一个简单的基于微控制器的差分电感传感器数字化仪

Nandagopal Ramadoss, B. George
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引用次数: 25

摘要

本文提出了一种适用于差分可变电感/磁阻传感器的简易数字化仪。该方案使用两个数字I/O引脚,一个计数器和一个微控制器的比较器,并获得与测量成正比的数字输出,该数字输出使用具有线性或反向传输特性的微分变量电感/磁阻传感器进行检测。该方案在计算中使用比率-度量方法,因此输出对激励电压、参考电压、比较器偏移等参数的变化不太敏感。所提出的系统的原型已经建立并使用标准可变电感器进行测试,该电感器模拟了具有逆特性的差分电感传感器。记录的输出在整个范围内呈线性,记录的最坏情况误差小于0.3%。对于所开发的原型机,完成一次测量所需的时间为200 μs。数字化样机已与市售LVDT接口并进行了测试。本试验观察到的最坏情况误差为0.77%。此外,同样的数字化仪已被用于从基于差分可变磁阻的位移传感器获得数字读数。最坏情况误差小于0.83%。试验结果表明,该方案简单、经济、有效。
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A simple microcontroller based digitizer for differential inductive sensors
This paper presents a simple digitizer suitable for differential variable inductive/reluctance sensors. The proposed scheme uses two digital I/O pins, a counter and a comparator of a microcontroller and obtains a digital output directly proportional to the measurand which is sensed using a differential variable inductive/reluctance sensor possessing either a linear or an inverse transfer characteristic. The scheme uses a ratio-metric approach in the computation and hence the output is less sensitive to variation in the parameters such as excitation voltage, reference voltage, offset of the comparator, etc. A prototype of the proposed system has been built and tested using standard variable inductors that emulated a differential inductive sensor following an inverse characteristic. The output recorded was linear across the full range and worst-case error noted was less than 0.3 %. For the prototype developed, the time taken to complete a measurement was 200 μs. The prototype digitizer has been interfaced with a commercially available LVDT and tested. The worst-case error observed in this test was 0.77%. Also, the same digitizer has been employed to get a digital readout from a differential variable reluctance based displacement sensor. The worst-case error was less than 0.83%. The test results establish the efficacy of, the simple and cost effective, scheme developed.
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