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Performance benefits of fractional sampling in the initial code synchronization for the wireless access of 3G mobile communications

机译:3G移动通信无​​线接入初始代码同步中小数采样的性能优势

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The paper addresses algorithms for the initial code synchronization of the W-CDMA wireless access infrastructure. Conventional non-coherent algorithms of sequential cell search usually operate at the chip rate. We match the conventional power detector procedure, based on one sample chip, to the fractional technique operating at twice the chip rate. In our analysis, we have used the constant false alarm rate procedure, often employed to perform effective tests. The benefits of using fractional chip sampling on the mean acquisition time are twofold: code acquisition denotes improved cross-correlation accuracy; timing error results are half those of the conventional technique. Slot synchronization error rate has been evaluated for various wireless channels (pedestrian and vehicular scenarios). The possible disturbing effect of further base stations has been also examined. The obtained results evidence a significant realtime saving of the mean acquisition time in the presence of typical pedestrian and vehicular scenarios.
机译:本文介绍了W-CDMA无线访问基础架构的初始代码同步算法。顺序小区搜索的常规非相干算法通常以码片速率运行。我们将基于一个样本芯片的常规功率检测器程序与以两倍芯片速率运行的分数技术相匹配。在我们的分析中,我们使用了恒定的误报率程序,该程序通常用于执行有效的测试。在平均采集时间上使用分数芯片采样的好处有两方面:代码采集表示互相关精度提高;定时误差结果是传统技术的一半。已针对各种无线信道(行人和车辆场景)评估了时隙同步错误率。还研究了其他基站的可能干扰效应。在典型的行人和车辆情况下,获得的结果证明了平均采集时间的大量实时节省。

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