An Islanding Microgrid Power Sharing Approach Using Enhanced Virtual Impedance Control Scheme

被引:389
作者
He, Jinwei [1 ]
Li, Yun Wei [1 ]
Guerrero, Josep M. [2 ]
Blaabjerg, Frede [2 ]
Vasquez, Juan C. [2 ]
机构
[1] Univ Alberta, Dept Elect & Comp Engn, Edmonton, AB T6G 2R3, Canada
[2] Aalborg Univ, Inst Energy Technol, DK-9220 Aalborg O, Denmark
关键词
Distributed generation (DG); droop control; microgrid; point of common coupling (PCC) harmonic voltage compensation; power sharing; resonant controller; virtual impedance; VOLTAGE UNBALANCE COMPENSATION; PARALLEL INVERTERS; REAL-TIME; DESIGN; PERFORMANCE; ELECTRONICS; INTERFACE; STRATEGY; SYSTEMS;
D O I
10.1109/TPEL.2013.2243757
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In order to address the load sharing problem in islanding microgrids, this paper proposes an enhanced distributed generation (DG) unit virtual impedance control approach. The proposed method can realize accurate regulation of DG unit equivalent impedance at both fundamental and selected harmonic frequencies. In contrast to conventional virtual impedance control methods, where only a line current feed-forward term is added to the DG voltage reference, the proposed virtual impedance at fundamental and harmonic frequencies is regulated using DG line current and point of common coupling (PCC) voltage feed-forward terms, respectively. With this modification, the impacts of mismatched physical feeder impedances are compensated. Thus, better reactive and harmonic power sharing can be realized. Additionally, this paper also demonstrates that PCC harmonic voltages can be mitigated by reducing the magnitude of DG unit equivalent harmonic impedance. Finally, in order to alleviate the computing load at DG unit local controller, this paper further exploits the band-pass capability of conventionally resonant controllers. With the implementation of proposed resonant controller, accurate power sharing and PCC harmonic voltage compensation are achieved without using any fundamental and harmonic components extractions. Experimental results from a scaled single-phase microgrid prototype are provided to validate the feasibility of the proposed virtual impedance control approach.
引用
收藏
页码:5272 / 5282
页数:11
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