宽带可重构智能表面辅助无蜂窝网络的容量改进

Zijian Zhang, L. Dai
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引用次数: 34

摘要

无小区网络由于具有较强的抗小区间干扰能力,被认为是提高未来无线系统网络容量的一种很有前途的技术。但若要进一步提升容量,则需要部署更多的基站,成本和功耗都很高。为了解决这一问题,受最近提出的可重构智能表面(RIS)技术的启发,我们提出了RIS辅助无蜂窝网络的概念,以低成本和低功耗提高网络容量。然后,针对所提出的典型宽带场景下ris辅助无蜂窝网络,提出了在基站和RISs处的联合预编码设计问题,以最大化网络容量。由于公式问题的非凸性和高复杂性,我们开发了一种交替优化算法来解决这一具有挑战性的问题。需要注意的是,现有作品中考虑的场景大多是本文一般场景的特殊情况,所提出的联合预编码框架也可以作为现有大多数ris辅助场景中容量最大化的通用解决方案。仿真结果表明,与传统的无蜂窝网络相比,该方案的网络容量有明显提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacity Improvement in Wideband Reconfigurable Intelligent Surface-Aided Cell-Free Network
Thanks to the strong ability against the inter-cell interference, cell-free network has been considered as a promising technique to improve the network capacity of future wireless systems. However, for further capacity enhancement, it requires to deploy more base stations (BSs) with high cost and power consumption. To address the issue, inspired by the recently proposed technique called reconfigurable intelligent surface (RIS), we propose the concept of RIS-aided cell-free network to improve the network capacity with low cost and power consumption. Then, for the proposed RIS-aided cell-free network in the typical wideband scenario, we formulate the joint precoding design problem at the BSs and RISs to maximize the network capacity. Due to the non-convexity and high complexity of the formulated problem, we develop an alternating optimization algorithm to solve this challenging problem. Note that most of the considered scenarios in existing works are special cases of the general scenario in this paper, and the proposed joint precoding framework can also serve as a general solution to maximize the capacity in most of existing RIS-aided scenarios. Finally, simulation results verify that, compared with the conventional cell-free network, the network capacity of the proposed scheme can be improved significantly.
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