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Analysis of the Frequency Offset Effect on Zadoff–Chu Sequence Timing Performance

机译:频率偏移对Zadoff-Chu序列时序性能的影响分析

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摘要

Zadoff–Chu (ZC) sequences have been used as synchronization sequences in modern wireless communication systems, replacing the conventional pseudorandom noise sequences due to their perfect autocorrelation properties. We first study the problem of ambiguity between a and a , which arises when a ZC sequence is used as a synchronization signal. We then show how a frequency offset can impair the timing property of a ZC sequence, causing irreducible timing errors. An analytical framework, particularly the , is developed, which fully characterizes a ZC sequence's timing properties and its fundamental limitations as a time synchronization sequence in the presence of a frequency offset between the transmitter and the receiver. This analytical framework provides a powerful analytical tool for timing signal design and performance analysis of ZC sequences.
机译:Zadoff-Chu(ZC)序列已在现代无线通信系统中用作同步序列,由于其完美的自相关特性,它取代了常规的伪随机噪声序列。我们首先研究a和a之间的歧义性问题,该问题在将ZC序列用作同步信号时出现。然后,我们展示了频率偏移如何损害ZC序列的时序特性,从而导致不可减少的时序误差。开发了一个分析框架,尤其是,它在发送器和接收器之间存在频率偏移的情况下,将ZC序列的定时特性及其基本局限性完全表征为时间同步序列。该分析框架为时序信号设计和ZC序列性能分析提供了强大的分析工具。

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