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首页> 外文期刊>IEEE transactions on wireless communications >Transceiver Designs for Multipoint-to-Multipoint MIMO Amplify-and-Forward Relaying Systems
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Transceiver Designs for Multipoint-to-Multipoint MIMO Amplify-and-Forward Relaying Systems

机译:多点到多点MIMO放大转发中继系统的收发器设计

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摘要

In this paper, we consider multipoint-to-multipoint multi-input multi-output relay systems where multiple source-destination pairs simultaneously communicate through a single multiple antenna relay. In this system configuration, we optimize two metrics when designing the source, relay and destination filters. The first one is sum mean-squared-error (MSE) and the second one is maximum pairwise MSE. These two problems are shown to be non-convex, and thus it is quite complex to find an analytical solution. To address this issue, we first introduce the sum MSE minimization scheme based on global channel state information (CSI) at all nodes. Then, a method which reduces complexity and CSI requirements is proposed by utilizing error covariance decomposition and MSE duality between broadcast channel and multiple access channel. Second, the pairwise MSE balancing algorithms are developed to guarantee fairness for all pairs. Similar to the case of the sum MSE minimization problem, we simplify the original pairwise MSE balancing problem to a second-order cone programming problem which can be solved using standard optimization tools. Through numerical simulations, we confirm the effectiveness of our proposed schemes.
机译:在本文中,我们考虑了多点对多点多输入多输出中继系统,其中多个源-目标对同时通过单个多天线中继进行通信。在此系统配置中,我们在设计源过滤器,中继过滤器和目标过滤器时优化了两个指标。第一个是均方和误差(MSE),第二个是最大成对MSE。这两个问题显示为非凸的,因此找到一个解析解非常复杂。为了解决这个问题,我们首先在所有节点上引入基于全局信道状态信息(CSI)的MSE总和最小化方案。然后,提出了一种利用误差协方差分解和广播信道与多路访问信道之间的MSE对偶性来降低复杂度和CSI要求的方法。其次,开发成对的MSE平衡算法以确保所有对的公平性。与总MSE最小化问题类似,我们将原始的成对MSE平衡问题简化为可以使用标准优化工具解决的二阶锥规划问题。通过数值模拟,我们确认了所提出方案的有效性。

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