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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Modeling the Magnetic Performance of a Fast Pneumatic Brake Actuator
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Modeling the Magnetic Performance of a Fast Pneumatic Brake Actuator

机译:对快速气动制动执行器的磁性能建模

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摘要

A novel pneumatic valve was constructed to improve the response of air-actuated brakes for heavy vehicles to demand pressures generated during electronically controlled braking by an order of magnitude. Investigations were made into the interactions between the magnetic, mechanical, and electrical subsystems of the valve with a view toward informing design optimization. The valve was modeled using a magnetic circuit approach. The quasi-static model included the influences of the permanent magnet, field-line fringing, saturation, and the coil. Mechanical forces outputted by the model matched physical measurements with an error smaller than 10%, and magnetic fluxes throughout the circuit were generally within 20% of those found from experiments based on Faraday's law of induction, Gaussmeter measurements, and FEA simulations. A magneto-mechanical simulation of the valve switching states was created using mechanical and electrical equations, and curve-fits to the outputs of the magnetic circuit model. The simulation produced time histories of the valve's armature position that matched experimental measurements and adequately predicted working pressures. The final model required an approximation to the influence of the coil based on experimental results. Consequently, further research is recommended into the influence of solenoid coils on fringing in magnetic circuits.
机译:构造了一种新颖的气动阀,以将重型车辆的气动制动器对电子控制制动期间产生的要求压力的响应提高一个数量级。对阀门的电磁,机械和电气子系统之间的相互作用进行了研究,以期为优化设计提供信息。使用磁路方法对阀门进行建模。准静态模型包括永磁体,磁场线边缘,饱和度和线圈的影响。该模型输出的机械力与物理测量值相匹配,误差小于10%,并且整个电路的磁通量通常在基于法拉第感应定律,高斯计测量和FEA模拟的实验中找到的20%以内。使用机械方程和电气方程创建了阀开关状态的磁机械模拟,并且对磁路模型的输出进行了曲线拟合。仿真产生了阀门电枢位置的时间历史记录,该历史记录与实验测量值相匹配,并充分预测了工作压力。最终模型需要根据实验结果近似估算线圈的影响。因此,建议进一步研究电磁线圈对磁路边缘的影响。

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