Equivalent circuit modelling of a three-phase to seven-phase transformer using PSO and GA

Author:

Tabrez Md1,Sadhu Pradip Kumar1,Iqbal Atif2,Husain Mohammed Aslam3,Bakhsh Farhad Ilahi4,Singh S. P.3

Affiliation:

1. Department of Electrical Engineering, IIT(ISM), Dhanbad, Jharkhand, & MCE, Motihari India

2. Department of Electrical Engineering, Qatar University, Doha-Qatar

3. Department of Electrical Engineering, Rajkiya Engineering College, Ambedkar Nagar, UP, India

4. Department of Electrical Engineering, NIT Srinagar, J&K, India

Abstract

Impedance mismatching between different phases of a multiphase transformer is generally observed e.g., in a three-phase to seven-phase transformer, due to an unequal number of turns in different coils. This mismatching introduces error in the study of per phase equivalent circuit diagrams as well as induces an imbalance in output voltages and currents. Therefore, it is a challenging task to develop a per-phase equivalent circuit for the secondary and primary sides (In some cases) too. This paper proposes an artificial intelligence optimization technique like PSO based modeling of the per-phase equivalent circuit of the secondary side. This paper deals with the modeling and simulation of a three-phase to seven-phase power transformer using Artificial Intelligence technique like particle swarm optimization (PSO) and Genetic Algorithm (GA). The proposed model is optimized through PSO and GA algorithms and tested for minimum voltage error in each phase. The proposed model is designed and the objective function is optimized by PSO & GA in MATLAB environment. It is found that the optimized model can be effectively implemented as a per-phase equivalent circuit for the secondary side.

Publisher

IOS Press

Subject

Artificial Intelligence,General Engineering,Statistics and Probability

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