DocumentCode
74258
Title
Low Carrier–Fundamental Frequency Ratio PWM for Multilevel Active Shunt Power Filters for Aerospace Applications
Author
Odavic, Milijana ; Biagini, Veronica ; Sumner, M. ; Zanchetta, Pericle ; Degano, Michele
Author_Institution
Dept. of Electr. & Electron. Eng., Univ. of Nottingham, Nottingham, UK
Volume
49
Issue
1
fYear
2013
fDate
Jan.-Feb. 2013
Firstpage
159
Lastpage
167
Abstract
Active power filters create sideband harmonics over a wide frequency range around the multiple carrier-frequency harmonics, and these can encroach into the low frequency range. This issue is particularly critical when low carrier-fundamental frequency ratios are used such as in aerospace applications, where high fundamental frequencies exist. A three-phase multilevel active shunt filter with a low switching frequency is proposed to mitigate the lowest order carrier-frequency terms. However, low carrier frequencies lead to reference voltage phase delay and attenuation and can introduce significant baseband harmonics. These effects cannot be hidden by employing multiple modulator converters. In addressing these problems, an improved modulation approach is proposed in this work that allows duty cycle updating (N - 1) times per switching period for each H-bridge of one phase of the N -level converter [rather than only once or twice as in the regularly sampled pulse width modulation (PWM)]. The proposed modulation approach is then combined with predictive current control in order to enhance the system performance. The control loop performance compared to regularly sampled PWM is verified through simulations and experimentally by employing a three-phase five-level active shunt power filters in a 400-Hz power network.
Keywords
PWM power convertors; aircraft power systems; electric current control; power harmonic filters; predictive control; switching convertors; H-bridge; N-level converter; aerospace applications; attenuation; baseband harmonics; control loop; frequency 400 Hz; low carrier-fundamental frequency ratio PWM; low switching frequency; multilevel active shunt power filters; multiple carrier-frequency harmonics; multiple modulator converters; power network; predictive current control; pulse width modulation; reference voltage phase delay; sideband harmonics; three-phase multilevel active shunt filter; Frequency modulation; Harmonic analysis; Power harmonic filters; Pulse width modulation; Switches; Voltage control; Active power filters; digital control; multilevel converters; multisampling; predictive control;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2012.2229253
Filename
6359905
Link To Document