A novel sensitivity enhancement technique employing wheatstone's bridge for strain and temperature measurement
Shreem Ghosh, Aninda Mukherjee, Kunal Sahoo, Sunit Kumar Sen, Arindam Sarkar
Abstract
Shreem Ghosh, Aninda Mukherjee, Kunal Sahoo, Sunit Kumar Sen, Arindam Sarkar
Abstract
An improved sensitivity enhancement technique for strain and temperature measurement has been presented. In the present work, the conventional Wheatstone's bridge has been modified using active devices for enhancement of sensitivity by twelve times. It can also measure incremental resistance precisely and linearly. Experiments have been carried out for validation of the proposed circuit for both strain gauge and RTD and results showed that the maximum error was limited to within ± 1.5% for either case. The proposed circuit is very low cost and involves a few active components. The theory of the proposed circuit has been established and then validated with conventional half bridge circuit for both strain and temperature measurement. The experiments were conducted with strain gauge sensor for strain measurement and a Pt-100 RTD sensor for temperature measurement. The results obtained show that the output of the circuit is almost twelve times than the conventional half bridge circuit.
OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
An improved sensitivity enhancement technique for strain and temperature measurement has been presented. In the present work, the conventional Wheatstone's bridge has been modified using active devices for enhancement of sensitivity by twelve times. It can also measure incremental resistance precisely and linearly. Experiments have been carried out for validation of the proposed circuit for both strain gauge and RTD and results showed that the maximum error was limited to within ± 1.5% for either case. The proposed circuit is very low cost and involves a few active components. The theory of the proposed circuit has been established and then validated with conventional half bridge circuit for both strain and temperature measurement. The experiments were conducted with strain gauge sensor for strain measurement and a Pt-100 RTD sensor for temperature measurement. The results obtained show that the output of the circuit is almost twelve times than the conventional half bridge circuit.
Key concepts: Wheatstone bridge, Strain gauge, Bridge circuit, Sensitivity (control systems), Temperature measurement, Materials science, Strain (injury), Equivalent circuit