论文标题
RIS辅助细胞网络的部分分布式波束形成设计
Partially Distributed Beamforming Design for RIS-Aided Cell-Free Networks
论文作者
论文摘要
无细胞网络被认为是满足第五代(5G)通信的更高利率要求的有前途的技术。大多数在无单元网络上的作品都集中在完全集中的波束形成上,以最大程度地提高系统性能,或者完全分布的波束成形,以避免接入点(AP)之间的广泛通道状态信息(CSI)交换。为了同时提高网络容量的提高和CSI交换降低,我们提出了一种针对可重构智能表面(RIS)辅助网络网络的部分分布的波束成形设计算法。我们的目的是通过设计主动和被动的光束形成对所有用户的加权总数最大化,从而通过RIS元素的APS和单位模式约束传输功率约束。加权总和最大化问题首先转化为等效的加权总和平方 - eRROR(sum-mse)最小化问题,然后将交替优化(AO)方法采用到迭代设计主动和被动式波束形式。具体而言,通过局部AP获得主动波束形成向量,并且被动光束形成矢量通过中央处理单元(CPU)优化。数值结果不仅说明了所提出的部分分布的算法与常规的局部波束形成方法相比,具有显着的性能提高,而且还进一步显示了在无单元网络中部署RIS的巨大潜力。
Cell-free networks are regarded as a promising technology to meet higher rate requirements for beyond fifth-generation (5G) communications. Most works on cell-free networks focus on either fully centralized beamforming to maximally enhance system performance, or fully distributed beamforming to avoid extensive channel state information (CSI) exchange among access points (APs). In order to achieve both network capacity improvement and CSI exchange reduction, we propose a partially distributed beamforming design algorithm for reconfigurable intelligent surface (RIS)-aided cell-free networks. We aim at maximizing the weighted sum-rate of all users by designing active and passive beamforming subject to transmit power constraints of APs and unit-modulus constraints of RIS elements. The weighted sum-rate maximization problem is first transformed into an equivalent weighted sum-mean-square-error (sum-MSE) minimization problem, and then alternating optimization (AO) approach is adopted to iteratively design active and passive beamformer. Specifically, active beamforming vectors are obtained by local APs and passive beamforming vector is optimized by central processing unit (CPU). Numerical results not only illustrate the proposed partially distributed algorithm achieves the remarkable performance improvement compared with conventional local beamforming methods, but also further show the considerable potential of deploying RIS in cell-free networks.