila LLR as the conventional methods. As a representative, the designs and analyses focus on the convolutionally encoded pi/4-DQPSK signal. In order to demonstrate the optimality comparatively, the other two types of soft demodulators derived under the MAP symbol detection criterion and the MAP sequence detection criterion are also addressed. Through simulations the noticeable performance of the MAP bit detection are illustrated, especially in low SNR scenarios.
编码M-PSK信号MAP位检测的最优性研究
强调了静态非isi信道差分编码M-PSK信号的最大后验概率(MAP)位检测的最优性,其中解调器直接计算单个编码位的对数似然比(LLR),而不是像传统方法那样将连续检测到的符号LLR转换为位LLR。以卷积编码的pi/4-DQPSK信号为代表,进行了设计和分析。为了比较地证明其最优性,本文还讨论了在MAP符号检测准则和MAP序列检测准则下导出的另外两种软解调器。通过仿真说明了MAP位检测的显著性能,特别是在低信噪比的情况下。
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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