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Design and Analysis of Broadband Amplify-and-Forward Cooperative Systems: A Fractionally-Spaced Sampling Approach

机译:宽带放大转发协作系统的设计和分析:分数间隔采样方法

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In this paper, we propose novel fractionally-spaced frequency-domain equalizers for the amplify-and-forward cooperative systems. In the proposed equalization schemes, the sampling rate of the received signal remains at least as high as the Nyquist rate within the digital processing chain of the relay node(s), upon which a true fractionally-spaced equalization becomes feasible at the destination. Based on minimum-mean-square-error (MMSE) criterion, different equalization structures (linear and non-linear) are designed, and approximations for their bit error rate (BER) performance are presented. The BER performance of the proposed schemes are further lower bounded through a matched-filter bound (MFB) analysis which provides insight into system design such as optimum power allocation and relay selection strategy. Our results show that, under certain channel realizations and sampling phase errors (that may occur in the relay and destination terminals), the performance of the conventional symbol-spaced cooperative systems reduces to that of no relay scenario. However, the performance of cooperative systems with the proposed fractionally-spaced equalizers is independent of the samplers' phases, and as a result, full benefit of cooperation is retained.
机译:在本文中,我们为放大和转发协作系统提出了一种新颖的分数间隔频域均衡器。在提出的均衡方案中,接收信号的采样率至少保持与中继节点的数字处理链内的奈奎斯特速率一样高,这样,在目的地进行真正的分数间隔均衡是可行的。基于最小均方误差(MMSE)准则,设计了不同的均衡结构(线性和非线性),并给出了其误码率(BER)性能的近似值。拟议方案的BER性能通过匹配滤波器边界(MFB)分析进一步下限,该分析为系统设计(例如最佳功率分配和中继选择策略)提供了见识。我们的结果表明,在某些信道实现和采样相位误差(可能在中继终端和目标终端中发生)下,常规符号间隔协作系统的性能降低到无中继方案。但是,采用建议的分数间隔均衡器的协作系统的性能与采样器的相位无关,因此,保留了协作的全部好处。

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