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基于光伏储能一体化的微小型通信机站协同控制方法

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常规的光伏储能一体化协同控制下垂处理通常采用一阶一致方式,存在协同控制效率低、电压偏差大的问题,为此提出基于光伏储能一体化的微小型通信机站协同控制方法.结合实际的测定需求,进行光储平均功率计算,实现二阶一致性下垂控制处理.构建一体化微型通信机站光伏储能协同控制模型,采用自适应修正处理的方式进行协同控制.实验结果表明,本次设计的一体化微型通信机站光伏储能协同控制方法最终得出的电压偏差相对更小,适应度更强,针对性更高,实际应用效果显著.
Collaborative Control Method for Micro Communication Stations Based on Integrated Photovoltaic Energy Storage
The conventional photovoltaic energy storage integrated collaborative control droop treatment usually adopts a first-order consensus method,which has the problems of low collaborative control efficiency and large voltage deviation.A collaborative control method for small-scale communication stations based on photovoltaic energy storage integration is proposed for this purpose.Based on actual measurement requirements,calculate the average power of optical storage and achieve second-order consistency droop control processing.Build an integrated micro communication station photovoltaic energy storage collaborative control model,and use adaptive correction processing for collaborative control.The experimental results show that the integrated micro communication station photovoltaic energy storage collaborative control method designed in this study has a relatively smaller voltage deviation,stronger adaptability,higher targeting,and significant practical application effects.

small communication stationcommunication controlphotovoltaic energy storage

李滨辰

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国网四川省电力公司眉山供电公司,四川眉山 620010

小型通信机站 通信管控 光伏储能

2024

通信电源技术
武汉普天通信设备集团有限公司

通信电源技术

影响因子:0.389
ISSN:1009-3664
年,卷(期):2024.41(17)