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Design and Validation of a Variable Reluctance Differential Solenoid Transducer

机译:可变磁阻差分电磁传感器的设计与验证

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This paper presents a novel variable reluctance differential solenoid transducer (VRDST) that offers improved high-speed sensing performance over linear voltage differential transformers (LVDTs) and differential variable reluctance transformers (DVRTs). The VRDST has the unique ability to measure both position and velocity simultaneously using two independent measurements. This paper investigates a basic geometry for a VRDST. The position and velocity measurement methods are derived and implemented in a Simulink simulation. The simulated VRDST model is augmented with an FEA simulation to predict the magnetic characteristics of the investigated design. The results and predictions established by the simulation and analytical models are validated experimentally with a physical prototype. The similarity between the experimental and simulated results suggest the proposed FEA and Simulink simulations can be used to accurately predict the performance of a physical VRDST. The findings from the analytical modeling, simulation study and experimental validation all unanimously prove the position measurement performs well when measuring low-speed displacements, while the integrated-velocity measurement is useful for measuring high-speed displacements. The differing frequency ranges of these two independent measurements are found to complement each other and suggest the VRDST is superior compared to DVRTs or LVDTs for applications requiring wide bandwidth position measurements.
机译:本文提出了一种新颖的可变磁阻差动螺线管换能器(VRDST),与线性电压差动变压器(LVDT)和差分可变磁阻变压器(DVRT)相比,它提供了改进的高速感测性能。 VRDST具有使用两个独立的测量值同时测量位置和速度的独特功能。本文研究了VRDST的基本几何形状。位置和速度测量方法是在Simulink仿真中得出并实现的。通过VRAST模型对仿真的VRDST模型进行增强,以预测所研究设计的磁特性。通过仿真和分析模型建立的结果和预测已通过物理原型进行了实验验证。实验结果和模拟结果之间的相似性表明,建议的FEA和Simulink模拟可用于准确预测物理VRDST的性能。分析模型,仿真研究和实验验证的结果都一致证明了位置测量在测量低速位移时表现良好,而集成速度测量对于测量高速位移非常有用。发现这两个独立测量的不同频率范围可以相互补充,这表明在需要宽带位置测量的应用中,VRDST优于DVRT或LVDT。

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