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Cell Search Time Comparison Using Hierarchical and Non-hierarchical Synchronization Channels in OFDM Based Evolved UTRA Downlink

机译:基于OFDM的演进UTRA下行链路中使用分层和非分层同步信道的小区搜索时间比较

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摘要

This paper presents a comparison of hierarchical and non-hierarchical synchronization channel (SCH) structures in terms of the initial cell search time and neighboring cell search time in order to establish the optimum SCH structure in the Evolved UTRA downlink. Computer simulation results show that in a 19-cell configuration, the cell search time at 90% in the cumulative distribution function (CDF) using the hierarchical SCH structure is less than half that using the non-hierarchical SCH structure in a neighboring cell search under low signal-to-interference plus noise power ratio (SINR) conditions, although both structures achieve almost the same cell search time in the initial cell search. This is due to the cross-correlation based SCH symbol timing detection in the hierarchical SCH structure, which is affected less by noise than the auto-correlation based detection in the non-hierarchical SCH structure. Thus, we conclude that the hierarchical SCH structure is superior to the non-hierarchical SCH structure based on the cell search time performance especially in the neighboring cell search.
机译:本文介绍了在初始小区搜索时间和相邻小区搜索时间方面的分层和非分层同步信道(SCH)结构的比较,以便在演进的UTRA下行链路中建立最佳的SCH结构。计算机仿真结果表明,在19个单元的配置下,使用分层SCH结构的累积分布函数(CDF)中90%的单元搜索时间小于使用非分层SCH结构在相邻单元搜索下的搜索时间的一半。尽管两种结构在初始小区搜索中都实现了几乎相同的小区搜索时间,但信噪比和噪声功率比(SINR)较低。这是由于分层SCH结构中基于互相关的SCH符号定时检测的结果,与非分层SCH结构中基于自相关的检测相比,噪声的影响较小。因此,我们得出结论,基于小区搜索时间性能,分层SCH结构优于非分层SCH结构,尤其是在相邻小区搜索中。

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