基于5G基站储能–换电柜联合调度的配电网电压优化控制方法

A Voltage Optimization Control Method for Distribution Networks Based on Joint Dispatch of 5G Base Station Energy Storages and Battery Swap Cabinets

  • 摘要: 微型电动车换电柜与5G基站联合部署模式的出现,不但解决了电动车的安全充电问题,也增加了5G基站的备电储能容量,二者联合参与配电网调度可获得更大的边际收益。由此,提出一种联合5G基站与换电柜闲置储能资源改善配电网电压的方法,可在保障用户通信质量与换电需求的前提下,消除节点电压越限风险并平抑电压波动。首先,在考虑基站和换电柜储能配置、运行方式和服务质量约束的基础上,对其分立和联合可调度能力进行建模,进而提出基于5G基站–换电柜联合调度的配电网电压优化控制模型。其次,针对该模型具有大量异质决策变量与约束和具有时间耦合性的特点,提出分层分区优化搜索方法,以对5G基站、换电柜和二者联合的可调度能力充分利用,在提升求解速度与精度的同时,实现运行效益最大化。最后,仿真验证了所提出的联合调度方案的优越性、所建立的优化控制模型在改善配电网电压方面的有效性,以及分层分区优化搜索方法求解的高效性。

     

    Abstract: The emergence of the joint deployment of electric bike battery swapping cabinets (BSCs) and 5G base stations (5G BSs) not only addresses the safety concerns associated with electric bike charging but also increases the backup power storage capacity of 5G BSs. The joint participation of both parties in the distribution network dispatch can yield greater marginal benefits. Therefore, this paper proposes a method to improve distribution network voltages by utilizing the idle energy storage resources of jointly deployed 5G BSs and BSCs. This method aims to eliminatenode voltage violation risks and mitigate voltage fluctuations, under the premise of ensuring the quality of communication services and battery swapping needs. By considering the differences in energy storage configuration and operation between BSs and BSCs, their joint dispatchable capability is analyzed, and a joint dispatching framework is proposed. Based on the joint system, a voltage optimization control method is proposed. In light of the model's characteristics—including numerous heterogeneous decision variables and constraints, as well as temporal coupling—a Hierarchical Partitioning Optimal Search Method (HP-OSM) is proposed. This method aims to fully leverage the dispatchable capabilities of 5G BSs, BSCs, and their joint operations. By enhancing both speed and accuracy of the solution, the method ultimately maximizes operational efficiency. Finally, simulation results validate the superiority of the proposed joint dispatch scheme, the effectiveness of the established optimal control model in improving distribution network voltages, and the efficiency of HP-OSM.

     

/

返回文章
返回