Title :
A Filtered SVPWM for Multiphase Voltage Source Inverters Considering Finite Pulse-Width Resolution
Author :
Chen, Keng-Yuan ; Hu, Jwu-Sheng
Author_Institution :
Mech. & Syst. Lab., Ind. Technol. Res. Inst., Hsinchu, Taiwan
fDate :
7/1/2012 12:00:00 AM
Abstract :
A filtered space-vector pulse-width modulation (SVPWM) considering finite pulse-width resolution is proposed to produce a switching sequence with reduced baseband harmonics for multiphase voltage source inverters (VSI). The conventional SVPWM is sensitive to the pulse-width resolution which leads to increased harmonic distortion in digital-based implementations. By incorporating a pseudofeedback loop regarding weighted voltage difference between desired and produced phase voltages, the quantization error induced by finite pulse-width resolution is compensated, yielding a better tracking performance. The gating signals for multiphase VSIs are presented through rigorous mathematical derivation. In simulations and experiments, harmonic distortions of SVPWMs with and without filter compensation under various pulse-width resolutions are shown. The results confirm the effectiveness of the proposed scheme. The main advantage realized is reduction of acoustic noise and increased tracking accuracy.
Keywords :
PWM invertors; harmonic distortion; power harmonic filters; acoustic noise reduction; digital-based implementation; filter compensation; filtered SVPWM; filtered space-vector pulse-width modulation; finite pulse-width resolution; harmonic distortion; multiphase VSI; multiphase voltage source inverter; phase voltage; pseudofeedback loop; quantization error; reduced baseband harmonic; weighted voltage difference; Inverters; Signal resolution; Space vector pulse width modulation; Switches; Vectors; Maximum modulation index; multiphase; pulse-width modulation (PWM); space vector; voltage-source inverters;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2011.2181190