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The Design of LQG Controller for Active Suspension Based on Analytic Hierarchy Process

机译:基于层次分析法的主动悬架LQG控制器设计

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A full vehicle model with seven degrees of freedom based on active suspension control is established, and linear quadratic gaussian (LQG) is designed by applying optimal control theory. Especially, the methodology of Analytic Hierarchy Process (AHP) is used to make the selection of weighted coefficients of performance indexes, which can reduce ineffective job in contrast with experience method. From the simulation results, it is shown that ride quality of the vehicle with active suspension has been effectively improved in comparison with the vehicle of passive suspension by the methodology of AHP applying to the selection of the weights.
机译:建立了基于主动悬架控制的具有七个自由度的整车模型,并运用最优控制理论设计了线性二次高斯(LQG)。尤其是,采用层次分析法(AHP)进行绩效指标加权系数的选择,与经验方法相比,可以减少无效工作。从仿真结果可以看出,采用主动层次分析法进行权重选择,与被动悬架车辆相比,主动悬架车辆的乘坐质量得到了有效改善。

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