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Cooperative Communication Protocols in Wireless Networks: Performance Analysis and Optimum Power Allocation

机译:无线网络中的协作通信协议:性能分析和最佳功率分配

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In this paper, symbol-error-rate (SER) performance analysis and optimum power allocation are provided for uncoded cooperative communications in wireless networks with either decode-and-forward (DF) or amplify-and-forward (AF) cooperation protocol, in which source and relay send information to destination through orthogonal channels. In case of the DF cooperation systems, closed-form SER formulation is provided for uncoded cooperation systems with PSK and QAM signals. Moreover, an SER upper bound as well as an approximation are established to show the asymptotic performance of the DF cooperation systems, where the SER approximation is asymptotically tight at high signal-to-noise ratio (SNR). Based on the asymptotically tight SER approximation, an optimum power allocation is determined for the DF cooperation systems. In case of the AF cooperation systems, we obtain at first a simple closed-form moment generating function (MGF) expression for the harmonic mean to avoid the hypergeometric functions as commonly used in the literature. By taking advantage of the simple MGF expression, we obtain a closed-form SER performance analysis for the AF cooperation systems with PSK and QAM signals. Moreover, an SER approximation is also established which is asymptotically tight at high SNR. Based on the asymptotically tight SER approximation, an optimum power allocation is determined for the AF cooperation systems. In both the DF and AF cooperation systems, it turns out that an equal power strategy is good, but in general not optimum in cooperative communications. The optimum power allocation depends on the channel link quality. An interesting result is that in case that all channel links are available, the optimum power allocation does not depend on the direct link between source and destination, it depends only on the channel links related to the relay. Finally, we compare the performance of the cooperation systems with either DF or AF protocol. It is shown that the performance of a systems with the DF cooperation protocol is better than that with the AF protocol. However, the performance gain varies with different modulation types and channel conditions, and the gain is limited. For example, in case of BPSK modulation, the performance gain cannot be larger than 2.4 dB; and for QPSK modulation, it cannot be larger than 1.2 dB. Extensive simulation results are provided to validate the theoretical analysis.
机译:在本文中,针对采用解码转发(DF)或放大转发(AF)协作协议的无线网络中的未编码协作通信,提供了符号错误率(SER)性能分析和最佳功率分配,哪个源和中继通过正交信道将信息发送到目的地。对于DF协作系统,为具有PSK和QAM信号的未编码协作系统提供了闭式SER公式。此外,建立了SER上限和一个近似值,以显示DF协作系统的渐近性能,其中SER近似在高信噪比(SNR)时渐近严格。基于渐近紧SER逼近,确定了DF协作系统的最佳功率分配。在AF协作系统的情况下,我们首先获得一个简单的闭合形式矩生成函数(MGF)表达式作为谐波平均值,以避免文献中常用的超几何函数。通过利用简单的MGF表达式,我们获得了带有PSK和QAM信号的AF协作系统的闭式SER性能分析。此外,还建立了在高SNR时渐近紧密的SER近似。基于渐近严格的SER逼近,可以确定AF协作系统的最佳功率分配。事实证明,在DF和AF协作系统中,均等功率策略是好的,但通常在协作通信中不是最佳的。最佳功率分配取决于信道链路质量。一个有趣的结果是,在所有信道链路均可用的情况下,最佳功率分配不取决于源与目标之间的直接链路,而仅取决于与中继相关的信道链路。最后,我们比较了使用DF或AF协议的合作系统的性能。结果表明,使用DF协作协议的系统的性能要优于使用AF协议的系统。但是,性能增益随调制类型和信道条件的不同而变化,并且增益受到限制。例如,在BPSK调制的情况下,性能增益不能大于2.4 dB。对于QPSK调制,它不能大于1.2 dB。提供了大量的仿真结果以验证理论分析。

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