Base Station Deployment Optimization in Federated Networks with Multi-Hop Communication

Yudong Fang, David Brown
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Abstract

This paper explores a wireless base station location optimization problem and introduces a set of new constraints of interest for next-generation networks; the general strategy is similar to facility location optimization, which can be solved by linear programming. We propose solutions that relax coverage requirements and use trusted multiple hops (or relays) to reach distant devices; we give the mathematical derivation and algorithms based on the standard linear optimization formulation. We develop an optimization application and use it to conduct simulations that determine optimal base station requirements under simple full coverage scenarios, partial coverage scenarios, multi-hop scenarios, and location-constrained scenarios, which are of interest in federated networks with geographical deployment limitations. The proposed solutions are also a good option for the new 5G base station coverage optimization by using the Integrated Access and Backhaul (IAB) feature from 3GPP Release 16 (R16).
多跳通信联邦网络中基站部署优化
本文探讨了无线基站位置优化问题,并引入了下一代网络的一组新的约束条件;一般策略类似于设施选址优化,可通过线性规划求解。我们提出的解决方案可以放松覆盖要求,并使用可信的多跳(或中继)来到达远程设备;给出了基于标准线性优化公式的数学推导和算法。我们开发了一个优化应用程序,并使用它来进行模拟,以确定在简单的全覆盖场景、部分覆盖场景、多跳场景和位置约束场景下的最佳基站需求,这些场景对具有地理部署限制的联邦网络很感兴趣。通过使用3GPP Release 16 (R16)的综合接入和回程(IAB)功能,提出的解决方案也是优化新5G基站覆盖的一个很好的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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