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ML Time-Delay and CFO Synchronization for MIMO-Relay Beamforming over Time-Varying Channels

机译:ML时滞和CFO同步用于MIMO - 中继波束形成随着时变通道的形成

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In this paper, we investigate maximum likelihood (ML) time delay (TD) and carrier frequency offset (CFO) synchronization (i.e., estimation and pre- compensation) in decode-and-forward (DF) cooperative systems operating over time-varying channels (TVCs). The new technique is embedded at each relay node in order 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 at each relay. The resulting TD and CFO estimates along with the channel estimates are then exploited by the MIMO relay for precompensation at each node of the distributed transmit beamforming 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 time-constant channels (TCCs). The latter translates into noticeable gains in terms of useful (i.e., after accounting for incurred overhead) link-level throughput, more so at higher Doppler.
机译:在本文中,我们调查在通过时变通道运行的解码和前进(DF)协作系统中的最大可能性(ML)时间延迟(TD)和载波频率偏移(即,估计和预补偿) (TVCS)。新技术嵌入每个中继节点,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,新的同步解决方案在每个继电器提供精确的TD和CFO估计。然后,由MIMO继电器利用产生的TD和CFO估计与信道估计进行利用,以便在分布式发送波束成形信号的每个节点处的前进,以确保在目的地处组合(MRC)的建设性最大比率。仿真结果显示了假设时间常数通道(TCC)的先前分布式多节点同步技术的显着同步精度改进。后者在有用的方面转换为明显的收益(即,在占据开销的发生之后)链路级吞吐量,更高的多普勒更高。

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