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Detection of Sensorless Position in High Pressure Hydrogen Electromagnetic Valve Based on Inductance Separation Method

机译:基于电感分离法的高压氢电磁阀无传感器位置检测

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摘要

This paper is based on theory of unilateral incentive electromagnetic system which is the basic theory of mechanical and electrical energy conversion. Using the static and dynamic calculation function in electromagnetic field finite element the calculation software ANSOFT, we put forward a method which about sensorless detection to high pressure hydrogen electromagnetic valve's mobile iron core of position, that it's based on analyzing the traditional indirect position detection method's deficiencies. It will adopt the physical field finite element analysis method to effectively separate inductance in high pressure hydrogen electromagnetic valve`s drive coil and use ANSOFT to analyze static field, and on this basis, establish mathematical model of induction inductance quantity. Using joint simulation calculation of high pressure hydrogen electromagnetic valve`s electromagnetic equation, voltage equation, motion equation and fluid simulation calculation equation to simulation research the method which use inductance separation to detect mobile core displacement. The results of the simulation research verifying that high pressure hydrogen electromagnetic valve's sensorless position detection is feasibility.
机译:本文基于单边激励电磁系统理论,它是机电能量转换的基础理论。利用电磁场有限元的静态和动态计算功能,通过软件ANSOFT,在分析传统的间接位置检测方法的不足的基础上,提出了一种针对高压氢电磁阀移动铁芯的无传感器检测方法。 。本文将采用物理场有限元分析方法,有效地分离高压氢电磁阀驱动线圈中的电感,并利用ANSOFT软件对静磁场进行分析,在此基础上建立感应电感量的数学模型。利用高压氢电磁阀的电磁方程,电压方程,运动方程和流体模拟计算方程的联合仿真计算,对利用电感分离法检测动芯位移的方法进行了仿真研究。仿真研究结果验证了高压氢电磁阀无传感器位置检测的可行性。

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