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Minimizing Energy Cost by Dynamic Switching ON/OFF Base Stations in Cellular Networks

机译:通过动态切换蜂窝网络中的基站来最大程度地降低能源成本

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The most efficient way to save energy in cellular networks is to switch ON/OFF base stations (BSs) dynamically according to the distribution of user equipment (UE) at real time. When a BS is switched ON/OFF, there is a switching energy cost incurred, which is a significant amount and cannot be ignored. By considering this switching cost, we formulate the energy saving problem of BSs in cellular networks as the minimum energy cost problem (MECP). The objective of MECP is to choose the BSs to be active during a period of time and determine the levels of transmission power of the active BSs according to the UEs that are served by the BSs, such that the total energy cost of the BSs is minimized. We propose a scheme to solve the MECP in two steps. In the first step, we aim to minimize the energy cost of all BSs in a time unit independently, without considering the switching ON/OFF BSs across adjacent time units. In the second step, we consider the switching cost of state transitions of BSs by introducing a state transition graph a BS over an entire time period, and transform the MECP into a minimum energy cost flow problem. A minimum cost flow algorithm is developed to solve this problem. Simulation results show that our proposed scheme can achieve significant energy cost reduction of the cellular network, compared with the existing methods.
机译:蜂窝网络中最有效的节能方式是根据用户设备(UE)的实时分布动态地开/关基站(BS)。当BS被接通/断开时,产生了开关能量成本,这是相当大的数量并且不能忽略。通过考虑此转换成本,我们将蜂窝网络中BS的节能问题公式化为最小能源成本问题(MECP)。 MECP的目的是选择一段时间内处于活动状态的BS,并根据BS服务的UE确定活动BS的发射功率水平,从而使BS的总能量成本最小化。我们提出了一个解决MECP的方案,分两步进行。第一步,我们的目标是在不考虑跨相邻时间单位切换ON / OFF BS的情况下,将一个时间单位中所有BS的能源成本最小化。在第二步中,我们通过在整个时间段内引入BS的状态转换图来考虑BS的状态转换的切换成本,并将MECP转换为最小的能量成本流问题。开发了最小成本流算法来解决该问题。仿真结果表明,与现有方法相比,该方案可以显着降低蜂窝网络的能耗。

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