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Proceedings ArticleDOI
Pablo Lezana, Jose Rodriguez 
04 Jun 2007
78 Citations
The results presented in this paper confirm that this new medium voltage inverter topology is able to reach high quality output voltages, allowing further advances in modulation techniques and other issues.
The voltage variation is effectively compensated using the proposed method and the required increase of the inverter capacity for the compensation is calculated.
The simulation and experimental results show that the proposed technique provides seamless transition between the inverter modes of operation with minimal distortion at the inverter output voltage.
The test results verify the effectiveness of the proposed strategy and the capability of the inverter to produce low-voltage distortion and switching losses.
In addition, this paper proves that, all control methods used for the voltage source inverter (VSI) can be applied for the ZSI and gaining its advantages.
These results demonstrate the proposed inverter with suggested algorithm can generate a wide range of load voltage.
Proceedings ArticleDOI
Xiaoyong Zhang, Jun Wang, Chuan Li 
25 Jun 2010
24 Citations
Finally, the proposed method is effective to implement output regulation of the inverter.
This increase in luminous efficiency is a result of decreases in effective discharge voltage and electron temperature.
Experimental results prove that the proposed scheme provides a good inverter output performance.
Experiments demonstrate the superiority of the proposed method in suppressing voltage distortions caused by inverter nonlinearity