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文章摘要
基于戴维宁等值的电压暂降模拟方法
Voltage sag simulation method based on Thevenin equivalent model
Received:September 10, 2018  Revised:September 13, 2018
DOI:10.19753/j.issn1001-1390.2019.024.013
中文关键词: 电压暂降  戴维宁等值  虚拟阻抗  阻抗切换  H桥级联型逆变器
英文关键词: voltage sag  Thevenin equivalent  virtual impedance  impedance switching  H-bridge cascaded inverter
基金项目:
Author NameAffiliationE-mail
WU Nan* State Grid Jiangsu Electric Power Co,Ltd Research Institute,Jiangsu nanjing 949293801@qq.com 
SHI Ming-ming State Grid Jiangsu Electric Power Co,Ltd Research Institute,Jiangsu nanjing 949293801@qq.com 
SUN Jian State Grid Jiangsu Electric Power Co,Ltd Research Institute,Jiangsu nanjing 949293801@qq.com 
Zha Xiaoming Wuhan University 949293801@qq.com 
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中文摘要:
      鉴于传统的电压暂降模拟方法,只考虑在正常和各种故障情况下模拟无穷大电网的电源特性,未考虑电网的阻抗特性,使得借助于传统电压暂降模拟方法作用于负载上的电压响应与实际电网不相同。因此,本文提出了一种基于戴维宁等值的电压暂降模拟方法。本文提出采用基于阻抗切换方式辨识电网电压暂降时的戴维宁等值参数,该方法可对暂降前后的电压进行精确辨识。本文亦提出采用H桥级联型-逆变器作为电压暂降模拟装置,为使其能灵活可靠模拟实际电网电压暂降外特性,本文提出适用于H桥级联型逆变器的虚拟阻抗控制策略,其能通过参考电压、虚拟阻抗的设置实现所需的电压暂降戴维宁等值外特性的模拟。最后,通过仿真验证了所提电压暂降戴维宁等值参数辨识方法、电压暂降模拟装置控制策略的有效性及可行性。
英文摘要:
      Now existing voltage sag simulation method only considers normal and various fault situations of the infinite power grid so that the voltage drop on the load does not match the actual power grid. In this paper, voltage sag simulation method based on Thevenin equivalent model is proposed. Thevenin equivalent parameters on voltage sag based on impedance switching method is proposed in this paper to identify voltage value before and after sag. H-bridge cascaded inverter is chosen as voltage sag simulation device in this paper. To simulate external characteristics of actual grid voltage sag, virtual impedance control strategy which is feasible to H-bridge cascaded inverter is proposed. Setting of voltage reference and virtual impedance can realize simulation of voltage sag Thevenin equivalent external characteristics. Finally, effectiveness and feasibility of proposed voltage sag Thevenin equivalent parameters identification method and voltage sag simulation device control strategy are testified.
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