Title :
Dynamic model and co-simulation for a planar switched reluctance direct drive system based on maxwell and simplorer
Author :
Ji-Lin Fang ; Fen Xu ; Guang-Zhong Cao ; Su-Dan Huang
Author_Institution :
Shenzhen Key Lab. of Electromagn. Control, Shenzhen Univ., Shenzhen, China
Abstract :
To solve the problem of complex designing and time consuming for the design process of the PSRM, dynamic model of the PSRM is built and co-simulation of the PSRM is performed based on Ansoft/Maxwell and Ansoft/Simplorer in this paper. Taking a new type of PSRM as the research object, the configuration, principle, and mathematical model of the PSRM are clarified. With the Maxwell, the initial value of the PSRM is calculated and the performance of the PSRM is optimized. By the built optimization model of the PSRM, static and transient analysis of the PSRM are analyzed based on Maxwell 2D. Asymmetrical half-bridge power converter circuit and control circuit are established based on the Simplorer. Connecting Maxwell and Simplorer, the dynamic model of the PSRM is constituted. Then, co-simulation of the PSRM is implemented. The simulation results show that the dynamic co-simulation model is able to regulate the phase currents distribution and output the corresponding propulsion force. The validity of the proposed dynamic model and co-simulation are verified.
Keywords :
current distribution; optimisation; power convertors; reluctance motor drives; transient analysis; Ansoft/Maxwell; Ansoft/Simplorer; Maxwell 2D; PSRM; built optimization model; control circuit; half-bridge power converter circuit; phase currents distribution; planar switched reluctance direct drive system; static analysis; transient analysis; Dynamics; Force; Integrated circuit modeling; Mathematical model; Stator windings; Switched reluctance motors; Planar switched reluctance motor; co-simulation; dynamic model;
Conference_Titel :
Information Science and Technology (ICIST), 2014 4th IEEE International Conference on
Conference_Location :
Shenzhen
DOI :
10.1109/ICIST.2014.6920523