Induction Cooking Application Based on Class E Resonant Inverter: Simulation 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


Downloads: 113 | Views: 1088 | Weekly Hits: ⮙1 | Monthly Hits: ⮙1

M.Tech / M.E / PhD Thesis | Electrical Engineering | India | Volume 4 Issue 5, May 2015 | Popularity: 6.9 / 10


     

Induction Cooking Application Based on Class E Resonant Inverter: Simulation using MATLAB

Hemlata N. Mungikar, V. S. Jape


Abstract: This paper presents simulation of induction cooker circuit using class E resonant inverter in MATLAB. Induction heating is well known technique for producing very high temperature in fraction of time. Induction cooking is an application of induction heating which is used for residential and commercial usage. With the help of class E resonant inverter, high power factor and low line current can be obtained, which are very attractive in terms of commercial production. The induction cooker's parameters using class E resonant inverter are designed properly and details of design are described. Switching technique using pulse density modulation (PDM) is presented for the inverter to control the temperature. Along with the description of system model simulation results are obtained and verified with the system model.


Keywords: Class E resonant inverter, Induction cooker, MATLAB Simulink, Pulse density modulation PDM


Edition: Volume 4 Issue 5, May 2015


Pages: 1874 - 1877



Please Disable the Pop-Up Blocker of Web Browser

Verification Code will appear in 2 Seconds ... Wait



Text copied to Clipboard!
Hemlata N. Mungikar, V. S. Jape, "Induction Cooking Application Based on Class E Resonant Inverter: Simulation using MATLAB", International Journal of Science and Research (IJSR), Volume 4 Issue 5, May 2015, pp. 1874-1877, https://www.ijsr.net/getabstract.php?paperid=SUB154592, DOI: https://www.doi.org/10.21275/SUB154592

Top