Modeling and control of a solenoid for high-speed actuation

솔레노이드의 고속 동작을 위한 모델링 및 제어

  • Yoo, Seung-Ryeol (School of Mechanical Engineering, Korea University of Technology Education) ;
  • Shin, Dong-Hun (School of Mechanical Engineering, Korea University of Technology Education)
  • 유승열 (한국기술교육대학교 기계정보공학부) ;
  • 신동훈 (한국기술교육대학교 기계정보공학부)
  • Received : 2011.08.29
  • Accepted : 2011.11.30
  • Published : 2011.12.31

Abstract

Electronics in modern life have become more miniaturized and precise and new technology of electronic components has made these trends possible. The explosive demand of electronic components needs more high-speed and accurate performance of manufacturing processes. For high-speed actuation, solenoids, voice coil motors and piezo motors have been used. A solenoid actuator characterized by low price, available small size, and convenience is one of the main components of production equipments requiring compact and high-speed actuators. Since these actuators show millisecond order responsiveness, the improvement of 1~2msec is very important in industrial applications. In this paper, the mathematical model of the solenoid is formulated and simulated using SIMULINK$^{(R)}$. To verify the model, the responses for step input with open-loop control is obtained and compared with the simulation result. In order to improve the responsiveness, Hold voltage method is introduced and optimal value between spring constant and hold voltage is suggested.

Keywords

References

  1. 위성권, "MLCC 제품개발 동향", 세라미스트, Vol. 14-1, pp. 41-45, 2011.
  2. 한국전자공업협동조합, "이동통신 단말기 시장의 최근현황과 MLCC 및 SAW 필터 관련 부품산업", 전자공업 통권 88호 pp. 12-16, 2003.
  3. M. Taghizadeh., A. Ghaffari., F. Najafi., "Modeling and identification of a solenoid valve for PWM control applications," Comptes Rendus Mecanique, Vol.337, pp.131-140, 2009. https://doi.org/10.1016/j.crme.2009.03.009
  4. B.L. Shields., K.B. Fite., M. Goldfarb., "Design, control, and energetic characterization of a solenoidinjected monopropellant-powered actuator," IEEE/ASME Trans. Mechatronics, Vol. 11, pp. 477-487, 2006.
  5. A. Fitzgerald and et al, Electric Machinery (fourth edition), McGraw-Hill Series in Electrical Engineering.