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Optimal Relay Selection and Beamforming Strategy in Cooperative Systems with Limited Feedback and Asymptotically Large Number of Relays

机译:具有有限反馈和渐近大量继电器的合作系统中的最佳中继选择和波束形成策略

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We consider a cooperative wireless network with a single source, a single destination, and M cooperative relays. We show that, with only limited feedback, MB bits, from the destination, using all the relays to perform beamforming may not be optimal. Assuming that the destination selects the relays whose power gains exceed a threshold and feeds back MB bits to specify a precoding matrix from a randomly generated pre-coder codebook, we find the optimal threshold that maximizes the capacity of a Decode-and-Forward (DF) system for a given B, asymptotically in the number of relays, M. We show that the system using the optimal threshold has a higher capacity than a system using all relays for all B, especially for small values of B. Furthermore, using a fixed fraction (β* which is obtained from the optimal threshold) of relays in systems with finite number of relays also leads to a significant improvement in outage probability, comparing to that of the systems using all relays, in both DF and Amplify-and-Forward (AF) cooperating schemes.
机译:我们考虑具有单个源,单个目的地和M个协作继电器的合作无线网络。我们表明,只有有限的反馈,从目的地,使用所有继电器执行波束成形的反馈MB位可能不是最佳的。假设目的地选择电源增益超过阈值并馈送MB位以指定从随机生成的预编码器码本指定预编码矩阵的继电器,我们发现最大化解码和向前的容量的最佳阈值(DF )系统的系统,渐近的继电器数量,M。我们表明使用最佳阈值的系统具有比使用所有B的所有继电器的系统更高的容量,尤其是对于B的小值。此外,使用a固定级分(从最佳阈值获得的阈值)在具有有限数量的继电器中的系统中的继电器也会导致中断概率的显着改善,与使用所有继电器的系统相比,在DF和放大器中比较 - 前进(AF)合作计划。

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