Sensitivity Analysis Using a Symbolic Computation Technique and Optimal Design of Suspension Hard Points

기호계산을 이용한 현가장치의 민감도 해석 및 설계점의 최적 설계

  • 전형호 (강원대학교 기계공학과 대학원) ;
  • 탁태오 (강원대학교 기계공학과)
  • Published : 1999.04.01

Abstract

A general procedure for determining the optimum location of suspension hard points with respect to kinematic design parametes is presented. Suspensions are modeled as connection of rigid bodies by ideal kinematic joints. Constraint equations of the kinematic joints are expressed in terms of the generalized coordinates and hard points. By directly differentiating the constraint equations with respect to the hard points, kinematic sencitivity equations are obtained. In order to cope with algebraic complexity associated with the differentiation process, a symbolic computation technique is used. A performance index is defined in terms of static design parameters such as camber, caster, toe, ect.. Gradient of the performance index can be analytically computed from the kinematic sensitivity equations. Optimization results show the effectiveness and validity of the procedure, which is applicable to any type of suspension if its kinematic configurations are given.

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