Title :
Analysis of the Frequency Offset Effect on Random Access Signals
Author :
Min Hua ; Mao Wang ; Wenjie Yang ; Xiaohu You ; Feng Shu ; Jianxin Wang ; Weixing Sheng ; Qian Chen
Author_Institution :
Wireless Networking & Mobile Commun. Group, Nanjing Univ. of Sci. & Technol., Nanjing, China
Abstract :
Zadoff-Chu (ZC) sequences have been used as random access sequences in modern wireless communication systems, replacing the conventional pseudo-random-noise (PN) sequences due to their superior autocorrelation properties. An analytical framework quantifying the ZC sequence´s performance and its fundamental limitation as a random access sequencein the presence of frequency offset between the transmitter and the receiver is introduced. We show that a ZC sequence´s perfect autocorrelation properties can be severely impaired by the frequency offset thereby limiting the overall performance of the random access signals formed from these sequences. First, we derive the autocorrelation function of these random access sequences as a function of the frequency offset. Next, we introduce the concept of critical frequency offsets and the spectrum associated with a ZC sequence set to characterize the frequency offset properties of the random access signals. Finally, we demonstrate that the frequency offset immunity of a ZC sequence set can be controlled by shaping the spectrum of the ZC sequence set.
Keywords :
radio receivers; radio transmitters; radiocommunication; sequences; ZC sequence set; ZC sequences; Zadoff-Chu sequences; autocorrelation properties; critical frequency offsets; frequency offset effect; frequency offset immunity; random access sequences; random access signals; receiver; transmitter; wireless communication systems; Correlation; Interference; OFDM; Receivers; Timing; Transmitters; Wireless communication; Random access signal; Zadoff-Chu sequence; Zadoff-Chu sequence set spectrum; critical frequency offset; frequency offset;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2013.091813.130045