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Effect and Compensation of Colored Timing Jitter in Pulsed UWB Systems

机译:脉冲超宽带系统中彩色定时抖动的影响和补偿

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摘要

Ultra-wideband (UWB) systems impose a stringent requirement on the jitter performance of the system clock. So far, only the effect of white Gaussian timing jitter has been considered in the literature via numerical simulation. However, practical clocks commonly exhibit colored jitter. In this paper, we first investigate the bit error rate (BER) performance of a single-user binary pulse position modulation UWB system subjected to white and colored Gaussian jitter. It is shown that colored jitter degrades BER performance much more than white jitter, and the extent of degradation increases as the jitter bandwidth decreases. Motivated by this result, we then propose a new jitter compensation scheme to improve the BER performance under colored jitters with small jitter bandwidth, in which each information-bearing data symbol is coupled with a pilot symbol. The proposed scheme attempts to track first the jitter for the current pilot symbol by making use of the pulse-template correlation function. This information is then used together with the known clock jitter bandwidth and jitter root-mean-square (RMS) value to detect the current data symbol according to the maximum likelihood criterion. Simulation results show that the algorithm is effective in improving the BER performance for colored jitters with small jitter bandwidth.
机译:超宽带(UWB)系统对系统时钟的抖动性能提出了严格的要求。迄今为止,文献中通过数值模拟仅考虑了白色高斯定时抖动的影响。但是,实际的时钟通常会出现彩色抖动。在本文中,我们首先研究遭受白色和彩色高斯抖动的单用户二进制脉冲位置调制UWB系统的误码率(BER)性能。结果表明,彩色抖动使BER性能下降的幅度比白色抖动大得多,并且随着抖动带宽的减小,降级的程度增加。受此结果的启发,我们然后提出了一种新的抖动补偿方案,以提高抖动带宽较小的有色抖动下的BER性能,其中每个承载信息的数据符号都与一个导频符号耦合。所提出的方案尝试通过利用脉冲模板相关函数来首先跟踪当前导频符号的抖动。然后,此信息与已知的时钟抖动带宽和抖动均方根(RMS)值一起使用,以根据最大似然准则来检测当前数据符号。仿真结果表明,该算法可以有效提高抖动带宽小的彩色抖动的BER性能。

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