A Current Limiting Strategy to Improve Fault Ride-Through of Inverter Interfaced Autonomous Microgrids

With high penetration of distributed energy resources, fault management strategy is of great importance for the distribution network operation. The objective of this paper is to propose a current and voltage limiting strategy to enhance fault ride-through (FRT) capability of inverter-based islanded...

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Vydané v:IEEE transactions on smart grid Ročník 8; číslo 5; s. 2138 - 2148
Hlavní autori: Sadeghkhani, Iman, Hamedani Golshan, Mohamad Esmail, Guerrero, Josep M., Mehrizi-Sani, Ali
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Piscataway IEEE 01.09.2017
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN:1949-3053, 1949-3061
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Abstract With high penetration of distributed energy resources, fault management strategy is of great importance for the distribution network operation. The objective of this paper is to propose a current and voltage limiting strategy to enhance fault ride-through (FRT) capability of inverter-based islanded microgrids (MGs) in which the effects of inverter control system and inverter topology (four/three-wire) are considered. A three-phase voltage-sourced inverter with multi-loop control system implemented in synchronous, stationary, and natural reference frames is employed in this paper for both four- and three-wire configurations. The proposed strategy provides high voltage and current quality during overcurrent conditions, which is necessary for sensitive loads. Several time-domain simulation studies are conducted to investigate the FRT capability of the proposed strategy against both asymmetrical and symmetrical faults. Moreover, the proposed method is tested on the CIGRE benchmark MG to demonstrate the effectiveness of the proposed limiting strategy.
AbstractList With high penetration of distributed energy resources, fault management strategy is of great importance for the distribution network operation. The objective of this paper is to propose a current and voltage limiting strategy to enhance fault ride-through (FRT) capability of inverter-based islanded microgrids (MGs) in which the effects of inverter control system and inverter topology (four/three-wire) are considered. A three-phase voltage-sourced inverter with multi-loop control system implemented in synchronous, stationary, and natural reference frames is employed in this paper for both four- and three-wire configurations. The proposed strategy provides high voltage and current quality during overcurrent conditions, which is necessary for sensitive loads. Several time-domain simulation studies are conducted to investigate the FRT capability of the proposed strategy against both asymmetrical and symmetrical faults. Moreover, the proposed method is tested on the CIGRE benchmark MG to demonstrate the effectiveness of the proposed limiting strategy.
Author Hamedani Golshan, Mohamad Esmail
Sadeghkhani, Iman
Guerrero, Josep M.
Mehrizi-Sani, Ali
Author_xml – sequence: 1
  givenname: Iman
  surname: Sadeghkhani
  fullname: Sadeghkhani, Iman
  email: i.sadeghkhani@ec.iut.ac.ir
  organization: Dept. of Electr. & Comput. Eng., Isfahan Univ. of Technol., Isfahan, Iran
– sequence: 2
  givenname: Mohamad Esmail
  surname: Hamedani Golshan
  fullname: Hamedani Golshan, Mohamad Esmail
  email: hgolshan@cc.iut.ac.ir
  organization: Dept. of Electr. & Comput. Eng., Isfahan Univ. of Technol., Isfahan, Iran
– sequence: 3
  givenname: Josep M.
  surname: Guerrero
  fullname: Guerrero, Josep M.
  email: joz@et.aau.dk
  organization: Dept. of Energy Technol., Aalborg Univ., Aalborg, Denmark
– sequence: 4
  givenname: Ali
  surname: Mehrizi-Sani
  fullname: Mehrizi-Sani, Ali
  email: mehrizi@eecs.wsu.edu
  organization: Energy Syst. Innovation Center, Washington State Univ., Pullman, WA, USA
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Snippet With high penetration of distributed energy resources, fault management strategy is of great importance for the distribution network operation. The objective...
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SubjectTerms Constraining
Control systems
Current control
Density estimation robust algorithm
Distribution management
Electric potential
Electric power grids
Energy distribution
Energy management
Energy sources
fault current limiters
fault ride-through (FRT)
Faults
Inductors
Inverters
Limiting
Overcurrent
reference frame
Resource management
Strategy
Topology
transient response
Voltage control
voltage limit
voltage-sourced inverter (VSI)
Wire
Title A Current Limiting Strategy to Improve Fault Ride-Through of Inverter Interfaced Autonomous Microgrids
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