DocumentCode
2558921
Title
Rapid prototyping tool for a fuzzy logic based soft-starter
Author
Prasad, M. Rajendra ; Sastry, V.V.
Author_Institution
Dept. of Electr. Eng., Indian Inst. of Technol., Madras, India
Volume
2
fYear
1997
fDate
3-6 Aug 1997
Firstpage
877
Abstract
On account of the problems associated with the conventional starting techniques (DOL, Star-Delta, etc.) an efficient method of soft-starting is required with energy saving features and adaptive parameter setting capability. An optimal soft-starting is one that starts the motor with minimum voltage and reduced starting current limit (CURLIM). Starting current limit is different for motors of different ratings and for the same motor under different initial load conditions. Fuzzy logic has been adapted with a triangular membership function with a finite overlap between two membership grades to achieve the adaptive parameter setting capability. It features automatic setting of current limit and the optimality is achieved by performing the task with appropriate settings for a maximum firing angle (αmax), decrement of α (Δα) and the delay time between the two successive decrements (Δt) calculated based on `fuzzy logic´. The hardware interface is developed around an `8051 microcontroller based rapid prototyping tool´ which interfaces the personal computer (PC) with the external world through its serial communication link. This tool improved the ease with which a prototype algorithm could be developed. All the algorithms are tested on different motors in the laboratory under different load conditions and found to be reliable and optimal. In all, a novel fuzzy logic based soft-start scheme for AC chopper fed induction motor drive is proposed and implemented using a rapid prototyping tool
Keywords
choppers (circuits); fuzzy control; induction motor drives; machine control; microcontrollers; power engineering computing; software prototyping; starting; 8051 microcontroller based rapid prototyping tool; AC chopper fed induction motor drive; AC motor starting; adaptive parameter setting capability; energy saving features; finite overlap; fuzzy logic based soft-starter; hardware interface; maximum firing angle; minimum voltage; optimal soft-starting; personal computer interface; reduced starting current limit; serial communication link; triangular membership function; Choppers; Delay effects; Fuzzy logic; Hardware; Laboratories; Microcomputers; Microcontrollers; Prototypes; Testing; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Conversion Conference - Nagaoka 1997., Proceedings of the
Conference_Location
Nagaoka
Print_ISBN
0-7803-3823-5
Type
conf
DOI
10.1109/PCCON.1997.638359
Filename
638359
Link To Document