首页> 外文期刊>International Journal of Automotive Technology >FUZZY ADAPTIVE SLIDING MODE CONTROLLER FOR AN AIR SPRING ACTIVE SUSPENSION
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FUZZY ADAPTIVE SLIDING MODE CONTROLLER FOR AN AIR SPRING ACTIVE SUSPENSION

机译:空气弹簧主动悬架的模糊自适应滑模控制器

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摘要

A fuzzy adaptive sliding mode controller for an air spring active suspension system is developed. Due to nonlinearity, preload-dependent spring force and parameter uncertainty in the air spring, it is difficult to control the suspension system. To achieve the desired performance, a fuzzy adaptive sliding mode controller (FASMC) is designed to improve the passenger comfort and the manipulability of the vehicle. The fuzzy adaptive system handles the nonlinearity and uncertainty of the air suspension. A normal linear suspension model with an optimal state feedback control is designed as the reference model. The simulation results show that this control scheme more effectively and robustly isolates vibrations of the vehicle body than the conventional sliding mode controller (CSMC).
机译:开发了一种用于空气弹簧主动悬架系统的模糊自适应滑模控制器。由于非线性,空气弹簧中预加载相关的弹力和参数不确定性,很难控制悬架系统。为了获得所需的性能,设计了模糊自适应滑模控制器(FASMC)以提高乘客的舒适度和车辆的可操纵性。模糊自适应系统处理空气悬架的非线性和不确定性。将具有最佳状态反馈控制的正常线性悬架模型设计为参考模型。仿真结果表明,该控制方案比传统的滑模控制器(CSMC)更有效,更鲁棒地隔离了车身的振动。

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