Title :
Nonlinear fuzzy logic control of a PWM inverter with a nonlinear load
Author :
Purton, K.D. ; Lisner, R.P.
Author_Institution :
Switch Mode Power Conversion Pty. Ltd.
Abstract :
Capacitor input filter loads (nonlinear) typically cause voltage distortion in DC to AC inverter waveshape. Nonlinear fuzzy logic control fields promise in reducing this compared with conventional PID control. Comparisons between nonlinear fuzzy logic proportional derivative controllers and conventional linear PID controllers are made by simulating a buck converter subjected to large step load current changes. It was found that the choice of freewheeling switch (uncontrolled diode or synchronous rectifier) is a major factor in improved output voltage control. Fuzzy Logic controllers are investigated as arbitrary transfer characteristic generators. Membership function shape, degree of overlap, and number of overlaps, are examined, along with choice of rule table values, as to the effect on the transfer characteristic of the controller. Results are presented as transfer characteristic plots, 3D control surface plots, Bode plots, and step response plots for the buck converter
Keywords :
Bode diagrams; DC-DC power convertors; PWM invertors; fuzzy control; load (electric); nonlinear control systems; three-term control; voltage control; 3D control surface plots; Bode plots; DC to AC inverter waveshape; PWM inverter; arbitrary transfer characteristic generators; buck converter; buck converter simulation; capacitor input filter loads; control surface; degree of overlap; discontinuous conduction mode; freewheeling switch; linear PID controllers; membership function shape; nonlinear fuzzy logic control; nonlinear load; number of overlaps; output voltage control; proportional derivative controllers; rule table values; step load current changes; step response plots; synchronous rectifier; transfer characteristic; uncontrolled diode; voltage distortion; Buck converters; Capacitors; Filters; Fuzzy logic; PD control; Proportional control; Pulse width modulation inverters; Shape control; Switches; Three-term control;
Conference_Titel :
Power System Technology, 2000. Proceedings. PowerCon 2000. International Conference on
Conference_Location :
Perth, WA
Print_ISBN :
0-7803-6338-8
DOI :
10.1109/ICPST.2000.900061