DocumentCode :
1773751
Title :
A high voltage gain switched-coupled-inductor quasi-Z-source inverter
Author :
Ahmed, Foisal ; Honnyong Cha ; Su-Han Kim ; Heung-Geun Kim
Author_Institution :
Sch. of Energy Eng., Kyungpook Nat. Univ., Daegu, South Korea
fYear :
2014
fDate :
18-21 May 2014
Firstpage :
480
Lastpage :
484
Abstract :
Impedance-source (Z-source) inverters are widely used to overcome the drawbacks of traditional voltage-source inverters (VSIs) such as no boost ability, waveform distortion because of dead time to avoid shoot-through, and less immunity to EMI noise. Shortcomings associated with the Z-source inverters like discontinuous input current, high voltage stress on capacitors and no common ground point between the dc-source and inverter bridge has been addressed with the development of the quasi-Z-source (qZSI) inverters. This paper proposes design of an improved high voltage gain quasi-Z-source inverter by adopting a combination of switched-capacitor and switched-coupled-inductor (SCL). Use of the coupled-inductor to charge switched-capacitor can effectively enhances the voltage gain and reduces the turns ratio of the coupled-inductor. The proposed SCL-qZSI due to its higher voltage gain, utilizes smaller shoot-through duty ratio and consequently larger modulation index, thus having lower voltage stress on switching devices as compared to the traditional ZSIs and qZSIs. A detailed theoretical analysis of the proposed converter and its comparison with QZSI is given, and followed by simulation and experimental results.
Keywords :
electromagnetic interference; inductors; invertors; switched capacitor networks; EMI noise; dc-source; discontinuous input current; high voltage gain; impedance-source inverters; inverter bridge; modulation index; quasiZ-source inverter; switched-capacitor; switched-coupled-inductor; switching devices; voltage stress; waveform distortion; Discharges (electric); Switches; Virtual private networks; High voltage gain; Z-source inverter (ZSI); switch voltage stress; switched coupled-inductor;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Conference (IPEC-Hiroshima 2014 - ECCE-ASIA), 2014 International
Conference_Location :
Hiroshima
Type :
conf
DOI :
10.1109/IPEC.2014.6869627
Filename :
6869627
Link To Document :
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