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Diffusion adaptive networks with imperfect communications: link failure and channel noise

机译:通信不完善的扩散自适应网络:链路故障和信道噪声

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The article studies the steady-state performance of a diffusion least-mean squares (LMS) adaptive network with imperfect communications where the topology is random (links may fail at random times) and the communication in the channels is corrupted by additive noise. Using the established weighted spatial-temporal energy conservation argument, the authors derive a variance relation which contains moments that represent the effects of noisy links and random topology. The authors evaluate these moments and derive closed-form expressions for the mean-square deviation, excess mean-square error and mean-square error to explain the steady-state performance at each individual node. The mean stability analysis is also provided. The derived theoretical expressions have good match with simulation results. Nevertheless, the important result is that the noisy links are the main factor in performance degradation of a diffusion LMS algorithm running in a network with imperfect communications.
机译:本文研究了具有不完善通信的扩散最小均方(LMS)自适应网络的稳态性能,该通信的拓扑结构是随机的(链接可能在随机时间失效),并且信道中的通信被加性噪声破坏。利用建立的加权时空能量守恒论点,作者得出了一个方差关系,该关系包含表示噪声链接和随机拓扑的影响的​​矩。作者对这些矩进行了评估,并得出均方差,过量均方误差和均方误差的闭式表达式,以解释每个节点的稳态性能。还提供了平均稳定性分析。推导的理论表达式与仿真结果吻合良好。然而,重要的结果是,嘈杂的链路是在通信不完善的网络中运行的扩散LMS算法性能下降的主要因素。

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