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出 处:《西南交通大学学报》2013年第6期1090-1096,1128,共8页Journal of Southwest Jiaotong University
基 金:国家自然科学基金资助项目(61250005);江西省科技厅自然科学基金资助项目(20122BAB2111015;20132BAB211035);教育部归国留学基金资助项目(第45批次);江西省教育厅基金资助项目(GJJ13007);中国博士后科学基金第54批面上资助项目(2013M541875)
摘 要:为加强MIMO双向中继系统的空间复用增益,研究一种低复杂度的发送和接收预编码矩阵.利用子空间对齐方法,将双向MIMO信道分解为多路单入单出(SISO)的子信道形式,使得两个源用户能够使用网络编码获取更好的空间复用增益.同时通过矩阵计算和转化,给出了一种优化的功率分配方案.在确定优化矩阵后,该方案能够为每个子信道独立地进行优化功率分配,并且能够得到各节点间优化功率分配的闭合表达式,从而将算法复杂度从O(n3)降低为O(n).仿真结果表明,在典型场景下,所提方案在具有更低复杂度的优势下,系统性能接近优化的梯度下降迭代方案,优于传统单纯前向放大转发方式(AF),有2.99 bit/(s·Hz)的性能增益.In order to enhance spatial multiplexing gain of multiple input multiple output( MIMO) two-way relay networks,the transceiver precoding matrixes for all nodes with low complexity were investigated. Using subspace alignment scheme,the bi-directional MIMO channel can be decoupled into several single input single output( SISO) sub-channels. It is accessible for source nodes to use network coding to obtain better spatial multiplexing gain. By calculating and transforming the matrices, an optimal power control method for MIMO two-way relay network was presented. This method can independently optimize each sub-channel power allocation with the fixed precoding matrix. Moreover,a closed-form solution for power allocation among relay nodes and users is derived which considerable decreases the complexity from O( n^3) to O( n). Simulation results show that the performance of the proposed approach is close to the iterative gradient descent solution and outperform the traditional pure amplify-and-forward( AF) two-way mode 2. 99 bit /( s·Hz) gains with less computational load in typical scenarios.
关 键 词:多输入多输出系统 网络编码 双向中继 预编码设计 功率控制 凸优化
分 类 号:TN925[电子电信—通信与信息系统]
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