DocumentCode :
182395
Title :
Experimental verification of conduction noise of three-level V-connection rectifier-inverter system
Author :
Itoh, Jun-ichi ; Huynh Dang Minh ; Sato, Daisuke
Author_Institution :
Dept. of Electr., Nagaoka Univ. of Technol., Nagaoka, Japan
fYear :
2014
fDate :
21-24 Sept. 2014
Firstpage :
558
Lastpage :
563
Abstract :
This paper discusses the conduction noise reduction possibility of a transformer-less three-level V-connection rectifier-inverter system. This circuit is used for the main circuit in an Uninterruptible Power Supply (UPS) system. The efficiency of this circuit is higher than that of the conventional three-phase rectifier-inverter circuit due to no isolated transformer in output side. In this paper, to verify the conduction noise of the V-connection system, a theoretical analysis about the common-mode currents which based on the common-mode equivalent circuit, is discussed. Based on this, the comparison of the conduction noise between the three-level V-connection Back To Back (BTB) system and the conventional three-level three-phase connection BTB system is assumed. In addition, the conduction noise of two systems are measured and compared in order to confirm the assumption. As a result, it is confirmed that the conduction noise which is generated from the three-level V-connection rectifier-inverter circuit is higher than that of the conventional three-phase rectifier-inverter circuit.
Keywords :
equivalent circuits; invertors; rectifiers; rectifying circuits; uninterruptible power supplies; UPS system; common-mode current; common-mode equivalent circuit; conduction noise reduction; conventional three-level three-phase connection BTB system; theoretical analysis; three-level V-connection back to back system; transformer-less three-level V-connection rectifier-inverter system; uninterruptible power supply system; Electric potential; Electromagnetic compatibility; Heat sinks; Inductance; Inverters; Leakage currents; Switches; Multilevel converter; V-connection rectifier-inverter; conducted emission; leakage current;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Motion Control Conference and Exposition (PEMC), 2014 16th International
Conference_Location :
Antalya
Type :
conf
DOI :
10.1109/EPEPEMC.2014.6980552
Filename :
6980552
Link To Document :
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