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Wireless Backhauling for Energy Harvesting Ultra-Dense Networks

机译:无线回程能源收获超密长网络

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Due to non-negligible amount of energy consumption of state-of-the-art small cells at idle mode, energy efficiency of the overall network may decrease with densification. Therefore, energy efficiency in ultra-dense networks (UDNs) is one of the key challenges for mobile network operators (MNOs) to reduce their operative expenditure (OPEX), and to mitigate the carbon footprint. Low-power and low-cost dense networks are vital to extend next generation cellular network functionalities by improving network capacity in hot-spot areas, and to deploy networks in short time periods. In energy harvesting networks, access points (APs) may perform both backhaul and access link data communication, simultaneously, removing UDN dependency on optical distribution network and electrical grid. In this paper, different power modes and essential signaling for operation of such APs are introduced, aiming to reduce energy consumption of UDNs by integrating energy harvesters into APs, equipped with wireless backhaul.
机译:由于空闲模式的最先进的小电池的能量消耗不可忽略的量,整体网络的能量效率可能随着致密化而降低。因此,超密度网络(UDNS)中的能量效率是移动网络运营商(MNO)的关键挑战之一,以减少其操作支出(OPEX),并减轻碳足迹。低功耗和低成本密度的网络是通过提高热点区域的网络容量来扩展下一代蜂窝网络功能的至关重要,并在短时间内部署网络。在能量收集网络中,接入点(AP)可以同时执行回程和访问链路数据通信,从而消除光学分配网络和电网的UDN依赖性。在本文中,引入了不同的电源模式和用于操作此类AP的必要信令,旨在通过将能量收割机集成到配备无线回程的APS中来降低UDN的能量消耗。

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