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Spatial coding based on minimum BER in 1-bit massive MIMO systems

机译:1位大规模MIMO系统中基于最小BER的空间编码

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We consider a downlink 1-bit quantized multiuser (MU) multiple-input-multiple-output (MIMO) system, where 1-bit digital-to-analog (DACs) and analog-to-digital converters (ADCs) are used at the transmitter and the receiver for economical and computational efficiency. We end up with a discrete memoryless channel with input and output vectors belonging to the QPSK constellation. In the context of massive (MIMO) systems the number of base station (BS) antennas is much larger than the number of receive antennas. This leads to high input cardinality of the channel. In this work we introduce a method to reduce the input set based on the mimimum bit-error-ratio (BER) criterion combined with a non-linear precoding technique. This method is denoted as spatial coding. Simulations show that this spatial coding improves the BER behavior significantly removing the error floor due to coarse quantization.
机译:我们考虑一个下行链路1位量化多用户(MU)多输入多输出(MIMO)系统,在该系统中使用1位数模(DAC)和模数转换器(ADC)。发送器和接收器,以提高经济性和计算效率。我们最终得到一个离散的无记忆通道,该通道的输入和输出矢量属于QPSK星座图。在大规模(MIMO)系统的情况下,基站(BS)天线的数量远大于接收天线的数量。这导致通道的高输入基数。在这项工作中,我们介绍了一种基于最小误码率(BER)准则与非线性预编码技术相结合的减少输入集的方法。该方法称为空间编码。仿真表明,这种空间编码改善了BER行为,从而显着消除了由于粗略量化而导致的错误底限。

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