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Binary Consensus Over Fading Channels

机译:衰落信道上的二进制共识

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In this paper, we consider a cooperative network that is trying to reach consensus on the occurrence of an event, by communicating over time-varying network topologies with fast fading channels. We mathematically characterize both the asymptotic and transient behaviors of the network. We show that the network converges to a memoryless state asymptotically, which is undesirable. However, the network can still be in consensus for a long period of time. In order to characterize the transient behavior, we then derive a tight approximation for the second largest eigenvalue of the underlying average probability transition matrix in fading environments. We show the impact of channel unreliability and network topology on consensus performance and shed light on the underlying tradeoffs in terms of speed of convergence and memoryless asymptotic behavior.
机译:在本文中,我们考虑了一种协作网络,该网络试图通过时变网络拓扑结构与快速衰落的信道进行通信,从而就事件的发生达成共识。我们在数学上描述了网络的渐近行为和瞬态行为。我们显示网络渐近收敛到无记忆状态,这是不希望的。但是,网络仍然可以在很长一段时间内达成共识。为了表征瞬态行为,我们然后推导了衰落环境中底层平均概率转换矩阵的第二大特征值的严格逼近。我们展示了信道不可靠性和网络拓扑结构对共识性能的影响,并从收敛速度和无记忆渐近行为方面阐明了潜在的折衷方案。

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