DocumentCode
1720291
Title
Analysis of parameters variation of a quasi-resonant fast on-load tap changing regulator
Author
Echavarría, R. ; Sánchez, V. ; Ponce, M. ; Cotorogea, M. ; Claudio, A.
Author_Institution
CENIDET, Centro Nacional de Investigacion y Desarrollo Tecnologico, Cuernavaca, Mexico
fYear
2002
Firstpage
78
Lastpage
83
Abstract
The main function of the on-load tap changing (OLTC) regulators consists in maintaining a constant voltage in order to feed critical loads despite the load changes or voltage changes in the AC mains. The traditional regulators are still used nowadays, but present several disadvantages, like a slow response, which reaches from 100 ms to several seconds. These drawbacks can be overcome if the OLTC regulators would have shorter response time, commuting several times every cycle of the mains. There are two basic topologies for fast OLTC regulators, the first one consists of several taps and uses hard switching. The second one consists of two main switches commuting at high frequency, using soft-switching in order to reduce the power losses. The present topology is of the second type. This paper presents a mathematical model of the power stage of the proposed regulator. It includes the parasitic resistances and the leakage inductances in order to obtain a better comprehension of the regulator operation. A parametric analysis has been done in order to observe the influence of the parasitic elements in the performance of the main parameters of the topology.
Keywords
commutation; electric resistance; inductance; losses; magnetic leakage; on load tap changers; resonant power convertors; switching convertors; voltage control; commutation; constant voltage; critical loads feeding; high frequency; leakage inductances; mathematical model; parameters variation; parametric analysis; parasitic resistances; power losses reduction; quasi-resonant fast on-load tap changing regulator; shorter response time; soft-switching; Delay; Feeds; Frequency; Inductance; Regulators; Resonance; Switches; Topology; Voltage; Zero current switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Congress, 2002. Technical Proceedings. CIEP 2002. VIII IEEE International
Print_ISBN
0-7803-7640-4
Type
conf
DOI
10.1109/CIEP.2002.1216640
Filename
1216640
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