Application of PSO-Methods for the Solution of the economic Optimal Reactive Power Dispatch Problem

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Titel des Sammelwerks2018 IEEE Electronic Power Grid (eGrid)
Seitenumfang6
ISBN (elektronisch)978-1-5386-7665-3
PublikationsstatusVeröffentlicht - Nov. 2018
Veranstaltung2018 IEEE Electronic Power Grid (eGrid) - Charleston, USA / Vereinigte Staaten
Dauer: 12 Nov. 201814 Nov. 2018

Abstract

The economically evaluated Optimal Reactive Power Dispatch (EORPD) is an adaptation of the classic Optimal Reactive Power Dispatch (ORPD) problem with a joint multicriteria and monetary evaluated objective function. The EORPD aims for the maximal utilization of both technical and economical optimization potential in the electric energy system (EES) by influencing the reactive power provision. Within a combined large-scale, integrated transmission and distribution grid (ITDG) model various investigation aspects (e.g. grid loss minimization), operational degrees of freedom (e.g. transformer tap setting) as well as hierarchical requirements (e.g. vertical reactive power exchange) are considered. This leads to a multicriteria objective function for which a suitable optimization method is of question. In this context, this paper analyses the application of three different particle swarm optimization (PSO) variants for the standardized solution of the EORPD as well as their ability to find a reliable solution of the proposed objective function. Beside this, the improvement potential of the proposed PSO variants regarding the computation time and the quality of results are evaluated. With this, a standardized assessment method for the evaluation of design concepts for the vertical reactive power exchange within a large scale ITDG and regarding several investigation aspects is targeted.

Zitieren

Application of PSO-Methods for the Solution of the economic Optimal Reactive Power Dispatch Problem. / Sarstedt, Marcel; Garske, Steffen; Hofmann, Lutz.
2018 IEEE Electronic Power Grid (eGrid). 2018. 8598673.

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Sarstedt, M, Garske, S & Hofmann, L 2018, Application of PSO-Methods for the Solution of the economic Optimal Reactive Power Dispatch Problem. in 2018 IEEE Electronic Power Grid (eGrid)., 8598673, 2018 IEEE Electronic Power Grid (eGrid), South Carolina, USA / Vereinigte Staaten, 12 Nov. 2018. https://doi.org/10.1109/egrid.2018.8598673
Sarstedt M, Garske S, Hofmann L. Application of PSO-Methods for the Solution of the economic Optimal Reactive Power Dispatch Problem. in 2018 IEEE Electronic Power Grid (eGrid). 2018. 8598673 doi: 10.1109/egrid.2018.8598673
Sarstedt, Marcel ; Garske, Steffen ; Hofmann, Lutz. / Application of PSO-Methods for the Solution of the economic Optimal Reactive Power Dispatch Problem. 2018 IEEE Electronic Power Grid (eGrid). 2018.
Download
@inproceedings{7269084c01b44b9bb3f62aabc6d3d49b,
title = "Application of PSO-Methods for the Solution of the economic Optimal Reactive Power Dispatch Problem",
abstract = "The economically evaluated Optimal Reactive Power Dispatch (EORPD) is an adaptation of the classic Optimal Reactive Power Dispatch (ORPD) problem with a joint multicriteria and monetary evaluated objective function. The EORPD aims for the maximal utilization of both technical and economical optimization potential in the electric energy system (EES) by influencing the reactive power provision. Within a combined large-scale, integrated transmission and distribution grid (ITDG) model various investigation aspects (e.g. grid loss minimization), operational degrees of freedom (e.g. transformer tap setting) as well as hierarchical requirements (e.g. vertical reactive power exchange) are considered. This leads to a multicriteria objective function for which a suitable optimization method is of question. In this context, this paper analyses the application of three different particle swarm optimization (PSO) variants for the standardized solution of the EORPD as well as their ability to find a reliable solution of the proposed objective function. Beside this, the improvement potential of the proposed PSO variants regarding the computation time and the quality of results are evaluated. With this, a standardized assessment method for the evaluation of design concepts for the vertical reactive power exchange within a large scale ITDG and regarding several investigation aspects is targeted.",
keywords = "hierarchical multicriteria optimization problem, optimal reactive power dispatch, particle swarm optimization",
author = "Marcel Sarstedt and Steffen Garske and Lutz Hofmann",
note = "Publisher Copyright: {\textcopyright} 2018 IEEE. Copyright: Copyright 2019 Elsevier B.V., All rights reserved.; 2018 IEEE Electronic Power Grid (eGrid) ; Conference date: 12-11-2018 Through 14-11-2018",
year = "2018",
month = nov,
doi = "10.1109/egrid.2018.8598673",
language = "English",
isbn = "978-1-5386-7666-0",
booktitle = "2018 IEEE Electronic Power Grid (eGrid)",

