Digital High-Resolution Torque Sensor and Signal Processing

A contactless thin-layered torque sensor with fully digital signal processing circuit is proposed in this paper. The mechanical structure of the torque sensor is an orange-slice-alike flexible body. Two links with black/white stripes are aligned beforehand as no any torque applied to the shaft. The...

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Published inIEEE sensors journal Vol. 15; no. 4; pp. 2093 - 2100
Main Authors Yeh, Chi-Ting, Tsai, Nan-Chyuan, Chiu, Hsin-Lin, Sue, Chung-Yang
Format Journal Article
LanguageEnglish
Published New York IEEE 01.04.2015
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract A contactless thin-layered torque sensor with fully digital signal processing circuit is proposed in this paper. The mechanical structure of the torque sensor is an orange-slice-alike flexible body. Two links with black/white stripes are aligned beforehand as no any torque applied to the shaft. The two links play the role of optical grating by resolution. As long as the orange-slice-alike flexible body, sandwiched by the aforesaid links, is subject to an external torque applied, a twisted angle is induced between the two thin photograting discs. Two sets of photodetector cooperate with the two discs with optical gratings to generate two pulse sequences. Therefore, a time delay between these two pulse sequences can be acquired as long as the shaft is twisted by a torque. A counter IC is employed to quantify this time delay in terms of the torque applied, and the time period in terms of rotational speed of shaft. One of the merits of the proposed torque sensor is that real-time measurement on torque applied becomes feasible even if the shaft, subject to external torque, is rotating at high speed. Other advantages of the fully digital signal processing circuit include: 1) no need to conduct analog/digital conversion and 2) free of noise, crosstalk and electromagnetic interference.
AbstractList A contactless thin-layered torque sensor with fully digital signal processing circuit is proposed in this paper. The mechanical structure of the torque sensor is an orange-slice-alike flexible body. Two links with black/white stripes are aligned beforehand as no any torque applied to the shaft. The two links play the role of optical grating by resolution. As long as the orange-slice-alike flexible body, sandwiched by the aforesaid links, is subject to an external torque applied, a twisted angle is induced between the two thin photograting discs. Two sets of photodetector cooperate with the two discs with optical gratings to generate two pulse sequences. Therefore, a time delay between these two pulse sequences can be acquired as long as the shaft is twisted by a torque. A counter IC is employed to quantify this time delay in terms of the torque applied, and the time period in terms of rotational speed of shaft. One of the merits of the proposed torque sensor is that real-time measurement on torque applied becomes feasible even if the shaft, subject to external torque, is rotating at high speed. Other advantages of the fully digital signal processing circuit include: 1) no need to conduct analog/digital conversion and 2) free of noise, crosstalk and electromagnetic interference.
Author Chi-Ting Yeh
Chung-Yang Sue
Nan-Chyuan Tsai
Hsin-Lin Chiu
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Keywords fully-digital signal processing circuit
optical grating
Torque sensor
orange-slice-alike flexible body
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Snippet A contactless thin-layered torque sensor with fully digital signal processing circuit is proposed in this paper. The mechanical structure of the torque sensor...
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SubjectTerms Detectors
Digital broadcasting
Digital signal processors
Fully-digital signal processing circuit
Mechanical sensors
Optical grating
Optical sensors
Orange-slice-alike flexible body
Radiation detectors
Sensors
Shafts
Signal processing
Torque
Torque sensor
Title Digital High-Resolution Torque Sensor and Signal Processing
URI https://ieeexplore.ieee.org/document/6942179
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Volume 15
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