Title :
Passivity based nonlinear suspension active control
Author :
Yue Zhu ; Sihong Zhu ; Lingfei Xiao
Author_Institution :
Coll. of Eng., Nanjing Agric. Univ., Nanjing, China
Abstract :
By taking the nonlinear stiffness characteristics of spring into consideration, a novel suspension active control algorithm is presented in this paper for a kind of suspension systems described by quarter vehicle model. On the basis of Interconnection and Damping Assignment Passivity-based Control theory, active suspension nonlinear controller is obtained and the partial differential equations has solution, for the sake of analyzing the characteristics of the suspension system and selecting appropriate desired interconnection matrix, damping matrix and energy function. The controller can be simplified by choosing suitable form of design parameters, and the number of design parameters which are required to be set, are reduced as a result. The simulations of hitting large bump and on E-level ground illustrate that the proposed active controller has good performance.
Keywords :
damping; elasticity; nonlinear control systems; partial differential equations; springs (mechanical); suspensions (mechanical components); E-level ground; active controller; active suspension nonlinear controller; damping matrix; design parameters; energy function; interconnection and damping assignment passivity-based control theory; interconnection matrix; partial differential equations; passivity based nonlinear suspension active control; quarter vehicle model; spring nonlinear stiffness characteristics; suspension active control algorithm; Acceleration; Damping; Educational institutions; Intelligent control; Springs; Suspensions; Tires; interconnection and damping assignment; nonlinear spring; passivity-based control; suspension active control;
Conference_Titel :
Intelligent Control and Automation (WCICA), 2014 11th World Congress on
DOI :
10.1109/WCICA.2014.7053370