Title :
Analysis of the Frequency Offset Effect on Zadoff–Chu Sequence Timing Performance
Author :
Min Hua ; Mao Wang ; Yang, Kristo Wenjie ; Zou, Kingsley Jun
Author_Institution :
Wireless Networking & Mobile Commun. Group, Nanjing Univ. of Sci. & Technol., Nanjing, China
Abstract :
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 timing offset and a frequency offset, 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 timing spectrum, 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.
Keywords :
radiocommunication; random sequences; synchronisation; timing; ZC sequence; Zadoff-Chu sequence timing performance; autocorrelation properties; frequency offset effect; pseudorandom noise sequences; synchronization sequences; synchronization signal; time synchronization sequence; timing errors; timing offset; timing spectrum; wireless communication systems; Correlation; OFDM; Receivers; Synchronization; Time-frequency analysis; Uncertainty; Frequency uncertainty; Zadoff-Chu sequences; Zadoff???Chu (ZC) sequences; frequency uncertainty; timing spectrum; timing uncertainty;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2014.2364597