OPTIMIZATION OF THE FORCE CHARACTERISTIC OF ROTARY MOTION TYPE OF ELECTROMAGNETIC ACTUATOR BASED ON FINITE ELEMENT ANALYSIS

التفاصيل البيبلوغرافية
العنوان: OPTIMIZATION OF THE FORCE CHARACTERISTIC OF ROTARY MOTION TYPE OF ELECTROMAGNETIC ACTUATOR BASED ON FINITE ELEMENT ANALYSIS
المؤلفون: Mariam Ghazaly, I Yusri, Zulkeflee Abdullah, Esmail Ali Alandoli, Mohd. Fua'ad Rahmat, Mohd Amran Ali, Rahifa Ranom
المصدر: Jurnal Teknologi. 78
بيانات النشر: Penerbit UTM Press, 2016.
سنة النشر: 2016
مصطلحات موضوعية: Engineering, business.industry, Magnetic reluctance, Stator, General Engineering, Thrust, Rotary actuator, Finite element method, Computer Science::Other, law.invention, Computer Science::Robotics, Computer Science::Systems and Control, Control theory, law, Magnet, Air gap (plumbing), business, Actuator
الوصف: This paper addresses a rotary motion type of electromagnetic actuator that compares two types of electromagnetic actuators; i.e the Permanent Magnet Switching Flux (PMSF) and the Switching Reluctance (SR) actuator. The Permanent Magnet Switching Flux (PMSF) actuator is the combination of permanent magnets (PM) and the Switching Reluctance (SR) actuator. The force optimizations are accomplished by manipulating the actuator parameters; i.e. (i) the poles ratio of the stator and rotor; (ii) the actuator’s size; (iii) the number of winding turns; and (iv) the air gap thickness between the stator and rotor through Finite Element Analysis Method (FEM) using the ANSYS Maxwell 3D software. The materials implemented in the actuator’s parameters optimizations are readily available materials, especially in Malaysia. The excitation current used in FEM analysis for both actuators was between 0A and 2A with interval of 0.25A. Based on the FEM analyses, the best result was achieved by the Permanent Magnet Switching Flux (PMSF) actuator. The PMSF actuator produced the largest magnetostatic thrust force (4.36kN) once the size is scaled up to 100% with the input current, 2A respectively. The maximum thrust force generated by the Switching Reluctance (SR) actuator was 168.85μN, which is significantly lower in compared to the results of the PMSF actuator.
تدمد: 2180-3722
0127-9696
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::2226d2ee68645b55ace5210172db73ad
https://doi.org/10.11113/jt.v78.7161
رقم الأكسشن: edsair.doi...........2226d2ee68645b55ace5210172db73ad
قاعدة البيانات: OpenAIRE