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An Efficient Method for MSE Transceiver Design With Imperfect CSIat Both Ends of a MIMO Link

机译:使用MIMO链路的不完美CSIAT的MSE收发器设计有效方法

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Multiple transmit and receive antennas can be used to form multiple-input multiple-output (MIMO) channels to increase the capacity by a factor of the minimum number of transmit and receive antennas. In this paper, we propose a novel joint linear transceiver design for single-user multiple-input, multiple-output (SU-MIMO) systems employing improper signal constellations. In particular, improved minimum mean square error (MMSE) transceiver is designed based on modified cost functions, with channel mean as well as both transmit and receive correlation information at both ends. The joint design is formulated into an optimization problem. The optimum closed-form precoder and decoder are derived. Compared to the case with perfect channel state information (CSI), linear filters are added at both ends to balance the suppression of channel noise and the noise from imperfect channel estimation. The superiority of the proposed joint linear transceiver design over the conventional solutions is verified by simulation results.
机译:可以使用多个发送和接收天线来形成多输入多输出(MIMO)通道,以通过最小数量的发射和接收天线增加容量。在本文中,我们提出了一种用于单用户多输入,多输出(SU-MIMO)系统的新型接头线性收发器设计,采用不当信号星座。特别地,改进的最小均方误差(MMSE)收发器基于修改的成本函数设计,通道均值以及两端发送和接收相关信息。联合设计被配制成优化问题。派生最佳的闭合式预编码器和解码器。与具有完美信道状态信息(CSI)的情况相比,两端添加线性滤波器以平衡信道噪声的抑制和来自不完美信道估计的噪声。通过仿真结果验证了通过常规解决方案的提出的接头线性收发器设计的优越性。

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