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Interference Cancellation Techniques for Digital On-Channel Repeaters in T-DMB System

机译:T-DMB系统中数字同频转发器的干扰消除技术

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摘要

Digital on-channel repeater (DOCR) is regarded as a desirable solution to effectively build a wide-area network of mobile terrestrial-digital multimedia broadcasting (T-DMB) services. On the other hand, the DOCR mainly suffers from interference effects caused by a strong feedback signal and a time-varying channel dispersion. In this paper, we propose a novel DOCR for use in the T-DMB system in order to mitigate effectively both interference effects. First, we present an energy equalizer using the scarce pilot structure of T-DMB system to estimate a channel state information on every OFDM symbol. An optimum frequency domain channel estimation (FDCE) algorithm is then derived for the energy equalizer. In addition, a moving average filter (MAF) is employed to mitigate the phase distortion of truncated equalizer coefficients in deep null channel. Finally, in the performance evaluations, it is shown that the optimum FDCE outperforms a perfect FDCE. It is also shown that the DOCR equipped with the proposed interference cancellation can solve the problems caused by a limited channel information update, a phase distortion of the equalizer, and a residual feedback signal.
机译:数字同频转发器(DOCR)被认为是有效构建移动地面数字多媒体广播(T-DMB)服务的广域网的理想解决方案。另一方面,DOCR主要受到由强反馈信号和时变信道分散引起的干扰影响。在本文中,我们提出了一种新颖的DOCR用于T-DMB系统,以有效地减轻两种干扰的影响。首先,我们提出一种使用T-DMB系统稀缺的导频结构的能量均衡器,以估计每个OFDM符号上的信道状态信息。然后,为能量均衡器推导出最佳频域信道估计(FDCE)算法。此外,采用移动平均滤波器(MAF)来缓解深空信道中被截断的均衡器系数的相位失真。最后,在性能评估中显示,最佳FDCE优于完美FDCE。还显示配备有所提出的干扰消除的DOCR可以解决由有限的信道信息更新,均衡器的相位失真和残余反馈信号引起的问题。

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