
Fast and continuous on‐load voltage regulator based on electronic power transformer
Author(s) -
Yang Jiawei,
Mao Chengxiong,
Wang Dan,
Lu Jiming,
Fu Xueqiang,
Chen Xun
Publication year - 2013
Publication title -
iet electric power applications
Language(s) - English
Resource type - Journals
ISSN - 1751-8679
DOI - 10.1049/iet-epa.2012.0166
Subject(s) - voltage regulation , tap changer , transformer , voltage , voltage regulator , dropout voltage , voltage optimisation , electrical engineering , distribution transformer , engineering , control theory (sociology) , computer science , control (management) , artificial intelligence
The on‐load tap changing transformers have been widely used for their ability to maintain output voltages at desired levels despite the load or voltage changes in the ac mains. However, they present several disadvantages such as slow response, high‐maintenance cost and discontinuous voltage regulation. This study proposes a novel on‐load voltage regulator based on electronic power transformer (OLVR‐EPT) to eliminate these drawbacks. By injecting an appropriate voltage component to traditional power transformer windings through EPT output stage, the resultant load voltage can be maintained at the desired value. There are no tap‐changers anymore, so the voltage regulation is fast and continuous. Two sample schemes of OLVR‐EPT are given and corresponding control method is developed in this study. The simulation and experimental results demonstrate that OLVR‐EPT is able to maintain load voltages at the desired value effectively.