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Design, development and performance evaluation of pressure sensor using eddy current displacement sensing coil

Gobi K. (Defence Research and Development Organisation (DRDO), Hyderabad, India)
Kannapiran B. (Department of Instrumentation and Control Engineering, Kalasalingam University, Krishnankoil, India)
Devaraj D. (Department of Electrical and Electronics Engineering, Kalasalingam University, Krishnankoil, India)
Valarmathi K. (Department of Electronics and Communication Engineering, PSR Engineering College, Virudhunagar, India)

Sensor Review

ISSN: 0260-2288

Article publication date: 8 January 2018

Issue publication date: 6 March 2018

224

Abstract

Purpose

The conventional strain gauge type pressure sensor suffers in static testing of engines due to the contact transduction method. This paper aims to focus on the concept of non-contact transduction-based pressure sensor using eddy current displacement sensing coil (ECDS) to overcome the temperature limitations of the strain gauge type pressure sensor. This paper includes the fabrication of prototypes of the proposed pressure sensor and its performance evaluation by static calibration. The fabricated pressure sensor is proposed to measure pressure in static test environment for a short period in the order of few seconds. The limitations of the fabricated pressure sensor related to temperature problems are highlighted and the suitable design changes are recommended to aid the future design.

Design/methodology/approach

The design of ECDS-based pressure sensor is aimed to provide non-contact transduction to overcome the limitations of the strain gauge type of pressure sensor. The ECDS is designed and fabricated with two configurations to measure deflection of the diaphragm corresponding to the applied pressure. The fabricated ECDS is calibrated using a standard micro meter to ensure transduction within limits. The fabricated prototypes of pressure sensors are calibrated using dead weight tester, and the calibration results are analyzed to select the best configuration. The proposed pressure sensor is tested at different temperatures, and the test results are analyzed to provide recommendations to overcome the shortcomings.

Findings

The performance of the different configurations of the pressure sensor using ECDS is evaluated using the calibration data. The analysis of the calibration results indicates that the pressure sensor using ECDS (coil-B) with the diaphragm as target is the best configuration. The accuracy of the fabricated pressure sensor with best configuration is ±2.8 per cent and the full scale (FS) output is 3.8 KHz. The designed non-contact transduction method extends the operating temperature of the pressure sensor up to 150°C with the specified accuracy for the short period.

Originality/value

Most studies of eddy current sensing coil focus on the displacement and position measurement but not on the pressure measurement. This paper is concerned with the design of the pressure sensor using ECDS to realize the non-contact transduction to overcome the limitations of strain gauge type pressure sensors and evaluation of the fabricated prototypes. It is shown that the accuracy of the proposed pressure sensor is not affected by the high temperature for the short period due to non-contact transduction using ECDS.

Keywords

Citation

K., G., B., K., D., D. and K., V. (2018), "Design, development and performance evaluation of pressure sensor using eddy current displacement sensing coil", Sensor Review, Vol. 38 No. 2, pp. 248-258. https://doi.org/10.1108/SR-07-2017-0145

Publisher

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Emerald Publishing Limited

Copyright © 2018, Emerald Publishing Limited

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