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引用次数: 10

摘要

讨论了双发射天线空时编码(STC)方案在GSM TDMA移动通信系统中的应用。举例来说,我们考虑了S. Alamouti提出的简单空时分组码(参见IEEE Journal on Selected Areas in Communications, vol.46, p.1451-8, 1998)在存在多路径环境、码间干扰(ISI)和加性高斯白噪声(AWGN)的情况下。硬输出维特比均衡器用于接收端,以对抗ISI和多径传播的色散效应。多分接分块衰落信道的计算机仿真结果表明,与传统的单发射天线方案相比,该方案具有一个分集阶的性能优势。在GSM演进(EDGE)系统增强数据速率的初步计算机仿真结果中,在典型的城市瑞利衰落环境下,在理想跳频和调制编码方案MCS1 (GMSK调制和0.53卷积码)下,在分组错误率为0.01(0.1)的情况下,与单天线传输方案相比,获得了2 dB (1.3 dB)左右的增益。用一种计算更简单的延迟分集方案获得了相同的块错误率性能。进一步的工作旨在完成对EDGE系统中可能应用的不同发射分集方案的全面性能比较。
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Space-time coding for the EDGE mobile radio system
The application of a space-time coding (STC) scheme using two transmit antennas in a GSM related TDMA mobile radio communications system is discussed. By way of example, we consider the simple space-time block code presented by S. Alamouti (see IEEE Journal on Selected Areas in Communications, vol.46, p.1451-8, 1998) in the presence of multipath environments, intersymbol interference (ISI) and additive white Gaussian noise (AWGN). Hard output Viterbi equalizers are used at the receiver site to combat the dispersive effects of ISI and multipath propagation. Computer simulation results for multi-tap block fading channels indicate a performance advantage of one diversity order over the conventional single transmit antenna scheme. In preliminary computer simulation results for the enhanced data rate for GSM evolution (EDGE) system, gains versus single antenna transmission schemes in the order of 2 dB (1.3 dB) at the block error rate 0.01 (0.1) have been obtained with ideal frequency hopping and the modulation and coding scheme MCS1 (GMSK modulation and a convolutional code with rate 0.53) in typical urban Rayleigh fading environments. The same gains in block error rate performance were achieved with a computationally simpler delay diversity scheme. Further work aims at completing a thorough performance comparison of different transmit diversity schemes for possible application in the EDGE system.
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