Data Aided Symbol Timing Estimation in Space-Time Coded CPM Systems over Rayleigh Fading Channels

Wenli Shen, Minjian Zhao, Peiliang Qiu, Aiping Huang
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引用次数: 3

Abstract

The technology of space-time coded continuous phase modulation (STC-CPM) has aroused considerable attention recently in wireless communication systems for improving the capacity and data rate without bandwidth expansion. Symbol timing synchronization is an important issue in such systems. In this paper, a data aided symbol timing estimation algorithm was proposed for burst-mode STC-CPM systems over Rayleigh fading channels. A training sequence is embedded before transmission of each packet. The receiver first adds the signals from different receive antennas and then calculates the digital Fourier transformation (DFT) of the phase of the one-symbol differential signal of the sum. The initial symbol timing offset can be estimated from the phase of the tone component of the DFT outputs. MATLAB simulation results show that the variance of the timing estimation error is very small in slow Rayleigh flat fading channels and frequency selective fading channels and the degradation of frame error rate (FER) is significantly small under the condition of non-ideal synchronization. This algorithm is suitable for any numbers of transmit and receive antennas and can estimate the timing offset rapidly and accurately in STC-CPM systems.
瑞利衰落信道下空时编码CPM系统的数据辅助符号时序估计
空时编码连续相位调制(STC-CPM)技术在无线通信系统中以不增加带宽而提高容量和数据速率而受到广泛关注。符号定时同步是这类系统中的一个重要问题。提出了一种基于瑞利衰落信道的突发模式STC-CPM系统的数据辅助符号时序估计算法。在每个数据包传输之前嵌入一个训练序列。接收机首先将来自不同接收天线的信号相加,然后计算其和的单符号差分信号的相位的数字傅里叶变换(DFT)。初始符号定时偏移可以从DFT输出的音调分量的相位估计。MATLAB仿真结果表明,在慢瑞利平坦衰落信道和频率选择性衰落信道中,定时估计误差的方差很小,非理想同步条件下,帧误码率(FER)的退化很小。该算法适用于任意数量的发射天线和接收天线,可以快速准确地估计STC-CPM系统的时间偏移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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