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MIMO equalization of 16-QAM signal blocks using an FFT-based alphabet-matched CMA

机译:使用基于FFT的字母匹配的CMA MIMO均衡16-QAM信号块

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In this work we investigate the blind equalization of signal blocks of data, which have been transmitted over a multiple-input/multiple-output channel using 16-QAM modulation. We apply the Fast Fourier Transform (FFT) in order to improve the efficiency of the blind equalizer update. Our equalizer is based on a cost function, which is specified as the sum of the constant modulus algorithm (CMA) and the alphabet-matched algorithm (AMA). The equalization is done using a block processing multistage approach as was introduced in [3], but with an FFT implementation. In this work, a 3-input/7-output MIMO communication system is considered, and the performance of the MIMO equalizer is analyzed using Monte Carlo simulations. Performance is measured based on the average symbol error rate (SER) and the total number of equalized cases. In addition, initial comparative results are provided for a fixed number of transmit antennas, but with varying numbers of receive antennas.
机译:在这项工作中,我们研究了使用16-QAM调制在多输入/多输出通道上通过多输入/多输出信道发送的数据块的盲均衡。我们应用快速傅里叶变换(FFT),以提高盲均衡器更新的效率。我们的均衡器基于成本函数,该成本函数被指定为恒定模量算法(CMA)和字母匹配算法(AMA)的总和。使用块处理多级方法进行均衡,如[3]中介绍,而是使用FFT实现。在这项工作中,考虑了一个3输入/ 7输出MIMO通信系统,使用MIMO Carlo仿真分析了MIMO均衡器的性能。基于平均符号错误率(SER)和均衡情况总数来测量性能。另外,为固定数量的发射天线提供初始比较结果,但是具有不同数量的接收天线。

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