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Opportunistic Cooperation with Receiver-Based Ratio Combining Strategy

机译:基于接收者比率组合策略的机会合作

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In cooperative wireless communication systems, many combining techniques could be employed at the receiver, such as maximal ratio combining (MRC), equal gain combining (EGC), etc. To address the effect of receiver diversity combining on optimum energy allocation, we analyze the problem of minimizing average total transmit energy under a SNR constraint when different ratio combining methods are utilized at destination. For maximal ratio combining (MRC), based on the explicit analytical solution an asymptotic solution for normalized optimum total energy in terms of μ and η was derived in the high-SNR scenario. For fixed ratio combining (FRC), we find that there does not exist an explicit analytical solution to the optimum energy allocation problem. However, the convexity proof for the energy function provides a way of using numerical convex optimization methods to find the unique solution. Our results also show that, while direct transmission (ε_r~* = 0) is optimum for certain channel states when the destination uses MRC, the relay should always transmit, i.e. ε_r~* > 0 for all channel states, when the combining ratio β is a fixed number.
机译:在协作无线通信系统中,接收机可以采用多种合并技术,例如最大比率合并(MRC),等增益合并(EGC)等。为了解决接收机分集合并对最佳能量分配的影响,我们分析了在目的地使用不同比率组合方法时,在SNR约束下使平均总发射能量最小化的问题。对于最大比率合并(MRC),基于显式解析解,在高SNR情况下,针对μ和η导出了归一化最佳总能量的渐近解。对于固定比率合并(FRC),我们发现没有针对最佳能量分配问题的明确解析解决方案。但是,能量函数的凸性证明提供了一种使用数值凸优化方法来找到唯一解的方法。我们的结果还表明,当目的地使用MRC时,对于某些信道状态,直接传输(ε_r〜* = 0)最佳,但当合并比率β时,中继器应始终进行传输,即对于所有信道状态,ε_r〜*> 0是一个固定数字。

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