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首页> 外文期刊>IEEE Transactions on Signal Processing >Worst-Case MSE Precoder Design for Imperfectly Known MIMO Communications Channels
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Worst-Case MSE Precoder Design for Imperfectly Known MIMO Communications Channels

机译:不完全已知的MIMO通信通道的最坏情况MSE预编码器设计

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This paper considers a worst-case precoder design problem for multiple-input multiple-output (MIMO) wireless communication systems with imperfect channel knowledge at the transmitter. When the MIMO channel is a full-row rank matrix, which arises generically when the number n_(T) of transmit antennas is greater or equal to the number n_(R) of receive antennas, and when channel state information is known perfectly at the transmitter, the channel can be equalized exactly by employing a precoder equal to the channel pseudo-inverse. However, in actual systems, it is necessary to take into account the channel estimation error. We consider here a worst-case precoder design problem where the goal is to find the precoder minimizing the equalization mean-square error for the least favorable channel located in a ball centered about the estimated channel. Lagrangian optimization is used to convert this min-max problem into a min-min convex minimization problem over a convex domain which can be solved in closed form. The robust precoder and associated least favorable channel have an intuitive interpretation since the least-favorable channel zeroes out the weakest subchannels, and the robust precoder implements a pseudo-inverse only for the remaining subchannels.
机译:本文考虑了发射机处信道知识不完善的多输入多输出(MIMO)无线通信系统的最坏情况预编码器设计问题。当MIMO信道是全行秩矩阵时,通常会在以下情况下出现:发送天线的数量n_(T)大于或等于接收天线的数量n_(R),并且当信道状态信息完全已知时发射器,可以通过采用等于信道伪逆的预编码器来精确地均衡信道。但是,在实际系统中,必须考虑信道估计误差。我们在这里考虑最坏情况的预编码器设计问题,其中的目标是找到使位于以估计通道为中心的球中最不利的通道的均衡均方误差最小的预编码器。拉格朗日优化用于将该最小-最大问题转换为凸域上的最小-最小凸最小化问题,该问题可以以封闭形式求解。由于最不利的信道将最弱的子信道清零,因此健壮的预编码器和关联的最不理想的信道具有直观的解释,而健壮的预编码器仅对其余子信道实现伪逆。

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