}

Download

TY - GEN

T1 - Application of PSO-Methods for the Solution of the economic Optimal Reactive Power Dispatch Problem

AU - Sarstedt, Marcel

AU - Garske, Steffen

AU - Hofmann, Lutz

N1 - Publisher Copyright: © 2018 IEEE. Copyright: Copyright 2019 Elsevier B.V., All rights reserved.

PY - 2018/11

Y1 - 2018/11

N2 - The economically evaluated Optimal Reactive Power Dispatch (EORPD) is an adaptation of the classic Optimal Reactive Power Dispatch (ORPD) problem with a joint multicriteria and monetary evaluated objective function. The EORPD aims for the maximal utilization of both technical and economical optimization potential in the electric energy system (EES) by influencing the reactive power provision. Within a combined large-scale, integrated transmission and distribution grid (ITDG) model various investigation aspects (e.g. grid loss minimization), operational degrees of freedom (e.g. transformer tap setting) as well as hierarchical requirements (e.g. vertical reactive power exchange) are considered. This leads to a multicriteria objective function for which a suitable optimization method is of question. In this context, this paper analyses the application of three different particle swarm optimization (PSO) variants for the standardized solution of the EORPD as well as their ability to find a reliable solution of the proposed objective function. Beside this, the improvement potential of the proposed PSO variants regarding the computation time and the quality of results are evaluated. With this, a standardized assessment method for the evaluation of design concepts for the vertical reactive power exchange within a large scale ITDG and regarding several investigation aspects is targeted.

AB - The economically evaluated Optimal Reactive Power Dispatch (EORPD) is an adaptation of the classic Optimal Reactive Power Dispatch (ORPD) problem with a joint multicriteria and monetary evaluated objective function. The EORPD aims for the maximal utilization of both technical and economical optimization potential in the electric energy system (EES) by influencing the reactive power provision. Within a combined large-scale, integrated transmission and distribution grid (ITDG) model various investigation aspects (e.g. grid loss minimization), operational degrees of freedom (e.g. transformer tap setting) as well as hierarchical requirements (e.g. vertical reactive power exchange) are considered. This leads to a multicriteria objective function for which a suitable optimization method is of question. In this context, this paper analyses the application of three different particle swarm optimization (PSO) variants for the standardized solution of the EORPD as well as their ability to find a reliable solution of the proposed objective function. Beside this, the improvement potential of the proposed PSO variants regarding the computation time and the quality of results are evaluated. With this, a standardized assessment method for the evaluation of design concepts for the vertical reactive power exchange within a large scale ITDG and regarding several investigation aspects is targeted.

KW - hierarchical multicriteria optimization problem

KW - optimal reactive power dispatch

KW - particle swarm optimization

UR - http://www.scopus.com/inward/record.url?scp=85061494577&partnerID=8YFLogxK

U2 - 10.1109/egrid.2018.8598673

DO - 10.1109/egrid.2018.8598673

M3 - Conference contribution

SN - 978-1-5386-7666-0

BT - 2018 IEEE Electronic Power Grid (eGrid)

T2 - 2018 IEEE Electronic Power Grid (eGrid)

Y2 - 12 November 2018 through 14 November 2018

ER -

Von denselben Autoren