Precoder Design for User-Centric Network Massive MIMO With Matrix Manifold Optimization

Rui Sun;Li You;An-An Lu;Chen Sun;Xiqi Gao;Xiang-Gen Xia
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Abstract

In this paper, we investigate the precoder design for user-centric network (UCN) massive multiple-input multiple-output (mMIMO) downlink with matrix manifold optimization. In UCN mMIMO systems, each user terminal (UT) is served by a subset of base stations (BSs) instead of all the BSs, facilitating the implementation of the system and lowering the dimension of the precoders to be designed. By proving that the precoder set satisfying the per-BS power constraints forms a Riemannian submanifold of a linear product manifold, we transform the constrained precoder design problem in Euclidean space to an unconstrained one on the Riemannian submanifold. Riemannian ingredients, including orthogonal projection, Riemannian gradient, retraction and vector transport, of the problem on the Riemannian submanifold are further derived, with which the Riemannian conjugate gradient (RCG) design method is proposed for solving the unconstrained problem. The proposed method avoids the inverses of large dimensional matrices, which is beneficial in practice. The complexity analyses show the high computational efficiency of RCG precoder design. Simulation results demonstrate the numerical superiority of the proposed precoder design and the high efficiency of the UCN mMIMO system.
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基于矩阵流形优化的用户中心网络海量MIMO预编码器设计
本文研究了基于矩阵流形优化的用户中心网络(UCN)海量多输入多输出(mMIMO)下行预编码器设计。在UCN mimo系统中,每个用户终端(UT)由一组基站(BSs)而不是所有基站(BSs)提供服务,从而方便了系统的实现,降低了需要设计的预编码器的尺寸。通过证明满足per-BS幂约束的预编码器集构成线性积流形的黎曼子流形,将欧几里德空间中的受限预编码器设计问题转化为黎曼子流形上的无约束预编码器设计问题。进一步推导了问题在黎曼子流形上的黎曼分量,包括正交投影、黎曼梯度、收缩和矢量移动,并由此提出了求解无约束问题的黎曼共轭梯度(RCG)设计方法。该方法避免了大维矩阵的逆运算,在实际应用中具有一定的优势。复杂度分析表明,RCG预编码器设计具有较高的计算效率。仿真结果证明了所提出的预编码器设计的数值优势和UCN mimo系统的高效率。
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