Research on a non-linear calibration method for dynamometer

Author:

Jun Zhang,Qingbing Chang,Zongjin Ren

Abstract

Purpose The purpose of this paper is to solve the problem that the relationship between loading forces, which were applied at different positions on a plane, and output values of load-sharing dynamometer is non-linear. Design/methodology/approach First, the analytical model of ISPM (isodynamic surface proportional mapping method) method, which is used to calibrate dynamometer, was established. Then, a series of axial force calibration tests were performed on a load-sharing dynamometer at different loading positions. Finally, according to output values, calibration forces at different loading positions were calculated by ISPM method, and corresponding distribution histogram of calibration force error was generated. Findings The largest error between calculated force and standard force is 2.92 per cent, and the probability of calculated force error within 1 per cent is 91.03 per cent, which verify that the ISPM method is reliable for non-linear calibration of dynamometers. Originality/value The proposed ISPM method can achieve non-linear calibration between measured force and output signal of load-sharing dynamometer at different positions. In addition, ISPM method can also solve some complex non-linear problems, such as prediction of plane cutting force under the influence of multiple parameters, the force measurement of multi-degree-of-freedom platform and so on.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering

Reference24 articles.

1. Non-linear re-calibration of force platforms;Gait & Posture,2011

2. Development and experiment evaluation of an inertial piezoelectric actuator using bending-bending hybrid modes;Sensors and Actuators A: Physical,2018

3. Optimization of facing process by indigenously developed force dynamometer;The International Journal of Advanced Manufacturing Technology,2019

4. A flexible tactile sensor calibration method based on an air-bearing six-dimensional force measurement platform;Review of Scientific Instruments,2015

5. Development and calibration of an air-floating six-axis force measurement platform using self-calibration;Review of Scientific Instruments,2016

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