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Design and Implementation of a Stator-Free RPM Sensor Prototype Based on MEMS Accelerometers

机译:基于MEMS加速度计的无定子RPM传感器原型的设计与实现

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This paper presents the design and implementation of a prototype of a stator-free revolutions-per-minute (RPM) sensor based on two microelectromechanical-system uniaxial accelerometers. This paper first introduces the operating principle of the stator-free RPM sensor. It then discusses the associated architecture and design issues of this new sensing method. It then describes the detail of the prototype sensor hardware and software design of the common-mode rejection method and its signal processing. Experiments using the prototype sensor have been also conducted to further verify and strengthen the arguments put forward in the previous discussion. All experiments in this paper took place on a lathe machine in a laboratory. Sensor calibration under a MATLAB environment is also described. Experimental results confirm the interesting property of this sensor, namely, that it provides higher precision at higher RPM. The conclusion summarizes the design considerations, the experimental results, and the motivation in relation to future works for this stator-free RPM sensing method.
机译:本文介绍了基于两个微机电系统单轴加速度计的无定子每分钟转数(RPM)传感器的原型的设计和实现。本文首先介绍了无定子RPM传感器的工作原理。然后讨论了这种新传感方法的相关体系结构和设计问题。然后描述了共模抑制方法的原型传感器硬件和软件设计的细节及其信号处理。还使用原型传感器进行了实验,以进一步验证和加强前面讨论中提出的论点。本文中的所有实验均在实验室的车床上进行。还描述了在MATLAB环境下的传感器校准。实验结果证实了该传感器的有趣特性,即它以较高的RPM提供了更高的精度。结论总结了这种无定子RPM传感方法的设计考虑因素,实验结果以及与未来工作有关的动机。

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