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Performance Analysis of Multiple-Relay AF Cooperative Systems Over Rayleigh Time-Selective Fading Channels With Imperfect Channel Estimation

机译:具有不完善信道估计的瑞利时间选择衰落信道上多中继AF协作系统的性能分析

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In this paper, we consider the adaptive-gain -relay amplify-and-forward (AF) cooperative system with both conventional relaying as well as a best-relay-selection scheme, and investigate its performance over time-selective fading, due to nodes' mobility, in the presence of channel estimation errors. We first derive exact closed-form expressions for the destination's direct path and overall end-to-end instantaneous signal-to-noise ratios (SNRs). We also derive closed-form tight approximate expressions for the system average bit error rate, outage probability, and Shannon capacity, which are general functions of the cooperating nodes' relative speeds, in terms of the links' correlation parameters, the estimation errors' variances, and the receivers' tracking loops' channel estimation rates, in terms of the transmitted block length. Our analysis reveals that due to the cooperating nodes' mobility, the system performance metrics are severely degraded and, in some particular network circumstances, experience asymptotic limits. In addition, when both of the source and the destination are static, the system performance does not experience asymptotic limits although the relays are in motion. On the other hand, despite that the relays are static, the mobility of either the source or the destination severely impacts the system performance by asymptotic limits, where the difference between their impacts depends on the symmetrical conditions of the network two-hop fading gain power. In addition, we found that the provides higher asymptotic error limits than that of the scheme. We also assu- ed the special case when the network receivers are equipped with fast estimation loops and showed their effect of reducing the degradation impacts of the nodes' mobility. Simulation and numerical results are provided to verify the accuracy of the derived analytical expressions.
机译:在本文中,我们考虑了具有常规中继以及最佳中继选择方案的自适应增益中继放大转发(AF)协作系统,并研究了由于节点而导致的时间选择性衰落性能在存在信道估计误差的情况下的移动性。我们首先为目的地的直接路径和整体的端到端瞬时信噪比(SNR)导出精确的闭式表达式。我们还针对链路的相关参数,估计误差的方差,得出了系统平均误码率,中断概率和香农容量的闭式紧逼表达式,它们是合作节点相对速度的通用函数。 ,以及根据传输的块长度来确定接收者的跟踪环路的信道估计率。我们的分析表明,由于协作节点的移动性,系统性能指标严重降低,并且在某些特定的网络环境中会遇到渐近极限。另外,当源和目的地都是静态的时,尽管继电器处于运动状态,但系统性能不会遇到渐近极限。另一方面,尽管中继是静态的,但源或目的地的移动性会通过渐近极限严重影响系统性能,其中其影响之间的差异取决于网络两跳衰落增益功率的对称条件。此外,我们发现与方案相比,它们提供了更高的渐近误差极限。我们还确定了特殊情况,即网络接收器配备了快速估计环路,并展示了其减少节点移动性的降级影响的效果。提供了仿真和数值结果,以验证所导出解析表达式的准确性。

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