Dynamic Modeling of Six Pulse Rectifier Using MATLAB
International Journal of Science and Research (IJSR)

International Journal of Science and Research (IJSR)
Call for Papers | Fully Refereed | Open Access | Double Blind Peer Reviewed

ISSN: 2319-7064


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Research Paper | Electrical & Electronics Engineering | India | Volume 2 Issue 7, July 2013 | Popularity: 6.7 / 10


     

Dynamic Modeling of Six Pulse Rectifier Using MATLAB

Vikas M, B. K. Singh


Abstract: A dynamic modeling of thyristor rectifier which is useful for the study of power electronics controlled rectifiers with the help of using MATLAB and SIMULINK is presented in this paper. This dynamic model is very simple, fast and effective simulation method for the output variables of thyristor rectifiers. The rectifier output voltage static and dynamic variables behavior are represented by an accurate non linear function of the pulse number (p), trigger angle control voltage () and displacement angle (). And also it allows the study in open and closed loop thyristor rectifier simulation of loads which are fed by high power thyristor rectifiers with any pulse number greater than one (p>1) or their association by solving only the differential equation (s) of the load (s). The simulation time is always small and independent of the pulse number. This paper gives an approach to establish a general pulse (p>1) thyristor rectifier dynamic model which is based on the steady state rectifier behavior and corrected to accurately represent its dynamic transients. In this paper we considered only null commutating reactances having instantaneous switching, no conduction loss and zero overlap angle.


Keywords: SIMULINK Model, Ideal Voltage Source, 6pulse Thyristor, Sawtooth Function, MATLAB


Edition: Volume 2 Issue 7, July 2013


Pages: 259 - 263



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Vikas M, B. K. Singh, "Dynamic Modeling of Six Pulse Rectifier Using MATLAB", International Journal of Science and Research (IJSR), Volume 2 Issue 7, July 2013, pp. 259-263, https://www.ijsr.net/getabstract.php?paperid=02013159, DOI: https://www.doi.org/10.21275/02013159

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