Title :
Design and development of a new electromagnetic prime mover using solenoid technology Solenoid Powered Engine mathematical derivations (inductance variation)
Author :
Bahrin, Syed Zainal Abidin Syed Kamarul ; Amirulddin, Ungku Anisa Ungku
Author_Institution :
Dept. of Electr. Power Eng., Univ. Tenaga Nasional, Kajang, Malaysia
Abstract :
The Solenoid Powered Engine (SPE) is one of the feasible alternative prime movers to replace the existing electric motors. From the machine´s design and operational perspective, this particular prime mover design holds a few advantages over the existing electric motor designs. However, SPE development is still in its infant stages and future studies and improvements are required to further refine the SPE wide potential. Therefore, the authors have developed a few equivalent circuits for the machine and applied mathematical derivation models to identify the machine´s terminal characteristic. The equivalent circuits are based on a transformer model, which is later refined into a simple and yet easier to analyse model. As a result, the authors have managed to introduce new equations to define the SPE terminal characteristic, which is similar to a DC series motor. This paper basically describes the SPE equivalent circuit, terminal characteristic and multiple solenoids implication.
Keywords :
electric machines; mathematical analysis; solenoids; DC series motor; SPE development; SPE terminal characteristic; electric motor design; electromagnetic prime mover; equivalent circuits; inductance variation; machine design; machine terminal characteristic; mathematical derivation model; multiple-solenoid implication; prime mover design; solenoid powered engine mathematical derivations; solenoid technology; transformer model; Equations; Equivalent circuits; Force; Inductance; Mathematical model; Solenoids; Torque; DC Series Motor; Electric Motor; Solenoid; Solenoid Powered Engine; Transformer Model;
Conference_Titel :
Power and Energy (PECon), 2014 IEEE International Conference on
Print_ISBN :
978-1-4799-7296-8
DOI :
10.1109/PECON.2014.7062456