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Dynamic Simulation of Full-wave Controller for a Separately Excited DC Motor
Subject area: Science,Engineering and Technology · Area of research: DC Motor
Abstract
This research investigates the use of dynamic simulations approach for full-wave control of a Separately Excited DC motor (SEDCM). The simulation considers the use of rectifier bridge circuit and employing the MATLAB/SIMULINK modeling and software development environment. The research specifically investigates the impact of various load torque on the SEDCM armature voltage, current, motor speed and firing angle. The results of simulation studies show that increasing the load torque leads to corresponding increases in armature voltage and current. But the firing angle is decreased as well. The results therefore demonstrates the direct and inverse relation property of SEDCM to armature current and the firing angles respectively.
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How to cite this paper
@article{1706670,
author = {Onwughalu M. K, Ifeatu Chidebere},
title = {Dynamic Simulation of Full-wave Controller for a Separately Excited DC Motor},
journal = {Iconic Research And Engineering Journals},
year = {2024},
volume = {8},
number = {6},
pages = {235-238},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1706670.pdf},
abstract = {This research investigates the use of dynamic simulations approach for full-wave control of a Separately Excited DC motor (SEDCM). The simulation considers the use of rectifier bridge circuit and employing the MATLAB/SIMULINK modeling and software development environment. The research specifically investigates the impact of various load torque on the SEDCM armature voltage, current, motor speed and firing angle. The results of simulation studies show that increasing the load torque leads to corresponding increases in armature voltage and current. But the firing angle is decreased as well. The results therefore demonstrates the direct and inverse relation property of SEDCM to armature current and the firing angles respectively.},
month = {December},
}