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以车轮滑移率为控制对象,分析了模糊控制的理论基础,将传统的模糊控制与经典的PID控制相结合,提出了白适应模糊PID控制算法,并进行了仿真研究. 相似文献
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车轮防抱死制动滑移模式控制律的理论研究 总被引:3,自引:0,他引:3
本文通过建立轮制动时的力学模型,运用现代控制理论中的滑移模式控制方法,对汽车防抱死制动控制律进行了理论分析与研究。 相似文献
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针对船舶受到不确定干扰的情况下不能准确、快速地跟踪期望航向的问题,设计一种基于自抗扰技术的反步非奇异终端滑模航向控制器,该控制器通过跟踪微分器对期望航向及其微分进行精确提取,通过线性扩张状态观测器实时估计并补偿系统内部和外部的总扰动,引入一阶低通滤波器,有效避免传统反步法中出现的"微分膨胀"问题,利用反步非奇异终端滑模控制技术设计控制律,提高系统的响应速度、抗干扰性和控制精度,通过构造Lyapunov函数证明了系统的稳定性。Simulink仿真试验证明,控制器在不同外界条件下均可对期望航向进行准确、快速地跟踪,具有较强的鲁棒性。 相似文献
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本文介绍了滑模变结构控制理论及方法,针对汽车防抱死制动系统设计了控制器,并在Matlab/Simulinlc环境下进行了仿真分析。 相似文献
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为了提高城市轨道交通中轮轴速度传感器与加速度计组合定位的精度,提出一种基于滑模控制的改进卡尔曼滤波算法。对于组合定位来说,由于卡尔曼滤波不能很好地修正加减速过程中的空转打滑误差,考虑到滑模控制器的滑动模态与系统的参数及扰动无关,提出采用基于滑模控制的改进卡尔曼滤波来进一步降低误差。其基本思路是应用指数趋近律滑模变结构来改善里程计算值,然后再进行卡尔曼滤波。并利用仿真软件对上述过程进行验证,仿真结果表明:基于滑模控制的改进卡尔曼滤波算法,能够在一定程度上减小空转打滑误差,进一步提高定位的精度。最后通过与其他卡尔曼滤波改进算法对比,得出基于滑模控制的卡尔曼滤波方法结构更为简单,也能保证一定的精度。 相似文献
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Jong-Hwi Seo Seok-Won Kim Il-Ho Jung Tae-Won Park Jin-Yong Mok Young-Guk Kim Jang-Bom Chai 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2006,44(8):615-630
The dynamic interaction between the catenary and the pantographs of high-speed trains is a very important factor that affects the stable electric power supply. In order to design a reliable current collection system, a multibody simulation model can provide an efficient and economical method to analyze the dynamic behavior of the catenary and pantograph. In this article, a dynamic analysis method for a pantograph-catenary system for a high-speed train is presented, employing absolute nodal coordinates and rigid body reference coordinates. The highly flexible catenary is modeled using a nonlinear continuous beam element, which is based on an absolute nodal coordinate formulation. The pantograph is modeled as a rigid multibody system. The analysis results are compared with experimental data obtained from a running high-speed train. In addition, using a derived system equation of motion, the calculation method for the dynamic stress in the catenary conductor is presented. This study may have significance in providing an example that a structural and multibody dynamics model can be unified into one numerical system. 相似文献
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Shuqi Song Peng Han Dong Zou 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2018,56(1):113-127
The rail is modelled as a simply supported beam in the vehicle–track coupled dynamics. The beam is formulated by a partial differential equation that is transformed into an ordinary differential equation by the method of mode superposition for numerical calculation. However, the size of the matrix that is formed by the mode-superposition method increases significantly with track length, which limits the calculation efficiency. Some methods have been developed to solve this calculation issue, but they diminish the merits of the vehicle–track coupled dynamics, which would systematically investigate the dynamics of a vehicle and a track from the entire vehicle–track system. A new method is developed to resolve this contradiction. First, a theory based on a sliding window is established to improve the computational stability with respect to the length and the window-movement ratio. Then, two methods, namely finite element method analysis and an analytical solution, are used to verify the accuracy of the new method, which is highly efficient when used in a vertical half-vehicle–track coupled model to calculate the vehicle response when the vehicle moves on a long track. The results of the vehicle response calculated with and without the sliding window show good consistency. 相似文献