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首页> 外文期刊>IEEE Transactions on Signal Processing >Downlink MMSE Transceiver Optimization for Multiuser MIMO Systems: Duality and Sum-MSE Minimization
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Downlink MMSE Transceiver Optimization for Multiuser MIMO Systems: Duality and Sum-MSE Minimization

机译:多用户MIMO系统的下行MMSE收发器优化:对偶和Sum-MSE最小化

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摘要

We address the problem of minimum mean square error (MMSE) transceiver design for point-to-multipoint transmission in multiuser multiple-input-multiple-output (MIMO) systems. We focus on the problem of minimizing the downlink sum-MSE under a sum power constraint. It is shown that this problem can be solved efficiently by exploiting a duality between the downlink and uplink MSE feasible regions. We propose two different optimization frameworks for downlink MMSE transceiver design. The first one solves an equivalent uplink problem, then the result is transferred to the original downlink problem. Duality ensures that any uplink MMSE scheme, e.g., linear MMSE reception or MMSE-decision feedback equalization (DFE), has a downlink counterpart. We propose two globally optimum algorithms based on convex optimization. The basic idea of the second framework is to perform optimization in an alternating manner by switching between the virtual uplink and downlink channels. This strategy exploits that the same MSE can be achieved in both links for a given choice of transmit and receive filters. This iteration is proven to be convergent.
机译:我们解决了多用户多输入多输出(MIMO)系统中点对多点传输的最小均方误差(MMSE)收发器设计问题。我们关注于在和功率约束下最小化下行链路和-MSE的问题。结果表明,通过利用下行链路和上行链路MSE可行区域之间的对偶性,可以有效解决此问题。我们为下行MMSE收发器设计提出了两种不同的优化框架。第一个解决等效的上行链路问题,然后将结果转移到原始的下行链路问题。对偶性确保任何上行链路MMSE方案,例如线性MMSE接收或MMSE决策反馈均衡(DFE),都具有下行链路对应项。我们提出了两种基于凸优化的全局最优算法。第二框架的基本思想是通过在虚拟上行链路和下行链路信道之间切换来以交替方式执行优化。这种策略利用了对于给定的发送和接收过滤器选择,可以在两个链路中实现相同的MSE。该迭代被证明是收敛的。

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