论文标题

关于IRS辅助云无线电访问网络中率分裂的协同益处

On Synergistic Benefits of Rate Splitting in IRS-assisted Cloud Radio Access Networks

论文作者

Weinberger, Kevin, Ahmad, Alaa Alameer, Sezgin, Aydin

论文摘要

智能反射表面(IRS)的概念被认为是提高移动无线网络效率的有前途的技术。这是通过采用大量低成本单独调节的被动反射元素来实现的,这些元素能够将更改应用于反射信号。为此,美国国税局使环境实时可控,并且可以通过被动横梁的速度大大提高用户接收到的信号质量。但是,反射信号的更改对IRS附近的所有用户都有影响,这使得不可能优化更改以积极影响受反射影响的每个传输。这导致某些用户不仅具有更好的信号质量,而且还会增加接收干扰。为了减轻IRS的这种负面影响,本文利用了速率分裂(RS)技术,从而可以减轻网络内部的干扰,从而减轻了IRS引起的干扰。为了调查可以通过结合两种技术来实现总体功率节省的影响,我们最大程度地减少了满足每用户服务质量(QOS)约束所需的所需的传输功率。数值结果表明,可以通过同时利用IRS和RS技术获得的提高功率节省。实际上,两种技术的并发使用都可以节省功率,这超出了分别使用每种技术的累积功率节省。

The concept of intelligent reflecting surfaces (IRSs) is considered as a promising technology for increasing the efficiency of mobile wireless networks. This is achieved by employing a vast amount of low-cost individually adjustable passive reflect elements, that are able to apply changes to the reflected signal. To this end, the IRS makes the environment realtime controllable and can be adjusted to significantly increase the received signal quality at the users by passive beamsteering. However, the changes to the reflected signals have an effect on all users near the IRS, which makes it impossible to optimize the changes to positively influence every transmission, affected by the reflections. This results in some users not only experiencing better signal quality, but also an increase in received interference. To mitigate this negative side effect of the IRS, this paper utilizes the rate splitting (RS) technique, which enables the mitigation of interference within the network in such a way that it also mitigates the increased interference caused by the IRS. To investigate the effects on the overall power savings, that can be achieved by combining both techniques, we minimize the required transmit power, needed to satisfy per-user quality-of-service (QoS) constraints. Numerical results show the improved power savings, that can be gained by utilizing the IRS and the RS technique simultaneously. In fact, the concurrent use of both techniques yields power savings, which are beyond the cumulative power savings of using each technique separately.

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