DocumentCode :
1126876
Title :
Z-Source-Converter-Based Energy-Recycling Zero-Voltage Electronic Loads
Author :
Rosas-Caro, Julio Cesar ; Peng, Fang Zheng ; Cha, Honnyong ; Rogers, Craig
Author_Institution :
Madero City Technol. Inst., Madero, Mexico
Volume :
56
Issue :
12
fYear :
2009
Firstpage :
4894
Lastpage :
4902
Abstract :
This paper proposes two high-efficiency energy-recycling zero-voltage electronic loads (ELs) based on a Z-source converter. ELs are a family of power converters which are used as variable impedance loads in several applications. Such applications include testing of photovoltaic (PV) cells, power converters, and power supplies or frequency control of stand-alone microgeneration. In PV-cell performance tests, the zero-voltage operation, near the short-circuit point of the PV cell´s I- V curve, creates a challenge for EL design. The converter that is suitable for this application must have the ideal current source behavior because the challenge is to draw a specific constant current from the source under test even during the zero-voltage condition. The energy recycling principle increases the efficiency and allows the construction of high-power ELs. The proposed topologies are based on the Z-source converter and achieve the ideal current source behavior of draining an adjustable current even when the source voltage is zero. These topologies also provide power recycling for energy saving and for developing high-power ELs. The first configuration is based on the traditional Z-source converter, and the second one is based on the recently proposed quasi Z-source converter. Two prototypes were analyzed and built. Experimental results are provided to verify the principle of operation.
Keywords :
constant current sources; network topology; power convertors; power supply circuits; PV cell I- V curve; current source behavior; energy-recycling zero-voltage electronic loads; frequency control; photovoltaic cell testing; power converters; power supplies; quasi Z-source converter; stand-alone microgeneration; variable impedance loads; Electronic load (EL); Z-source converter; ideal current source;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2009.2026374
Filename :
5156277
Link To Document :
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