摘要
利用虚拟阻抗技术对双闭环控制结构进行优化,可将逆变器的等效输出阻抗改善为强感性,提高传统感性下垂控制策略在低压微电网中的功率分配精度,有效抑制环流,但往往忽略了虚拟阻抗对系统稳定性的影响。鉴于此,推导包含虚拟阻抗、线路阻抗及公共点电压的三环控制传递函数,建立考虑虚拟复阻抗的不同电压等级逆变器并联模型,并利用戴维宁等效原理对模型进行简化,在多种工况下根据Nyquist稳定判据分析虚拟阻抗对系统稳定性的影响。结果表明:不同电压等级的逆变器并联系统在添加虚拟阻抗后仍可保持稳定运行。
Using virtual impedance technology to optimize the double closed-loop control structure can improve the equivalent output impedance of the inverter to be inductive and enhance the accuracy of power distribution by traditional inductive droop control strategies in low-voltage micro-grids,thus inhibiting circulating current.This approach,however,tends to overlook the impact of virtual impedance on system stability.In this regard,the transfer function of a three-loop control structure is derived,which includes virtual impedance,line impedance and common point voltage.A parallel model of inverters with different voltage levels is built,considering virtual complex impedance,and the model is simplified with the Thevenin’s equivalent.According to the Nyquist stability criterion,the effect of virtual impedance on system stability is analyzed under various operating conditions.The results show that the multi-inverter parallel system can maintain stable operation after the virtual impedance is added.
作者
马文涛
王金梅
王永奇
MA Wentao;WANG Jinmei;WANG Yongqi(School of Physics and Electronic-Electrical Engineering,Ningxia University,Yinchuan 750021,China)
出处
《中国电力》
CSCD
北大核心
2021年第9期135-142,175,共9页
Electric Power
基金
宁夏自然科学基金资助项目(基于VSG的混合微网协同控制系统研究,2019AAC03027)。