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基于多储能动态调控的光储黑启动控制策略

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首先,建立多储能光伏联合系统,根据储能实时状态将储能系统进行分级,设计3种不同优先等级的储能分别承担不同任务;然后,将不同优先等级的储能设定相应的控制方案,提出基于多储能动态调控的光储黑启动控制策略,实时监控储能的运行状态,以防止多储能系统因越限等原因造成黑启动任务失败;最后,通过Matlab对3种不同工况进行仿真模拟,验证多储能动态调控的黑启动控制策略的有效性.
SOLAR STORAGE BLACK START CONTROL STRATEGY BASED ON MULTI-STORGE DYNAMIC REGULATION
Black start of power system means that after the whole system is shut down due to fault,without relying on the help of other networks,the whole power system is finally restored through the starting of the units with self-starting capability in the system.With the rapid development of new energy sources,it also brings challenges to the stable operation of the power system,and it is more important to develop a black start plan in advance.With the continuous development of photovoltaic and energy storage systems,and the fact that energy storage systems can compensate for the randomness and volatility of photovoltaic power output,the combined optical storage system has become a new choice to undertake the task of black start.This paper firstly establishes a multi-storage PV joint system,classifies the energy storage system according to the real-time state of energy storage,designs three different priority levels of energy storage to undertake different tasks;sets the corresponding control scheme for different priority levels of energy storage,proposes a light storage black start control strategy based on multi-storage dynamic regulation,monitors the operation state of energy storage in real time,prevents the multi-storage system from black start caused by overrunning limits and other reasons Finally,the effectiveness of the multi-storage dynamic regulation black-start control strategy is verified by simulating three different working conditions through Matlab simulation software.

energy storageenergy managementreliabilitysolar storage black startdynamic regulation

李翠萍、王艺茗、李军徽、朱星旭、张哲深、黄建文

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现代电力系统仿真控制与绿色电能新技术教育部重点实验室(东北电力大学),吉林 132012

国网山东省电力有限公司日照供电公司,日照 276800

国网浙江省电力有限公司苍南县供电公司,苍南 325800

储能系统 能量管理 可靠性 光储黑启动 动态调控

2024

太阳能学报
中国可再生能源学会

太阳能学报

CSTPCD北大核心
影响因子:0.392
ISSN:0254-0096
年,卷(期):2024.45(9)