In this paper, we study the energy-efficient user access control (UAC) based on resource allocation (RA) in heterogeneous cellular networks (HCNs) with the required downlink data rate under non-ideal power amplifiers (PAs) and circuit power. It is proved that the energy consumption minimization is achieved when the typical user accesses only one base station (BS), while the other BSs remain in idle mode on the transmission resource allocated to this user. For this purpose, we reformulate the original non-convex optimization problem into a series of convex optimization problems where, in each case, the transmit power and duration of the accessed BS are determined. Then, the BS with the minimal energy consumption is selected for transmission. Considering the approximate situation, it is showed that the optimal transmit duration of the accessed BS can be estimated in closed form. The benefits of our proposed UAC and RA schemes are validated using numerical simulations, which also characterize the effect that non-ideal PAs have on the total energy consumption of different transmission schemes.
翻译:在本文中,我们根据不同蜂窝网络(HCNs)的资源分配(RA)研究节能用户访问控制(UAC),并研究非理想电放大器和电路电力下流数据率,证明当典型用户只进入一个基站(BS)时,能源消耗最小化,而其他BS在分配给该用户的传输资源上仍然处于闲置状态。为此,我们将原非碳化优化问题重新分为一系列convex优化问题,在每种情况下,确定获得的BS的传输功率和持续时间。然后,选择能耗最低的BS进行传输。考虑到大致情况,可以以封闭的形式估计获得的BS的最佳传输时间。我们拟议的UAC和RA计划的好处通过数字模拟得到验证,这些模拟还说明了非理想的PA对不同传输计划的总能源消耗的影响。