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Coil Inductance Model Based Solenoid on–off Valve Spool Displacement Sensing via Laser Calibration

机译:基于线圈电感模型的电磁阀开关通过激光校准位移感应

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摘要

Direct acting solenoid on⁻off valves are key fluid power components whose efficiency is dependent upon the state of the spool’s axial motion. By sensing the trajectory of the valve spool, more efficient control schemes can be implemented. Therefore, the goal of this study is to derive an analytical model for spool displacement sensing based on coil inductance. First, a mathematical model of the coil inductance as a function of air gap width and lumped magnetic reluctance is derived. Second, to solve the inductance from coil current, an optimization to obtain an initial value based on physical constraints is proposed. Furthermore, an experiment using a laser triangulation sensor is designed to correlate the magnetic reluctance to the air gap. Lastly, using the obtained empirical reluctance model to eliminate unknowns from the proposed air gap-inductance model, the model in atmosphere or hydraulic oil environments was tested. Initial results showed that the proposed model is capable of calculating the spool displacement based on the coil current, and the estimation errors compared to the laser measurement are within ±7% in air environment.
机译:直接作用螺线管On⁻off阀是关键的流体功率元件,其效率取决于阀芯的轴向运动的状态。通过传感阀芯的轨迹,可以实现更有效的控制方案。因此,本研究的目标是基于线圈电感导出用于卷轴位移感测的分析模型。首先,推导出作为气隙宽度和集成磁力磁阻的函数的线圈电感的数学模型。其次,为了解决线圈电流的电感,提出了基于物理约束获得初始值的优化。此外,使用激光三角测量传感器的实验旨在将磁力差距与气隙相关联。最后,使用所获得的经验磁阻模型来消除所提出的气隙电感模型的未知,测试了大气或液压油环境中的模型。初始结果表明,该模型能够基于线圈电流计算阀芯位移,与激光测量相比的估计误差在空气环境中±7%。

著录项

  • 作者

    Hao Tian; Yuren Zhao;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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