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Capacity Scaling Laws in Asynchronous Relay Networks

机译:异步中继网络中的容量缩放法律

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This paper examines capacity scaling in asynchronous relay networks, where L single-antenna source-destination terminal pairs communicate concurrently through a common set of K single-antenna relay terminals using one-hop relaying. In the perfectly synchronized case, assuming perfect channel state information (CSI) at the relays, the network capacity is known to scale (asymptotically in K for fixed L) as C = L/2 log(K) + O(1). In the absence of CSI at the relay terminals, it was shown in [1] that a simple amplify-and-forward architecture, asymptotically in K for fixed L, turns the network into a point-to-point multiple-input multiple-output (MIMO) link with high-SNR capacity C = L/2 log(SNR) + O(1). In this paper, we demonstrate that lack of synchronization in the network, under quite general conditions on the synchronization error characteristics, leaves the capacity scaling laws for both scenarios fundamentally unchanged. However, synchronization errors do result in a reduction of the spatial multiplexing gain (pre-log in the capacity expression) and the effective signal-to-noise ratio at the destination terminals. Quantitative results for these losses, as a function of the synchronization error characteristics, are provided.
机译:本文介绍了异步中继网络中的容量缩放,其中L单天线源 - 目的地终端对通过使用一个跳跃中继通过一组通用的K单天线继电器终端同时进行通信。在完美同步的情况下,假设继电器处的完美信道状态信息(CSI),已知网络容量缩放(用于固定L的k),如C = L / 2 log(k)+ O(1)。在中继终端的CSI的情况下,如[1]所示,在[1]中,简单的放大和前进架构,用于固定L的k,将网络转换为点对点多输入多输出(MIMO)链接高SNR容量C = L / 2 log(SNR)+ O(1)。在本文中,我们证明网络中的同步缺乏同步在同步误差特性的相当一般条件下,对这两种情况的能力缩放法则从根本上保持不变。然而,同步误差确实导致在目的地终端处的空间复用增益(容量表达式的预估)和有效信噪比的降低。提供了这些损耗的定量结果,作为同步误差特性的函数。

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