Title :
Variable frequency adaptive selective compensation for active power filters
Author :
Venturini, R.P. ; Mattavelli, Paolo ; Zanchetta, Pericle ; Sumner, M.
Author_Institution :
DEI, Univ. of Padova, Padova
Abstract :
This paper investigates an adaptive current controller for active power filters for aeronautic applications, which compensate selected load current harmonics. The attention is focused on the load current harmonic compensation when the fundamental frequency varies over a wide range (typically between 400 Hz and 800 Hz) and the harmonics produced by distorting loads (such as the 5th and the 7th) are above the achievable current loop bandwidth. Compared to previously reported resonant controllers, this paper proposes an adaptive leading angle compensation in the resonant filter, which - by compensating the variable process delay -is potentially able to guarantee the theoretical current control stability when the selected frequency is up to the Nyquist frequency. However, the presence of intermodulation, i.e. distortion introduced due to the compensation of frequencies approaching the Nyquist limit, introduces an additional distortion, which limits the maximum compensation frequency. Experimental results are also presented.
Keywords :
Nyquist stability; active filters; adaptive control; aircraft power systems; electric current control; intermodulation distortion; power harmonic filters; Nyquist limit; active power filters; adaptive current controller; adaptive leading angle compensation; aeronautic application; aircraft power system distribution; current control stability; frequency 400 Hz to 800 Hz; fundamental frequency; intermodulation distortion; load current harmonic compensation; resonant controllers; resonant filter; variable frequency adaptive selective compensation; Active filters; adaptive filters; harmonic filtering; selective current control;
Conference_Titel :
Power Electronics, Machines and Drives, 2008. PEMD 2008. 4th IET Conference on
Conference_Location :
York
Print_ISBN :
978-0-86341-900-3