DOI QR코드

DOI QR Code

A Measuring Method for Positioning Characteristics Analysis of NC Machine Controller using Dynamometer

모터 동력계를 이용한 공작기계용 NC제어기 시스템의 위치제어 특성 분석을 위한 측정 연구

  • 김형곤 (충북대학교 대학원 기계공학부) ;
  • 안동율 (충북대학교 대학원 기계공학부) ;
  • 이응석 (충북대학교 기계공학부)
  • Published : 2005.05.01

Abstract

The gains fur NC controller parameter are fixed when the controller is combined with a machine. However, the characteristics of controller could be changed as it has being used by the machine or other environmental conditions. Those result in that the tool positioning accuracy is influenced. The loading torque in servo motor influences on the tool positioning accuracy and it is controlled by the parameter gains. It is required to analyze the torque variation with angular positioning accuracy of the servo motor. This study focus on a measuring method and device for verifying angular positioning accuracy of NC servo motor. We used a high resolution An converter for acquiring analogue signal of rotary encoder in servo motor. The positional accuracy for a nominal tool path, which is generated by the combination of axial movements (X,Y,Z), is analyzed with the servo motor torque. The current variation signal is acquired at the power line using a hall sensor and converted to the loading torque of servo motor. The method of measurement and analysis proposed in this study will be used for determining the gains of parameter in NC controller. This gain tuning is also necessary when the controller is set up at a machine.

Keywords

References

  1. KSNC (Korean Standard NC) Project Report, 1998 - 2001, Ministry of Commerce, Industry and Energy
  2. Lee, Y.-H., 1998, 'Feedrate Regulation Base on Cutting Force Model in 3-Axis Millinf Prosess,' Graduate School, SNU
  3. Kim, H.-Y., 1995, 'Cutting Monitoring in Drilling Process Using Motor Current Signal,' Graduate School, PNU
  4. Kim, J.-W., 1995, 'Cutting Force Indirect Measurement in Milling Process Using Kalman Filter and Motor Feeding Current,' Graduate School, SNU
  5. Korea FANUC, 2000, FANUC Series 0-MC, 00-MC, 0-Mate MC Servo Manual