基于卷积编码和信号空间分集的旋转MPSK星座迭代解调和解码

N. Kiyani, J. Weber
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引用次数: 18

摘要

信号空间分集(SSD)与旋转的信号星座使用多级调制方案是已知的提供良好的性能增益在衰落信道。本文对具有不同符号映射的MPSK信号星座进行了迭代解调和卷积码译码的扩展研究。研究表明,对于在瑞利衰落信道上使用SSD的特定信号星座和标记,经过深思熟虑的旋转角度选择可以比传统的迭代解码比特交错编码调制(BICM-ID)获得显着增益。此外,发现编码系统的最佳旋转角度取决于符号标记和在接收器上进行的迭代次数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Iterative Demodulation and Decoding for Rotated MPSK Constellations with Convolutional Coding and Signal Space Diversity
Signal space diversity (SSD) with the rotation of the signal constellation using multi-level modulation schemes is known to provide good performance gains over fading channels. This paper studies the extension of such schemes with iterative demodulation and decoding using convolutional codes for MPSK signal constellations with different symbol mappings. It is shown that for a specific signal constellation and labeling using SSD on a Rayleigh fading channel, a well considered choice of the rotation angle leads to a significant gain over conventional bit interleaved coded modulation with iterative decoding (BICM-ID). Furthermore, the optimum rotation angle for the coded system is found to be dependent upon the symbol labeling and the number of iterations carried out at the receiver.
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