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A Randomized Space-Time Spreading Scheme for Massive MIMO Channels

机译:大规模MIMO信道的随机时空扩展方案

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We consider a wireless transmission scheme based on randomized space-time spreading (STS) systems over massive multiple-input multiple-output (MIMO) channels. In the systems, the signals are spread by spreading matrices over time and antenna domains at the transmitter. We propose that the spreading matrices are generated from binary pseudo-noise (PN) and mutual quasi-orthogonal sequences, by partitioning each of the sequences into subsequences treated as real and imagination parts of rows or columns of a spreading matrix. We give a likelihood ascent search (LAS) detector for the STS systems and analyze its computational complexity. The number of multiplication and division operations for the LAS detector does not depend on its iterative process and the number of chips in the bit period. We use Monte Carlo method to solve the bit error rates (BERs) of the STS systems and to count numbers of evaluating bits in the LAS detectors. We choose the system parameters, such as the number of chips in the bit period and the transmission bit rates, according to BER performance and/or the numbers of evaluating bits attained from Monte-Carlo method. With the spreading matrices, the detection, and the suitable parameters, the STS systems achieve BERs near to their single-bit performance, which is the BER of a STS system with a single bit spread by orthonormal sequences at each transmitting antenna. We also compare our systems with V-BLAST-like spatial multiplexing systems with BPSK signals to show the improvement of the BER performance.
机译:我们考虑在大规模多输入多输出(MIMO)信道上基于随机时空扩展(STS)系统的无线传输方案。在这些系统中,信号是通过在发射机上随时间和天线域扩展矩阵来扩展的。我们建议通过将每个序列划分为子序列作为扩展矩阵的行或列的实部和想像部分,从二进制伪噪声(PN)和相互准正交序列中生成扩展矩阵。我们为STS系统提供了一种可能性上升搜索(LAS)检测器,并分析了其计算复杂性。 LAS检测器的乘法和除法运算次数不取决于其迭代过程和位周期中的码片数。我们使用蒙特卡洛方法解决STS系统的误码率(BER)并计算LAS检测器中评估位的数量。我们根据BER性能和/或通过蒙特卡洛方法获得的评估比特数来选择系统参数,例如比特周期中的码片数和传输比特率。借助扩展矩阵,检测和合适的参数,STS系统可实现接近其单比特性能的BER,这是在每个发射天线上由正交序列扩展单个比特的STS系统的BER。我们还将我们的系统与带有BPSK信号的类似V-BLAST的空间复用系统进行比较,以显示BER性能的提高。

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