Transfer Function Derivation and LQG/LTR Speed Ratio Control for a Metal Belt CVT

금속벨트 CVT의 전달함수 도출과 변속비 LQG/LTR 제어

  • 김종준 (성균관대학교 대학원) ;
  • 송한림 (성균관대학교 대학원) ;
  • 김현수 (정회원, 성균관대학교 기계과)
  • Published : 1997.01.01

Abstract

In this paper, a transfer function was obtained for a PWM high speed solenoid valve controlled metal belt CVT system. The transfer function was defined as the ratio of speed ratio to PWM duty ratio and derived in time domain by linear regression analysis from the experimental results. The transfer function obtained showed different dynamic characteristics for the up and down shift. Also, LQG/LTR controller was designed for the CVT system using the transfer function. It is seen from the experimental results that LQG/LTR control showed good performance for the speed ratio tracking and disturbance rejection. The phase difference and relatively slow response are considered due to the inaccuracy os the transfer functions, which resulted from the inherent nonlinearities of the transmission characteristics of the metal belt CVT.

Keywords

References

  1. SAE 880481 The "ECVT" Electron Continuously Variable Transmission Y. Sakai
  2. SAE 925062 Adaptive Control System for Continuously Variable Transmission W. Seidel;J. Petersmann;U. Hickmann
  3. SAE 945028 The ZF CFT 20 E Continuosly Variable Transmission for Mid-Range Automobiles M. Boos;R. Vorndran
  4. 대한기계학회논문집 v.14 no.2 금속 V-벨트 CVT의 동력 전달과 변속비-부하토크-축력관계 김현수;김광원
  5. Mechanism and Machine Theory v.29 Analysis of Belt Behavior and Slip Characteristics for a Metal Belt CVT H. Kim;J. Lee
  6. SAE 930667 A Study of a Metal Pushing V-Belt Type CVT T. Fuiji(외 2인)
  7. Computer Controlled System, Theory and Applications G. A. Pedikaris
  8. IEEE Trnasactions on Automatic Control v.AC-32 no.2 The LQG/LTR Procedure for Multivariable Feedback Control Design G. Stein;M. Athans
  9. 선형제어시스템 공학 김종식
  10. Proceeding of CVT'96 Int. Conference Experimental Investigation of Shift Speed Characteristics of a Metal Belt CVT T. Ide(외 2인)