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[ "马大燕(1984- ),女,博士,国网电子商务有限公司研究员,主要研究方向为智能电网、能源互联网技术" ]
[ "谢祥颖(1979- ),男,国网电子商务有限公司光伏云(电商扶贫)事业部副总经理,主要研究方向为工业互联网、智能电网技术" ]
[ "那峙雄(1974- ),男,国网电子商务有限公司创新研究员,主要研究方向为分布式电力市场以及工业互联网技术在可再生能源领域的应用" ]
[ "沈文涛(1986- ),男,国网电子商务有限公司创新研究员,主要研究方向为新能源发电技术" ]
[ "孟凡腾(1988- ),男,国网电子商务有限公司创新研究员,主要研究方向为光伏及其他新能源发电行业发展及政策、电力市场" ]
网络出版日期:2020-02,
纸质出版日期:2020-02-20
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马大燕, 谢祥颖, 那峙雄, 等. 基于调度自动化系统的低压分布式光伏电站接入估算模型[J]. 电信科学, 2020,36(2):90-94.
Dayan MA, Xiangying XIE, Zhixiong NA, et al. Dispatch automation system based low voltage distributed photovoltaic power station connected estimation model[J]. Telecommunications science, 2020, 36(2): 90-94.
马大燕, 谢祥颖, 那峙雄, 等. 基于调度自动化系统的低压分布式光伏电站接入估算模型[J]. 电信科学, 2020,36(2):90-94. DOI: 10.11959/j.issn.1000-0801.2020046.
Dayan MA, Xiangying XIE, Zhixiong NA, et al. Dispatch automation system based low voltage distributed photovoltaic power station connected estimation model[J]. Telecommunications science, 2020, 36(2): 90-94. DOI: 10.11959/j.issn.1000-0801.2020046.
大量分布式光伏接入电网对电网的安全稳定运行带来了极大的挑战。针对调度自动化系统未实现低压分布式光伏数据的实时采集、监测,提出了台区估算法作为一种低压分布式光伏电站实时采集的辅助手段,通过适当算法估算可实现低压分布式光伏电站的全面接入。通过案例分析,证明估算值与实测值偏差基本控制在8%以内,从而证明估算模型的准确性。此方法对电力调度部门加强分布式光伏的运行监测、统计管理、合理安排调度计划与进行电源协调控制意义重大。
A large number of distributed photovoltaic access grids pose great challenges to the safe and stable operation of the grid.In view of the fact that the dispatching automation system did not realize the real-time acquisition and monitoring of low-voltage distributed photovoltaic data
the station estimation method was proposed as an auxiliary means for real-time acquisition of low-voltage distributed photovoltaic power plants
and the comprehensive low-voltage distributed photovoltaic power plants were estimateed through appropriate algorithms.Through case analysis
the deviation between the estimated value and the measured value was basically controlled within 8%
which proved the accuracy of the estimated model.This method is of great significance for the power dispatching department to strengthen the operation monitoring and statistical management of distributed photovoltaics
and to reasonably arrange the dispatching plan and coordinate the power supply.
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