Diversity analysis of hierarchical modulation in cooperative communication

Ahmet Zahid Yalçin, M. Yuksel
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引用次数: 0

Abstract

In cooperative communication systems, hierarchical modulation is used to increase systems robustness and to send different information flows simultaneously. In cooperative communication systems which use hierarchical modulation, error propagation is the most important problem that prevents achieving full diversity gain. Thresholds that depend on the signal to noise ratio (SNR) value between the source and the relay can be used to mitigate error propagation. If the instantaneous SNR between the source and the relay is lower than the first threshold, the relay does not transmit. If the SNR is between the first and the second thresholds, the relay demodulates and forwards only the primary bits. If the SNR is higher than the second threshold, the relay demodulates and forwards both the primary and the secondary bits. Mitigating error propagation and achieving full diversity for both primary (high priority) and secondary (low priority) bits depend on setting the thresholds at the relay properly. In this work, the first and the second threshold values are determined so that full diversity gains are attained for both primary and secondary bits. Analytical and simulation results are provided to verify the analysis.
协同通信中层次调制的多样性分析
在协作通信系统中,为了提高系统的鲁棒性和同时发送不同的信息流,采用了分层调制。在采用分层调制的协作通信系统中,误差传播是阻碍实现完全分集增益的主要问题。依赖于源和继电器之间信噪比(SNR)值的阈值可用于减轻误差传播。如果源和继电器之间的瞬时信噪比低于第一个阈值,则继电器不发送。如果信噪比在第一和第二阈值之间,中继只解调和转发主位。如果信噪比高于第二个阈值,中继解调并转发主比特和辅助比特。减轻错误传播和实现主比特(高优先级)和次比特(低优先级)的完全分集取决于在中继上正确设置阈值。在这项工作中,确定了第一和第二阈值,以便主比特和辅助比特都能获得完全的分集增益。分析和仿真结果验证了分析的正确性。
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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