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Software for correcting the dynamic error of force transducers. | LitMetric

Software for correcting the dynamic error of force transducers.

Sensors (Basel)

Division of Mechanical Science and Technology, School of Science and Technology, Gunma University, 1-5-1 Tenjin-cho, Kiryu, Gunma 376-8515, Japan.

Published: July 2014

AI Article Synopsis

  • A new software has been created to correct the dynamic errors in impact force measurements from force transducers by analyzing their own output signals.
  • The software estimates the uncertainty of the measurements and displays the results, allowing for more accurate data gathering.
  • The experimental method, Levitation Mass Method, helps in determining correction parameters, and if manufacturers provide these parameters, users will benefit from improved accuracy in their measurements.

Article Abstract

Software which corrects the dynamic error of force transducers in impact force measurements using their own output signal has been developed. The software corrects the output waveform of the transducers using the output waveform itself, estimates its uncertainty and displays the results. In the experiment, the dynamic error of three transducers of the same model are evaluated using the Levitation Mass Method (LMM), in which the impact forces applied to the transducers are accurately determined as the inertial force of the moving part of the aerostatic linear bearing. The parameters for correcting the dynamic error are determined from the results of one set of impact measurements of one transducer. Then, the validity of the obtained parameters is evaluated using the results of the other sets of measurements of all the three transducers. The uncertainties in the uncorrected force and those in the corrected force are also estimated. If manufacturers determine the correction parameters for each model using the proposed method, and provide the software with the parameters corresponding to each model, then users can obtain the waveform corrected against dynamic error and its uncertainty. The present status and the future prospects of the developed software are discussed in this paper.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4168471PMC
http://dx.doi.org/10.3390/s140712093DOI Listing

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