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Signal Design for Multiple Antenna Systems With Spatial Multiplexing and Noncoherent Reception

机译:具有空间复用和非相干接收的多天线系统的信号设计

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We consider signal design for multiple-input multiple-output (MIMO) systems with spatial multiplexing and noncoherent reception in a flat Rayleigh fading environment. We obtain the symbol vector error probability (SEP) of noncoherent detection as a function of the signal amplitude levels and the effective precoder matrix, which depends on the precoder structure and the channel transmit covariance matrix. It is found that at high values of average signal-to-noise ratio (SNR) per symbol vector per diversity branch, the SEP tends to reach saturation. To obtain the best error performance, we need to find the optimal precoder and constellation parameters that minimize the saturation value of the SEP. Optimization of the saturation value of the SEP is carried out using the binary signal constellations {0,1} and , , two transmit antennas, a real valued transmit covariance matrix with equal diagonal elements, and a diagonal precoder. Results show that the optimal values of the parameters are almost independent of the number of receive antennas when the number of receive antennas is large. We also observe that the error performance of MIMO noncoherent reception is better than that of MIMO coherent reception with imperfect channel state information for a certain range of average SNR.
机译:我们考虑在平坦瑞利衰落环境中具有空间复用和非相干接收的多输入多输出(MIMO)系统的信号设计。我们获得了非相干检测的符号矢量错误概率(SEP),它是信号幅度水平和有效预编码器矩阵的函数,它取决于预编码器结构和信道发射协方差矩阵。已经发现,在每个分集分支每个符号向量的平均信噪比(SNR)值较高时,SEP趋于达到饱和。为了获得最佳的错误性能,我们需要找到使SEP饱和值最小的最佳预编码器和星座参数。使用二进制信号星座{0,1}和...,两个发射天线,具有相等对角线元素的实值发射协方差矩阵和对角线预编码器,可以对SEP的饱和值进行优化。结果表明,当接收天线数较大时,参数的最佳值几乎与接收天线数无关。我们还观察到,对于一定范围的平均SNR,MIMO非相干接收的误码性能优于具有不完善信道状态信息的MIMO相干接收的误码性能。

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