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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Optimal Timing at the Relay in OFDM Based Two Way Relay Systems
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Optimal Timing at the Relay in OFDM Based Two Way Relay Systems

机译:基于OFDM双向中继系统中中继的最佳时序。

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摘要

In amplify and forward (AF) two way relay networks (TWRN), two sources are allowed to transmit simultaneously in the multiple access time slot. Signal misalignment at the relay occurs due to the inaccurate time slot synchronization and different propagation delay. In broadband wireless communications, the misalignment could cover several symbol intervals. In orthogonal frequency division multiplexing (OFDM) based TWRN, such signal misalignment raises question on how to choose the fast Fourier transform (FFT) window at the relay node in order to minimize the interference which will be forwarded to the sources. In this paper, the timing issue of the received superimposed signal at the relay for both sources in OFDM based AF-TWRN is investigated. The optimal timing that minimizes the total interference power at the relay is studied. The imperfect timing induced interference power at each timing point is derived. An efficient estimator is proposed for the relay to decide where to establish the FFT window boundary in order to introduce the minimum interference plus noise power based on the superimposed training block from the two source nodes. The estimator is a sliding window estimator measuring the total interference plus noise power at each timing position, and the timing position which minimizes the metric function is the optimal position to establish the FFT window. Finally, the performance of the proposed estimator is evaluated by computer simulation in the presence of different amount of signal misalignment.
机译:在放大转发(AF)双向中继网络(TWRN)中,允许两个源在多址访问时隙中同时传输。由于不正确的时隙同步和不同的传播延迟,会导致继电器信号失准。在宽带无线通信中,未对准可能会覆盖几个符号间隔。在基于正交频分复用(OFDM)的TWRN中,这种信号失准提出了一个问题,即如何在中继节点上选择快速傅立叶变换(FFT)窗口,以最小化将被转发到信源的干扰。在本文中,研究了在基于OFDM的AF-TWRN中两个源在中继站接收的叠加信号的时序问题。研究了使继电器总干扰功率最小的最佳时序。得出在每个定时点上不完美的定时引起的干扰功率。提出了一种有效的估计器,用于中继器来决定在何处建立FFT窗口边界,以便基于来自两个源节点的叠加训练块引入最小干扰加噪声功率。估计器是一个滑动窗口估计器,它测量每个定时位置的总干扰和噪声功率,并且使度量函数最小的定时位置是建立FFT窗口的最佳位置。最后,在存在不同数量的信号失准的情况下,通过计算机仿真来评估所提出的估计器的性能。

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