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Decoupled Six-Axis Force–Moment Sensor with a Novel Strain Gauge Arrangement and Error Reduction Techniques

机译:解耦的六轴力矩传感器具有新颖的应变计布置和减少误差的技术

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摘要

In this study, a novel strain gauge arrangement and error reduction techniques were proposed to minimize crosstalk reading and simultaneously increase sensitivity on a decoupled six-axis force–moment (F/M) sensor. The calibration process that comprises the least squares method and error reduction techniques was implemented to obtain a robust decoupling matrix. A decoupling matrix is very crucial for minimizing error and crosstalk. A novel strain gauge arrangement that comprised double parallel strain gauges in the decoupled six-axis force–moment sensor was implemented to obtain high sensitivity. The experimental results revealed that the maximum calibration error, F/M sensor measurement error, and crosstalk readings were reduced to 3.91%, 1.78%, and 4.78%, respectively.
机译:在这项研究中,提出了一种新颖的应变仪布置和误差减小技术,以最小化串扰读数并同时提高解耦的六轴力矩(F / M)传感器的灵敏度。实施包括最小二乘法和误差减少技术的校准过程,以获得鲁棒的去耦矩阵。去耦矩阵对于最小化误差和串扰至关重要。实现了一种新颖的应变仪装置,该装置在去耦的六轴力矩传感器中包括双平行应变仪,以实现高灵敏度。实验结果表明,最大校准误差,F / M传感器测量误差和串扰读数分别降低至3.91%,1.78%和4.78%。

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