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A novel PSO‐based technique for optimal design of protective current transformers

Vahid Rashtchi (Electrical Engineering Department, Zanjan University, Zanjan, Islamic Republic of Iran)
Amir Bagheri (Electrical Engineering Department, Zanjan University, Zanjan, Islamic Republic of Iran)
Arash Shabani (Electrical Engineering Department, Zanjan University, Zanjan, Islamic Republic of Iran)
Saeed Fazli (Electrical Engineering Department, Zanjan University, Zanjan, Islamic Republic of Iran)

Abstract

Purpose

The purpose of this paper is to present a new approach for the optimal design of protective current transformers (CTs). The proposed technique is applied to the design of typical CTs and results are compared with traditional CT design method and genetic algorithm optimization algorithm.

Design/methodology/approach

The aim of CT design is to make current measurements more accurately, particularly for the high fault currents which arise in short circuits, and more efficient CT in terms of both size and cost. The present work formulates these objectives as an optimization problem to be solved by particle swarm optimization.

Findings

Simulation results demonstrate the effectiveness of this technique in optimizing the CT design parameters. The designed CTs have smaller measurement errors compared to standard values and respond well to high fault currents. Manufacturing costs have also been reduced.

Originality/value

In addition to improved efficiency, the benefits of this method are its treatment of CT design in terms of an equivalent circuit and design parameters. The proposed algorithm also extends the linear operation area of the CT and guarantees its good response to high fault currents that may occur in power systems.

Keywords

Citation

Rashtchi, V., Bagheri, A., Shabani, A. and Fazli, S. (2011), "A novel PSO‐based technique for optimal design of protective current transformers", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 30 No. 2, pp. 505-518. https://doi.org/10.1108/03321641111101041

Publisher

:

Emerald Group Publishing Limited

Copyright © 2011, Emerald Group Publishing Limited

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