Title :
An Investigation into Vibration in High Speed Switched Reluctance Motor with Soft Magnetic Composite Material
Author :
Vijayakumar, K. ; Karthikeyan, R. ; Rajkumar, S. ; Arumugam, R.
Author_Institution :
Dept. of Electr. Eng., Anna Univ., Chennai
Abstract :
In aircraft electric motor driven fuel delivery system, the motor must be characterized by high power density, reliability, less size, less weight and high speed. The high speed operation, fault tolerance, high power density makes switched reluctance motor an ideal candidate for high speed aerospace applications. This paper investigates the application potential of soft magnetic composite material (SOMALOY 500) in high-speed switched reluctance motor. Two configurations all (1) sheet metal with smooth frame and ribbed frame (1) all soft magnetic composite material with smooth frame and ribbed frame have been studied using finite element analysis to obtain their mode shapes and mode frequencies. The study reveals that the all soft magnetic composite configuration albeit suffers from poor average torque has lesser vibration of stator that may result in low acoustic level a desirable feature in high speed aerospace applications.
Keywords :
aircraft; composite materials; fault tolerance; finite element analysis; magnetic materials; reluctance motor drives; aircraft electric motor; fault tolerance; finite element analysis; fuel delivery system; high power density; high speed aerospace applications; high speed switched reluctance motor; low acoustic level; mode frequencies; soft magnetic composite material; stator vibration; Aerospace materials; Aircraft; Composite materials; Electric motors; Fault tolerance; Fuels; Magnetic switching; Power system reliability; Reluctance motors; Soft magnetic materials; Finite element analysis; Mode shapes; Soft magnetic composite (SMC); Switched reluctance motor (SRM);
Conference_Titel :
Industrial and Information Systems, 2008. ICIIS 2008. IEEE Region 10 and the Third international Conference on
Conference_Location :
Kharagpur
Print_ISBN :
978-1-4244-2806-9
Electronic_ISBN :
978-1-4244-2806-9
DOI :
10.1109/ICIINFS.2008.4798392