Actuator-aware sampled-data envelope supervision for a preview active quarter-car suspension
Kang Huang, Yingjie Zha, Fang Li, Hao Sun, Jian Xu
Preview active suspension must improve ride comfort while preserving limited suspension travel. In embedded implementations, sampled road preview, zero-order hold, and actuator lag can make actuator-idealized stroke screens nonconservative. This paper shows that, for a single-input preview active quarter-car suspension, implementation-matched envelope supervision can be collapsed to a scalar online kernel: an actuator-aware sampled-data predictor generates hard-feasible command intervals, their intersection is projected against the nominal Prev-LQR command, and only local infeasibility activates a scalar soft fallback. Proposition 1 establishes the local implication used by the zero-slack screen at the sampling instants under explicitly stated tightening conditions. On the fixed 81-case