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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Adaptive observers for active automotive suspensions: theory and experiment
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Adaptive observers for active automotive suspensions: theory and experiment

机译:主动式汽车悬架的自适应观测器:理论与实验

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摘要

An adaptive observer is developed for a class of nonlinear systems. Conditions for convergence of state and parameter estimates are presented. The developed theory is used for observer-based parameter identification in the active suspension system of an automobile. A realistic model of the suspension system incorporating the dynamics of the hydraulic actuator is used. The observer is used to adapt on dry friction which is usually present in significant magnitudes in hydraulic actuators. The observer can also be used to adapt on spring stiffnesses, viscous damping and hydraulic bulk modulus. A special adaptive observer is proposed for identification of the sprung mass of the automobile. Since the sprung mass depends on the number of passengers and the load on the automobile, it needs to be regularly updated. The adaptive observers use measurements from two accelerometers and an LVDT. They yield good experimental performance when implemented on a half-car suspension test rig.
机译:针对一类非线性系统开发了一种自适应观测器。给出了状态和参数估计收敛的条件。所开发的理论用于汽车主动悬架系统中基于观测器的参数识别。使用了包含液压执行器动力学特性的悬架系统的真实模型。观察者用于适应通常在液压致动器中存在很大量的干摩擦。观察者还可用于适应弹簧刚度,粘性阻尼和液压体积模量。提出了一种特殊的自适应观测器来识别汽车的弹簧质量。由于簧载质量取决于乘客人数和汽车负载,因此需要定期更新。自适应观测器使用来自两个加速度计和一个LVDT的测量值。当在半车悬挂试验台上实施时,它们具有良好的实验性能。

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