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Amplify and forward relay network optimization with imperfect CSI

机译:CSI不完善的情况下放大和转发中继网络优化

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In this paper, we consider a wireless communication with a single source node, single destination node and L number of amplify and forward (AF) relay nodes. With rayleigh channel, the communication between source node and destination node is established through relay nodes. The channel coefficient and their estimate are related by two error models namely, stochastic error model and channel time variation model. Beamforming is made at the relay nodes to increase the strength of the desired signals and coverage range of the nodes. Our proposed scheme is to optimize the beamforming and equalization coefficients by minimizing the conditional expectation of mean square error between the transmitted and received signals respectively. Here, optimization is made with imperfect channel state information. Simulation result on comparing with that of without beamforming relay strategy result in lower bit error rate. It also shows that the proposed method results with lower BER when the CSI contains time delay and estimation error.
机译:在本文中,我们考虑了具有单个源节点,单个目标节点和L个放大转发(AF)中继节点的无线通信。在瑞利信道下,源节点和目的节点之间的通信是通过中继节点建立的。信道系数及其估计与两个误差模型相关,即随机误差模型和信道时间变化模型。在中继节点上进行波束成形,以增加所需信号的强度和节点的覆盖范围。我们提出的方案是通过最小化分别在发射信号和接收信号之间的均方误差的条件期望来优化波束成形和均衡系数。在此,使用不完美的信道状态信息进行优化。与没有波束成形中继策略的仿真结果相比较,可以降低误码率。它还表明,当CSI包含时间延迟和估计误差时,所提出的方法具有较低的BER。

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