Analysis of time and frequency synchronization error for wireless systems using OFDM

被引:0
作者
Feng Shu
Shixin Cheng
James Lee
Ming Chen
Xiaohu You
机构
[1] Southeast University,National Mobile Communications Research Laboratory
来源
Science in China Series F: Information Sciences | 2005年 / 48卷
关键词
OFDM; time synchronization error; frequency synchronization error; normalized interference power; upper bound;
D O I
暂无
中图分类号
学科分类号
摘要
Due to frequency-selective and time-variant property of wireless channel together with additive noise and mismatch of oscillators between transmitter and receiver, there are always time and frequency synchronization errors in a practical OFDM system. To investigate the effect of the two kinds of errors on system performance, the average normalized interference power (NIP) is defined. A simple supper bound for NIP caused by time synchronization error (TSE) and the tighter upper bound for NIP resulting from frequency synchronization error (FSE) are derived independently. Simulations in typical short wave (SW) and medium wave (MW) channels further verify the correctness and tightness of these upper bounds. They actually provide good approximations to NIPs. Moreover, the upper bound for NIP resulting from FSE is tighter than traditional upper bound. Additionally, a new solution is proposed to relax the precision requirement for time synchronization algorithm, which can achieve a better tradeoff between time synchronization precision and bandwidth efficiency. These upper bounds will be useful in developing and choosing time and frequency synchronization algorithms in OFDM system to achieve a specific NIP value for a given channel condition.
引用
收藏
页码:379 / 396
页数:17
相关论文
共 37 条
[1]  
Chang R. W.(1966)Synthesis of band-limited orthogonal signals for multi-channel data transmission Bell Syst. Tech. J. 45 1775-1796
[2]  
Chang R. W.(1968)A theoretical study of performance of an orthogonal multiplexing data transmission scheme IEEE Trans. Commun. 16 529-540
[3]  
Gibby R. A.(1985)Analysis and simulation of a digital mobile channel using orthogonal frequency division multiplexing IEEE Trans. Commun. 33 665-675
[4]  
Cimini L. J.(1990)Multicarrier modulation for data transmission: an idea whose time has come IEEE Commun. Mag. 34 5-14
[5]  
Bingham J. A.(2001)On channel estimation and detection for multicarrier signals in fast and selective Rayleigh Fading Channels IEEE Trans. Commun. 49 1375-1387
[6]  
Choi Y. S.(1971)Data transmission by frequency-division multiplexing using the discrete Fourier transform IEEE Trans Communication Technology 19 628-634
[7]  
Voltz P. J.(2004)An Overview of MIMO Communications—A Key to Gigabit Wireless Proceedings of IEEE 92 198-216
[8]  
Casara F. A.(2004)Broadband MIMO-OFDM wireless communications Proceedings of IEEE 92 271-293
[9]  
Weinstein S. B.(2003)From theory to practice: An overview of MIMO space-time coded wireless systems IEEE JSAC 21 281-298
[10]  
Ebert P. M.(2004)Multiuser detection algorithm based on belief propagation in multiple-input multiple-output systems Science in China, Ser. F 47 384-393