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风光储联合制氢协调控制系统设计

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氢能是一种来源丰富、绿色低碳、应用广泛的二次能源,是未来全球能源转型发展的一种重要载体.针对与规模化风电和光伏等新能源发电一起开发建设的电解水制氢站的监控运行与能量管理需求,提出一种风光储联合制氢协调控制系统软硬件设计方法.协调控制系统采集风电、光伏、储能等新能源发电设备以及电解水制氢设备的实时运行数据,全景展示相关运行信息,预测风光新能源发电功率,控制电站并网点的有功和无功功率.所提系统结合功率预测信息、电网调控指令、上网电价和生产成本等多种影响因素,对电站进行优化控制,提升全产业链的综合效益.
Design of Coordinated Control System for Hydrogen Production by Wind Photovoltaic and Energy Storage
Hydrogen energy is a kind of rich,green,low-carbon,and widely used as secondary energy source,and is an important carrier for the future global energy transformation and development.A software and hardware design method for the coordinated control system was proposed for the monitoring,operation,and energy management needs of electrolytic water hydrogen production stations developed and constructed together with large-scale wind power and photovoltaic new energy generation.The coordinated control system can collect real-time operational data of new energy generation equipment relating to wind power,photovoltaic,energy storage,and electrolytic water hydrogen production equipment,display the relevant operational information in a panoramic view,predict the power of wind and solar new energy generation,control the active and reactive power of the grid connection point,optimize the control of the stations based on various influencing factors about power prediction information,grid regulation instructions,grid electricity prices,and production costs,and ultimately enhance the comprehensive benefits of the entire industrial chain.

new energy power generationhydrogen production by water electrolysisgreen hydrogencoordinated controlsystem design

华光辉、吴福保、祝建军、黄谋、许晓慧

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可再生能源并网全国重点实验室(中国电力科学研究院有限公司),江苏南京 210003

新能源发电 电解水制氢 绿氢 协调控制 系统设计

2024

电气自动化
上海电气自动化设计研究所有限公司 上海市自动化学会

电气自动化

CSTPCD
影响因子:0.377
ISSN:1000-3886
年,卷(期):2024.46(6)
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