Recently, Optical wireless communication (OWC) have been considered as a key element in the next generation of wireless communications due to its potential in supporting unprecedented communication speeds. In this paper, infrared lasers referred to as vertical-cavity surface-emitting lasers (VCSELs) are used as transmitters sending information to multiple users. In OWC, rate-maximization optimization problems are usually complex due to the high number of optical access points (APs) needed to ensure coverage. Therefore, practical solutions with low computational time are essential to cope with frequent updates in user-requirements that might occur. In this context, we formulate an optimization problem to determine the optimal user association and resource allocation in the network, while the serving time is partitioned into a series of time periods. Therefore, cooperative ANN models are designed to estimate and predict the association and resource allocation variables for each user such that sub-optimal solutions can be obtained within a certain period of time prior to its actual starting, which makes the solutions valid and in accordance with the demands of the users at a given time. The results show the effectiveness of the proposed model in maximizing the sum rate of the network compared with counterpart models. Moreover, ANN-based solutions are close to the optimal ones with low computational time.
翻译:最近,光学无线通信(OWC)被认为是下一代无线通信的一个关键要素,因为它有可能支持前所未有的通信速度,因此被认为是下一代无线通信的一个关键要素。在本文中,红外激光(称为垂直孔径发射表面激光(VCSELs))被用作向多个用户发送信息的发报机;在OWC中,由于确保覆盖面所需的光学接入点数量之多,最大比例优化优化问题通常十分复杂。因此,低计算时间的实际解决方案对于应对用户需要的频繁更新至关重要。在这方面,我们提出了一个优化问题,以确定网络中的最佳用户关联和资源分配,同时将服务时间分成一系列时间。因此,ANNN模型旨在估计和预测每个用户的关联和资源分配变量,例如,在实际启动之前的某一时期内可以取得亚最佳的解决方案,从而使解决方案有效,并符合用户在特定时间内的需求。结果显示,在确定网络的最佳用户关联和资源分配方面,拟议的模型在与最接近的计算率方面的有效性。