Comparative study of conventional modulation schemes in terms of conducted and radiated EMI generated by three-phase inverters
Author(s) -
Mohamed Salem,
Mahmoud Hamouda,
Jaleleddine Ben Hadj Slama
Publication year - 2017
Publication title -
turkish journal of electrical engineering and computer sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.225
H-Index - 30
eISSN - 1303-6203
pISSN - 1300-0632
DOI - 10.3906/elk-1508-61
Subject(s) - emi , electromagnetic interference , conducted electromagnetic interference , harmonic , electronic engineering , common mode signal , modulation (music) , spice , space vector modulation , electromagnetic compatibility , simulation software , power (physics) , three phase , voltage , engineering , computer science , pulse width modulation , electrical engineering , software , physics , acoustics , digital signal processing , programming language , quantum mechanics , analog signal
In this paper, a comparative study is carried out between the carrier (SPWM), third harmonic injection (THIPWM), and space vector (SVPWM) modulation schemes in terms of conducted (common and differential modes) and radiated electromagnetic interference (EMI) generated by three-phase two-level voltage source inverters. For this purpose, an experimental setup of the converter feeding an induction machine is developed with the aim to measure the conducted emission propagated back into the dc source and the radiated field in the vicinity of the power conversion device. Experimental results are given and analyzed in time and frequency domains. The comparative study between the three modulation methods carried out in the frequency domain shows that the SVPWM method has better EMI performance. Moreover, a high frequency model of the converter feeding the induction machine is simulated using SPICE-based simulation software. Good agreement is found between the experimental and simulation results in terms of conducted interferences.
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