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Hysteretic Base Station Sleeping Control for Energy Saving in 5G Cellular Network

机译:用于5G蜂窝网络节能的磁滞基站休眠控制

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Base station (BS) sleeping operation in transient process has been widely analyzed in current studies to save cellular network energy consumption. In this paper, we propose a hysteretic BS sleeping strategy in 5G cellular network. The BS adjusts its transmitting power to adapt to the traffic load in active state, and frequently goes to sleep state and keeps sleeping until N requests assembled. When the BS wakes up or shuts off, it will experience a state transition delay, which means the BS actions somehow lag behind the BS decisions. This paper explored the impact of state transition delay on the power consumption and traffic delay performance, and discussed the tradeoff between power-saving and traffic delay requirements. Numerical results show that the longer transition delay is, the worse system performance the BS is suffered. And the BS sleeping operation is energy-efficient only under a short transition delay.
机译:在当前研究中,已经广泛分析了瞬态过程中的基站(BS)休眠操作,以节省蜂窝网络的能耗。在本文中,我们提出了5G蜂窝网络中的迟滞BS睡眠策略。 BS调整其发射功率以适应处于活动状态的业务负载,并经常进入睡眠状态并保持睡眠,直到N个请求被组合为止。当BS唤醒或关闭时,它将经历状态转换延迟,这意味着BS动作在某种程度上滞后于BS决策。本文探讨了状态转换延迟对功耗和流量延迟性能的影响,并讨论了节电与流量延迟需求之间的权衡。数值结果表明,过渡延时越长,基站的系统性能越差。并且,BS休眠操作仅在短的过渡延迟下才是节能的。

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