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A space-time coding modem for high-data-rate wireless communications

机译:用于高数据速率无线通信的时空编码调制解调器

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摘要

This paper presents the theory and practice of a new advanced modem technology suitable for high-data-rate wireless communications and presents its performance over a frequency-flat Rayleigh fading channel. The new technology is based on space-time coded modulation (STCM) with multiple transmit and/or multiple receive antennas and orthogonal pilot sequence insertion (O-PSI). In this approach, data is encoded by a space-time (ST) channel encoder and the output of the encoder is split into N streams to be simultaneously transmitted using N transmit antennas. The transmitter inserts periodic orthogonal pilot sequences in each of the simultaneously transmitted bursts. The receiver uses those pilot sequences to estimate the fading channel. When combined with an appropriately designed interpolation filter, accurate channel state information (CSI) can be estimated for the decoding process. Simulation results of the proposed modem, as applied to the IS-136 cellular standard, are presented. We present the frame error rate (FER) performance results as a function of the signal-to-noise ratio (SNR) and the maximum Doppler frequency, in the presence of timing and frequency offset errors. Simulation results show that for a 10% FER, a 32-state eight-phase-shift keyed (8-PSK) ST code with two transmit and two receive antennas can support data rates up to 55.8 kb/s on a 30-kHz channel, at an SNR of 11.7 dB and a maximum Doppler frequency of 180 Hz. Simulation results for other codes and other channel conditions are also provided. We also compare the performance of the proposed STCM scheme with delay diversity schemes and conclude that STCM can provide significant SNR improvement over simple delay diversity.
机译:本文介绍了适用于高数据速率无线通信的新型高级调制解调器技术的理论和实践,并介绍了其在平坦的瑞利衰落信道上的性能。这项新技术基于具有多个发射和/或多个接收天线以及正交导频序列插入(O-PSI)的空时编码调制(STCM)。在这种方法中,数据由空时(ST)通道编码器编码,并且编码器的输出被拆分为N个流,以使用N个发射天线同时发送。发射机在每个同时发送的脉冲串中插入周期性的正交导频序列。接收机使用那些导频序列来估计衰落信道。与适当设计的插值滤波器结合使用时,可以为解码过程估计准确的信道状态信息(CSI)。提出了拟议的调制解调器的仿真结果,并将其应用于IS-136蜂窝标准。在存在定时和频率偏移误差的情况下,我们将帧误差率(FER)性能结果作为信噪比(SNR)和最大多普勒频率的函数。仿真结果表明,对于10%的FER,具有两个发射天线和两个接收天线的32状态八相移键控(8-PSK)ST码可以在30 kHz信道上支持高达55.8 kb / s的数据速率SNR为11.7 dB,最大多普勒频率为180 Hz。还提供了其他代码和其他信道条件的仿真结果。我们还比较了所提出的STCM方案与延迟分集方案的性能,并得出结论,与简单的延迟分集相比,STCM可以显着提高SNR。

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