Selective DF relaying in multi-relay networks with different modulation levels

H. Sokun, A. B. Sediq, S. Ikki, H. Yanikomeroglu
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引用次数: 4

Abstract

Despite the rich literature on cooperative networks, employment of different modulation levels by the source and relay terminals has not been investigated thoroughly from the physical layer perspective. In this paper, we investigate the bit error rate (BER) performance of selective relaying in a multi-relay decode-and-forward cooperative network where the source and the relays transmit using different modulation levels. Specifically, we derive a closed form expression for the end-to-end (uncoded) BER. To draw further insights on the BER performance, we also provide a simpler approximate BER expression that is accurate in the high signal-to-noise ratio regime. Finally, simulation results are presented to verify the analytical results. The derived BER expressions can be utilized in various other scenarios in which the destination selects the best signal (in terms of minimizing BER) among a set of signals which use different modulation levels. The set of signals to choose from may have already been received through orthogonal channels (selection combining), or this signal set may correspond to a set of “candidate” transmissions. The latter scenario is often referred to as selective transmission; applications of this scenario include selective relaying (the setting in this paper), fast base-station selection, and coordinated multipoint transmission and reception (CoMP).
不同调制级别的多中继网络中的选择性DF中继
尽管关于协作网络的文献丰富,但从物理层的角度对源端和中继端使用不同调制级别的研究还不够深入。在本文中,我们研究了多中继译码转发合作网络中选择中继的误码率(BER)性能,其中源和中继使用不同的调制电平传输。具体来说,我们推导了端到端(未编码)误码率的封闭形式表达式。为了进一步了解误码率性能,我们还提供了一个更简单的近似误码率表达式,该表达式在高信噪比下是准确的。最后给出了仿真结果来验证分析结果。导出的误码率表达式可用于各种其他场景,其中目的地在使用不同调制电平的一组信号中选择最佳信号(就最小化误码率而言)。要选择的信号集可能已经通过正交信道(选择组合)接收到,或者该信号集可能对应于一组“候选”传输。后一种情况通常被称为选择性传播;该场景的应用包括选择性中继(本文中的设置)、快速基站选择和协调多点传输和接收(CoMP)。
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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