Power Quality Concerns in Implementing Smart Distribution-Grid Applications

This paper maps the expected and possible adverse consequences for power quality of introducing several smart distribution-grid technologies and applications. The material presented in this paper is the result of discussions in an international CIGRE-CIRED joint working group. The following technolo...

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Veröffentlicht in:IEEE transactions on smart grid Jg. 8; H. 1; S. 391 - 399
Hauptverfasser: Bollen, Math H. J., Das, Ratan, Djokic, Sasa, Ciufo, Phil, Meyer, Jan, Ronnberg, Sarah K., Zavodam, Francisc
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Piscataway IEEE 01.01.2017
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN:1949-3053, 1949-3061, 1949-3061
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Abstract This paper maps the expected and possible adverse consequences for power quality of introducing several smart distribution-grid technologies and applications. The material presented in this paper is the result of discussions in an international CIGRE-CIRED joint working group. The following technologies and applications are discussed: 1) microgrids; 2) advanced voltage control; 3) feeder reconfiguration; and 4) demand-side management. Recommendations are given based on the mapping.
AbstractList This paper maps the expected and possible adverse consequences for power quality of introducing several smart distribution-grid technologies and applications. The material presented in this paper is the result of discussions in an international CIGRE–CIRED joint working group. The following technologies and applications are discussed: 1) microgrids; 2) advanced voltage control; 3) feeder reconfiguration; and 4) demand-side management. Recommendations are given based on the mapping.
This paper maps the expected and possible adverse consequences for power quality of introducing several smart distribution-grid technologies and applications. The material presented in this paper is the result of discussions in an international CIGRE-CIRED joint working group. The following technologies and applications are discussed: microgrids; advanced voltage control; feeder reconfiguration; and demand-side management. Recommendations are given based on the mapping.
Author Zavodam, Francisc
Djokic, Sasa
Bollen, Math H. J.
Ronnberg, Sarah K.
Meyer, Jan
Das, Ratan
Ciufo, Phil
Author_xml – sequence: 1
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  surname: Bollen
  fullname: Bollen, Math H. J.
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  organization: Electr. Power Eng., Lulea Univ. of Technol., Skelleftea, Sweden
– sequence: 2
  givenname: Ratan
  surname: Das
  fullname: Das, Ratan
  organization: icaPower LLC, Dover, DE, USA
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  givenname: Sasa
  surname: Djokic
  fullname: Djokic, Sasa
  organization: Univ. of Edinburgh, Edinburgh, UK
– sequence: 4
  givenname: Phil
  surname: Ciufo
  fullname: Ciufo, Phil
  organization: Univ. of Wollongong, Wollongong, NSW, Australia
– sequence: 5
  givenname: Jan
  surname: Meyer
  fullname: Meyer, Jan
  organization: Tech. Univ. Dresden, Dresden, Germany
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  givenname: Sarah K.
  surname: Ronnberg
  fullname: Ronnberg, Sarah K.
  organization: Electr. Power Eng., Lulea Univ. of Technol., Skelleftea, Sweden
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  givenname: Francisc
  surname: Zavodam
  fullname: Zavodam, Francisc
  organization: IREQ, Varennes, QC, Canada
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Snippet This paper maps the expected and possible adverse consequences for power quality of introducing several smart distribution-grid technologies and applications....
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SubjectTerms Conservation voltage reduction (CVR)
demand-side management (DSM)
Density estimation robust algorithm
Distributed generation
Electric Power Engineering
Electromagnetic interference
Elkraftteknik
feeder reconfiguration
Mapping
Microgrids
Power electronics
Power quality
power quality (PQ)
Reconfiguration
Smart grid
Smart grids
volt-var control/optimization (VVC/VVO)
Voltage control
Title Power Quality Concerns in Implementing Smart Distribution-Grid Applications
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