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Multi-Node ML Time and Frequency Synchronization for Distributed MIMO-Relay Beamforming Over Time-Varying Flat-Fading Channels

机译:多节点ML时间和频率同步,用于随着时变平衰落通道的分布式MIMO - 继电器波束形成

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摘要

In this paper, we investigate maximum likelihood (ML) time delay (TD) and carrier frequency offset (CFO) synchronization in multi-node decode-and-forward cooperative relaying systems operating over time-varying channels. This new synchronization scheme is embedded into a distributed multiple input multiple output (MIMO)-relay beamforming transceiver structure to avoid the drawbacks of multidimensional ML estimation at the destination and to minimize the overhead cost. By accounting for a perfect Doppler spread value, the new synchronization solution delivers accurate TD and CFO estimates. For real-world operation, however, this new technique can be jointly implemented with any Doppler spread estimator in a new iterative scheme using a time-constant channel (TCC)-based synchronization method at the initialization step. The resulting TD and CFO estimates along with the channel estimates are then fed into a distributed MIMO-relay beamforming transceiver of K single-antenna nodes, for pre-compensation at each node of the transmitted signals, to ensure constructive maximum ratio combining (MRC) at the destination. Simulation results show significant synchronization accuracy improvement over previous distributed multi-node synchronization techniques assuming TCCs. The latter translates into noticeable gains in terms of useful link-level throughput, more so at higher Doppler or with more relaying nodes.
机译:在本文中,我们研究了在运行时变不同信道的多节点解码和前进协作中继系统中的最大可能性(ML)时间延迟(TD)和载波频率偏移(CFO)同步。该新的同步方案嵌入到分布式多输入多输出(MIMO) - 中波束成形收发器结构中,以避免目的地在目的地的多维ML估计的缺点并最小化开销成本。通过考虑完美的多普勒扩展值,新的同步解决方案提供精确的TD和CFO估计。然而,对于真实世界的操作,这种新技术可以在初始化步骤中使用时间常数信道(TCC)的同步方法在新的迭代方案中与任何多普勒扩展估计器共同实现。然后将得到的TD和CFO估计随着信道估计而被馈送到k单天线节点的分布式MIMO - 中继波束成形收发器,用于在发送信号的每个节点处进行预补偿,以确保构造最大比率组合(MRC)在目的地。仿真结果显示了假设TCCS的先前分布式多节点同步技术的显着同步准确性。在有用的链接级吞吐量方面,后者转换为明显的增益,更高的多普勒或更多的中继节点。

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