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Combined current sensor and non-invasive displacement measurement for magnetic actuators

机译:组合电流传感器和磁力执行器的非侵入性位移测量

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This study presents a novel design that combines the current sensor with a non-invasive displacement measurement that uses a single circuit for magnetic actuation systems (MAS). The combined sensor reduces the complexity obtains both displacement and dc current sensing with high resolution, fast response and minimum losses. This is achieved by adding a so-called sense inductance in series to the main actuator. The information of the dc current is obtained using a DCR current sensor and the displacement is estimated by the voltage developed across the sense inductance which is proportional to the displacement. The combined sensor has been verified experimentally on a single-axis levitator prototype of 2-2.5 mH inductance and 20 V input voltage. Results in displacement resolution of 100 mV/mm and current measurement of 160 mV/A are experimentally verified.
机译:本研究提出了一种新颖的设计,它将电流传感器与非侵入性位移测量相结合,该测量使用单个电路进行磁致动系统(MAS)。组合传感器降低了具有高分辨率,快速响应和最小损耗的位移和直流电流检测的复杂性。这是通过将串联的所谓感测电感添加到主执行器来实现。使用DCR电流传感器获得DC电流的信息,并且估计位移通过跨越与位移成比例的感应电感的电压估计。组合传感器已经在实验上进行了验证,在2-2.5 MH电感和20 V输入电压的单轴悬浮器原型上进行了验证。导致位移分辨率为100 mV / mm,电流测量为160 mV / A是通过实验验证的。

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