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Toward Net-Zero Base Stations with Integrated and Flexible Power Supply in Future Networks

机译:迈向未来网络中具有集成和灵活电源的净零基站

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The energy consumption and carbon emissions of base stations (BSs) raise significant concerns about future network deployment. Renewable energy is thus adopted and supplied to enable the net-zero (or zero-carbon) BS. However, due to severe inconsistency between renewable energy generation and power demand, the conventional one-to-one power supply architecture could cause large waste and low utilization of renewable energy. In this article, we design a many-to-many power supply architecture for BSs to maximize the utilization of renewable energy. More specifically, we strategically group multiple renewable energy generators into virtual cells to serve multiple BSs in an integrated way, thus minimizing the inconsistency between the renewable energy generation and power demand. To finetune the power mismatch between power supply and demand in each virtual cell, we propose software-defined techniques to flexibly control the discharging/charging of a battery energy storage system. Illustrative results from a case study demonstrate that high renewable energy utilization can be achieved with the proposed architecture and mechanisms.
机译:基站(BS)的能耗和碳排放引发了对未来网络部署的重大担忧。因此,采用和供应可再生能源以实现净零(或零碳)BS。然而,由于可再生能源发电与电力需求严重不一致,传统的一对一供电架构可能会造成大量浪费和可再生能源利用率低。在本文中,我们为基站设计了一种多对多的电源架构,以最大限度地利用可再生能源。更具体地说,我们战略性地将多个可再生能源发电机分组到虚拟单元中,以集成方式为多个基站提供服务,从而最大限度地减少可再生能源发电和电力需求之间的不一致。为了微调每个虚拟电池中电源供需之间的功率不匹配,我们提出了软件定义的技术来灵活控制电池储能系统的放电/充电。案例研究的说明性结果表明,通过所提出的架构和机制可以实现高可再生能源利用率。

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