A fuzzy-based maximal reactive power benefits procedure

This paper presents a proposed procedure to obtain maximum benefits in terms of reactive power reserve and power losses using the multi-objective fuzzy linear programming (MFLP) technique A multi-objective fuzzy linear programming is proposed to optimize total costs of reactive power purchase and mi...

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Veröffentlicht in:IEEE PES Innovative Smart Grid Technologies, Europe S. 1 - 7
Hauptverfasser: El Sehiemy, Ragab A., Abou El Ela, Adel A., Shaheen, Abdul Allah M.
Format: Tagungsbericht
Sprache:Englisch
Veröffentlicht: IEEE 01.10.2014
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ISSN:2165-4816
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Abstract This paper presents a proposed procedure to obtain maximum benefits in terms of reactive power reserve and power losses using the multi-objective fuzzy linear programming (MFLP) technique A multi-objective fuzzy linear programming is proposed to optimize total costs of reactive power purchase and minimize the total transmission losses. In this new paper, the author limits to exchange total cost of reactive power by reactive power reserve, looking for maximizing reactive power reserves and minimizing active power losses. The proposed procedure is very significant to eliminate violation constraints and give an optimal reactive power reserve for multi-operating conditions. The proposed MFLP is applied to 52-bus system at West Delta region as a part of the Egyptian Unified network. The numerical results show that the proposed MFLP technique achieves a minimum real power loss with maximal reactive reserve for power systems for different operating conditions.
AbstractList This paper presents a proposed procedure to obtain maximum benefits in terms of reactive power reserve and power losses using the multi-objective fuzzy linear programming (MFLP) technique A multi-objective fuzzy linear programming is proposed to optimize total costs of reactive power purchase and minimize the total transmission losses. In this new paper, the author limits to exchange total cost of reactive power by reactive power reserve, looking for maximizing reactive power reserves and minimizing active power losses. The proposed procedure is very significant to eliminate violation constraints and give an optimal reactive power reserve for multi-operating conditions. The proposed MFLP is applied to 52-bus system at West Delta region as a part of the Egyptian Unified network. The numerical results show that the proposed MFLP technique achieves a minimum real power loss with maximal reactive reserve for power systems for different operating conditions.
Author El Sehiemy, Ragab A.
Abou El Ela, Adel A.
Shaheen, Abdul Allah M.
Author_xml – sequence: 1
  givenname: Ragab A.
  surname: El Sehiemy
  fullname: El Sehiemy, Ragab A.
  email: elsehiemy@eng.kfs.edu.eg
  organization: Department of Electrical Engineering, University of Kafrelsheikh Karfelsheikh, Egypt
– sequence: 2
  givenname: Adel A.
  surname: Abou El Ela
  fullname: Abou El Ela, Adel A.
  email: draaa50@hotmail.com
  organization: Department of Electrical Engineering University of Minoufiya, Egypt
– sequence: 3
  givenname: Abdul Allah M.
  surname: Shaheen
  fullname: Shaheen, Abdul Allah M.
  organization: South Delta Electricity Distribution, Company Ministry of Electricity Tanta, Egypt
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Snippet This paper presents a proposed procedure to obtain maximum benefits in terms of reactive power reserve and power losses using the multi-objective fuzzy linear...
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SubjectTerms competitive power systems
emergency conditions
Generators
Linear programming
multiobjective fuzzy linear programming
Power system stability
Propagation losses
Reactive power
reactive power management
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Title A fuzzy-based maximal reactive power benefits procedure
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