论文标题
部分可观测时空混沌系统的无模型预测
Joint BS-RIS-User Association and Beamforming Design for RIS-assisted Cellular Networks
论文作者
论文摘要
可重新配置的智能表面(RIS)是第六代(6G)网络的革命性技术,因为它可以操纵无线环境。作为频率选择的设备,RIS只能有效地塑造特定频带中信号的传播。由于这种频率选择性属性,由于相邻的BSS在不同的频带上运行,因此RIS在蜂窝网络中的部署将引入复杂的基站(BS)-RIS-用户关联问题。在本文中,考虑到RI的频率选择性特征,我们旨在共同优化BS-RIS-用户关联,在BSS处进行主动波束以及RIS的无源光束,以最大程度地提高RIS辅助细胞网络的总和。我们首先利用$ l_0 $ norm来有效地将BS-Ris-uSER关联与主动和被动的光束形成。然后,我们采用分数编程(FP)和块坐标下降(BCD)方法来处理对数和分数零件,并将关节关联和波束形成设计问题解散为几个子问题。结合$ l_0 $ norm近似,大型化最小化(MM)和交替的乘数(ADMM)方向方法的有效算法是为了交替解决子问题。广泛的仿真结果说明了BS-RIS-用户关联优化在RIS辅助细胞网络中的重要性,并验证了拟议的联合关联和横向成形设计算法的有效性。
Reconfigurable intelligent surface (RIS) is a revolutionary technology for sixth-generation (6G) networks owing to its ability to manipulate wireless environments. As a frequency-selective device, RIS can only effectively shape the propagation of signals within a certain frequency band. Due to this frequency-selective property, the deployment of RIS in cellular networks will introduce a complicated base station (BS)-RIS-user association issue since adjacent BSs operate at different frequency bands. In this paper, with the consideration of the frequency-selective characteristics of RIS, we aim to jointly optimize BS-RIS-user association, active beamforming at BSs, and passive beamforming of RIS to maximize the sum-rate of a RIS-assisted cellular network. We first leverage $l_0$-norm to efficiently integrate BS-RIS-user association with active and passive beamforming. Then, we adopt fractional programming (FP) and block coordinate descent (BCD) methods to deal with logarithmic and fractional parts and decouple the joint association and beamforming design problem into several sub-problems. Efficient algorithms which combine $l_0$-norm approximation, majorization-minimization (MM), and alternating direction method of multipliers (ADMM) are developed to alternately solve the sub-problems. Extensive simulation results illustrate the importance of BS-RIS-user association optimization in RIS-assisted cellular networks and verify the effectiveness of the proposed joint association and beamforming design algorithm.