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A microcontroller-based self-calibration technique for a smart capacitive angular-position sensor

机译:智能电容式角位置传感器的基于微控制器的自校准技术

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摘要

A self-calibration technique for capacitive position sensors, based on the use of a microcontroller is presented. This technique offers a good trade-off between the memory size of the microcontroller and the algorithmic complexity. The application of this technique for self-calibration of the inaccuracy caused by the geometrical errors and pattern errors in a smart capacitive angular-position sensor is discussed. This self-calibration technique doesn't need any accurate reference. Experimental results show that the self-calibration is relatively effective in reducing the influences of the geometrical errors and pattern errors of the sensor. The reduction of the inaccuracy of the smart capacitive angular-position sensor amounts to more than a factor of two.
机译:提出了一种基于微控制器的电容式位置传感器的自校准技术。该技术在微控制器的存储器大小和算法复杂度之间提供了很好的折衷方案。讨论了该技术在智能电容式角位置传感器中由几何误差和图案误差引起的不精确性的自校准中的应用。这种自校准技术不需要任何准确的参考。实验结果表明,自校准在减少传感器的几何误差和图案误差的影响方面是相对有效的。智能电容式角位置传感器的不准确度降低了两倍以上。

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