RadioWeaves network operates a large number of distributed antennas using cell-free architecture to provide high data rates and support a large number of users. Operating this network in an energy-efficient manner in the limited available spectrum is crucial. Therefore, we consider energy efficiency (EE) maximization of a RadioWeaves network that shares spectrum with a collocated primary network in underlay mode. To simplify the problem, we lower bound the non-convex EE objective function to form a convex problem. We then propose a downlink power allocation policy that maximizes the EE of the secondary RadioWeaves network subject to power constraint at each access point and interference constraint at each primary user. Our numerical results investigate the secondary system's performance in interference, power, and EE constrained regimes with correlated fading channels. Furthermore, they show that the proposed power allocation scheme performs significantly better than the simpler equal power allocation scheme.
翻译:光电网网络使用无细胞结构运行大量分布式天线,以提供高数据率和支持大量用户。 在有限的可用频谱中以节能方式运行这个网络至关重要。 因此,我们认为,将光电网网络最大化,以底线模式与合用主网络共享频谱。 为简化问题,我们将非电流 EE 目标功能约束为形成一个螺旋问题。 然后我们提出下链分配电力政策,使二级无线电网的电源在每一个接入点都受到电力限制,干扰限制每个主要用户。我们的数字结果调查了二级系统在干扰、电力和电源方面的绩效,并调查了相关电流的受限制度。 此外,它们表明,拟议的电源分配计划比简单的平等电力分配计划要好得多。