State-of-the-Art Techniques and Challenges Ahead for Distributed Generation Planning and Optimization

It is difficult to estimate how much distributed generation (DG) capacity will be connected to distribution systems in the coming years; however, it is certain that increasing penetration levels require robust tools that help assess the capabilities and requirements of the networks in order to produ...

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Vydáno v:IEEE transactions on power systems Ročník 28; číslo 2; s. 1493 - 1502
Hlavní autoři: Keane, Andrew, Ochoa, Luis F., Borges, Carmen L. T., Ault, Graham W., Alarcon-Rodriguez, Arturo D., Currie, Robert A. F., Pilo, Fabrizio, Dent, Chris, Harrison, Gareth P.
Médium: Journal Article
Jazyk:angličtina
Vydáno: New York IEEE 01.05.2013
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Témata:
ISSN:0885-8950, 1558-0679
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Abstract It is difficult to estimate how much distributed generation (DG) capacity will be connected to distribution systems in the coming years; however, it is certain that increasing penetration levels require robust tools that help assess the capabilities and requirements of the networks in order to produce the best planning and control strategies. The work of this Task Force is focused on the numerous strategies and methods that have been developed in recent years to address DG integration and planning. This paper contains a critical review of the work in this field. Although there have been numerous publications in this area, widespread implementation of the methods has not taken place. The barriers to implementation of the advanced techniques are outlined, highlighting why network operators have been slow to pick up on the research to date. Furthermore, key challenges ahead which remain to be tackled are also described, many of which have come into clear focus with the current drive towards smarter distribution networks.
AbstractList It is difficult to estimate how much distributed generation (DG) capacity will be connected to distribution systems in the coming years; however, it is certain that increasing penetration levels require robust tools that help assess the capabilities and requirements of the networks in order to produce the best planning and control strategies. The work of this Task Force is focused on the numerous strategies and methods that have been developed in recent years to address DG integration and planning. This paper contains a critical review of the work in this field. Although there have been numerous publications in this area, widespread implementation of the methods has not taken place. The barriers to implementation of the advanced techniques are outlined, highlighting why network operators have been slow to pick up on the research to date. Furthermore, key challenges ahead which remain to be tackled are also described, many of which have come into clear focus with the current drive towards smarter distribution networks.
Author Ochoa, Luis F.
Pilo, Fabrizio
Borges, Carmen L. T.
Ault, Graham W.
Alarcon-Rodriguez, Arturo D.
Currie, Robert A. F.
Dent, Chris
Harrison, Gareth P.
Keane, Andrew
Author_xml – sequence: 1
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  surname: Keane
  fullname: Keane, Andrew
  email: andrew.keane@ucd.ie
– sequence: 2
  givenname: Luis F.
  surname: Ochoa
  fullname: Ochoa, Luis F.
  email: luis_ochoa@ieee.org
– sequence: 3
  givenname: Carmen L. T.
  surname: Borges
  fullname: Borges, Carmen L. T.
– sequence: 4
  givenname: Graham W.
  surname: Ault
  fullname: Ault, Graham W.
– sequence: 5
  givenname: Arturo D.
  surname: Alarcon-Rodriguez
  fullname: Alarcon-Rodriguez, Arturo D.
– sequence: 6
  givenname: Robert A. F.
  surname: Currie
  fullname: Currie, Robert A. F.
– sequence: 7
  givenname: Fabrizio
  surname: Pilo
  fullname: Pilo, Fabrizio
– sequence: 8
  givenname: Chris
  surname: Dent
  fullname: Dent, Chris
– sequence: 9
  givenname: Gareth P.
  surname: Harrison
  fullname: Harrison, Gareth P.
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Snippet It is difficult to estimate how much distributed generation (DG) capacity will be connected to distribution systems in the coming years; however, it is certain...
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SubjectTerms AC optimal power flow
active network management
Biological system modeling
Conferences
Control systems
Distributed generation
distribution networks
Electricity distribution
Genetic algorithms
Linear programming
multi-objective programming
Networks
Optimization
Planning
Probabilistic logic
Reliability
State of the art
Strategy
Tasks
wind power generation
Title State-of-the-Art Techniques and Challenges Ahead for Distributed Generation Planning and Optimization
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