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首页> 外文期刊>IEEE Transactions on Industry Applications >Rapid computer-aided design method for fast-acting solenoid actuators
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Rapid computer-aided design method for fast-acting solenoid actuators

机译:快速作用的电磁执行器的快速计算机辅助设计方法

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This paper describes a general method for preliminary design of fast-acting solenoid actuators. Moving armature, drive circuit, and nonlinearities are modeled, as well as eddy currents for solid iron devices. The electromagnetic model is obtained by computing two magnetization characteristics corresponding to the extreme positions of the armature and a novel interpolation function for the intermediate positions. This function, characterizing the magnetic configuration of the actuator, is computed analytically and leads also to an analytical formulation of the magnetic force. In order to achieve extremely fast computation, eddy currents are modeled through a new type of electric equivalent network, derived directly from Maxwell's equations and taking into account the actual BH nonlinearities, moving armature, and device geometry. The method is demonstrated on a pot-core solenoid actuator and compares favorably with finite-element results and measurements.
机译:本文介绍了一种快速设计螺线管执行器的初步设计的通用方法。对移动电枢,驱动电路和非线性以及固体铁装置的涡流进行了建模。通过计算与电枢的极限位置相对应的两个磁化特性以及中间位置的新颖内插函数,可以得出电磁模型。该功能表征了执行器的磁性,可以通过分析计算得出,也可以得出磁力的分析公式。为了实现极快的计算,通过一种新型的等效电网络对涡流进行建模,该电等效网络直接从麦克斯韦方程式导出,并考虑了实际的BH非线性,运动电枢和设备几何形状。该方法在锅芯螺线管执行器上进行了演示,可与有限元结果和测量结果相媲美。

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