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Convergence and Performance of Distributed Power Control Algorithms for Cooperative Relaying in Cellular Uplink Networks

机译:蜂窝上行网络中协作中继的分布式功率控制算法的收敛性和性能

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摘要

We investigate an application of distributed power control (DPC) and opportunistic power control (OPC), respectively, to cooperative relaying systems that consist of multiple sources, multiple relays, and a single destination. Two types of relaying gains are considered for half-duplex amplify-and-forward (AF) relays: fixed and variable gains, respectively. Using half-duplex AF relays, remote users benefit by making the path loss smaller by two shorter paths. However, they lose bandwidth and suffer from additional interference due to amplification of the noise at the relays and the unnecessary signal from the relays, where power control plays an important role. We begin with redefining and extending the existing power control algorithms to be fit for the relaying environments and then, using standard techniques, construct the convergence, except when the number of variable-gain relays is even. With numerical investigation, we show the advantages and disadvantages of the power-controlled systems with relays in terms of the outage probability, the average transmit power consumption, and the transmission capacity. Simulation results show that DPC with relays achieves significant improvement in the outage performance and power consumption. On the other hand, in OPC, some negative effects arise by using the relays in the capacity since the relays increase the interference that severely affects the opportunistic capacity.
机译:我们分别研究了分布式电源控制(DPC)和机会电源控制(OPC)在由多个源,多个继电器和一个目标组成的协作中继系统中的应用。半双工放大转发(AF)中继考虑两种类型的中继增益:分别为固定增益和可变增益。使用半双工AF中继,远程用户将从两个短路径减小路径损耗中受益。但是,由于继电器上的噪声放大和来自继电器的不必要信号,它们失去了带宽并遭受额外的干扰,而功率控制在其中起着重要的作用。我们从重新定义和扩展现有的功率控制算法以使其适合继电器环境开始,然后使用标准技术构造收敛性,除非可变增益继电器的数量为偶数。通过数值研究,我们从断电概率,平均发射功率消耗和传输容量方面显示了带有继电器的功率控制系统的优缺点。仿真结果表明,带继电器的DPC在停电性能和功耗方面都取得了显着改善。另一方面,在OPC中,由于在容量中使用继电器会产生一些负面影响,因为继电器会增加严重影响机会容量的干扰。

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