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The design problem of a two-bag air suspension system for heavy-duty vehicles is formulated as a two-level (suspension system level and component level) optimization problem. At the suspension system level, optimal stiffness matrix of leaf spring, characteristics of damper and upper rod layout are determined by solving a multi-objective constrained optimization problem with response surface. At the component level, shape and thickness of the leaf spring are formed using cubic-spline curves to make the stiffness matrix as close to the target values cascaded from suspension system level as possible. Simulations using a vehicle model described by multi-body model and FEM of the novel leaf spring validate the suspension system thus derived.  相似文献   
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This paper proposes an advanced steering system that adaptively varies the static gain and dynamics of the steering system. The steering system gain is adjusted, depending on whether the driver is in an aggressive or leisurely driving mood. The steering system dynamics is so designed that the command mode of the steering system will be either a rate-command or an attitude-command according to the lateral control task performed by the driver. The recognition system for lateral control tasks, a lane-following or lane-change task is proposed. The findings of simulator tests indicate proposed advanced steering system would remarkably improve the vehicle handling qualities.  相似文献   
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研究了通用异步电动机传统的以模型为基础的无速度传感器磁场定向控制方法.为了使控制能力扩展到电机零速运行,提出了电机速度和定子电阻在线估算器的改进方法.该方法仅需要测量电机定子电气端,非常适合于多用途的逆变器场合.引入了转子电阻在线调整以对温度漂移进行全面补偿.通过仿真和实验验证了所提出的驱动系统性能.  相似文献   
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