DocumentCode :
1637307
Title :
Optimized design of an induction motor using fuzzy logic as a calculus and decision tool
Author :
Alabern, Xavier ; Valero, Emili
Volume :
1
fYear :
2003
Firstpage :
83
Abstract :
Using the typical design parameters for the manufacturing of the induction motor, motor length (L), rotor diameter (D), stator inner diameter ( Din), and external diameter (Dex), number of coils (Ts), slot depth (ht), airgap length (lg) and so on, and introducing fuzzy logic for the design of the correction factors, as winding factor (Kws), Carter factor (Kc) we can achieve the equivalent circuit parameters, (R1,R2,Xm,X1,X2). These are the parameters that define the main performance of an induction motor, (torque curve, current curve). We can modify the equivalent circuit parameters, only changing the typical design motor parameters, as motor length (L), or slot depth (ht) and in this way the performance of the induction motor, locked rotor current (Icc), nominal current (In), locked rotor torque (Tcc) maximum torque (Tm) and nominal torque (Tn). Using the motor model built by Matlab/Simulink, we can get different motor performances, Icc, In, Tn, Tcc, Tm for several motor designs. So we have the tools for building a fuzzy model, and use as inputs, the desired customer performance parameters, Ice, In, Tm, Tcc, Tn, as outputs motor length (T), rotor slot depth (htr) and stator slot depth (hts). This is an easy and fast way, using fuzzy systems, to design motors from the required performance parameters.
Keywords :
air gaps; calculus; coils; equivalent circuits; fuzzy logic; fuzzy set theory; induction motors; machine theory; rotors; stators; torque; 1.4 kW; Carter factor; Matlab/Simulink; airgap length; calculus tool; correction factors; current curve; decision tool; design motor parameters; equivalent circuit parameters; external diameter; fuzzy logic; induction motor using fuzzy logic; locked rotor current; locked rotor torque; manufacturing; maximum torque; motor length; nominal current; nominal torque; number of coils; outputs motor length; rotor diameter; rotor slot depth; slot depth; stator inner diameter; stator slot depth; torque curve; typical design parameters; winding factor; Calculus; Design optimization; Equivalent circuits; Fuzzy logic; Induction motors; Manufacturing; Mathematical model; Rotors; Stators; Torque;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electric Machines and Drives Conference, 2003. IEMDC'03. IEEE International
Print_ISBN :
0-7803-7817-2
Type :
conf
DOI :
10.1109/IEMDC.2003.1211246
Filename :
1211246
Link To Document :
بازگشت