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首页> 外文期刊>Journal of biomechanical engineering. >Design and Evaluation of a New General-Purpose Device for Calibrating Instrumented Spatial Linkages
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Design and Evaluation of a New General-Purpose Device for Calibrating Instrumented Spatial Linkages

机译:一种新型通用仪器空间链接校准装置的设计与评估

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Because instrumented spatial linkages (ISLs) have been commonly used in measuring joint rotations and must be calibrated before using the device in confidence, a calibration device design and associated method for quantifying calibration device error would be useful. The objectives of the work reported by this paper were to (1) design an ISL calibration device and demonstrate the design for a specific application, (2) describe a new method for calibrating the device that minimizes measurement error, and (3) quantify measurement error of the device using the new method. Relative translations and orientations of the device were calculated via a series of transformation matrices containing inherent fixed and variable parameters. These translations and orientations were verified with a coordinate measurement machine, which served as a gold standard. Inherent fixed parameters of the device were optimized to minimize measurement error. After parameter optimization, accuracy was determined. The root mean squared error (RMSE) was 0.175 deg for. orientation and 0.587 mm for position. All RMSE values were less than 0.8% of their respective full-scale ranges. These errors are comparable to published measurement errors of ISLs for positions and lower by at least a factor of 2 for orientations. These errors are in spite of the many steps taken in design and manufacturing to achieve high accuracy. Because it is challenging to achieve the accuracy required for a custom calibration device to serve as a viable gold standard, it is important to verify that a calibration device provides sufficient precision to calibrate an ISL.
机译:因为仪器化的空间链接(ISL)已普遍用于测量关节旋转,并且必须在使用设备前先进行校准,所以校准设备的设计以及量化校准设备误差的相关方法将很有用。本文报告的工作目标是(1)设计ISL校准设备并演示针对特定应用的设计;(2)描述一种用于校准设备的新方法,该方法可将测量误差降至最低;以及(3)量化测量使用新方法的设备错误。通过一系列包含固有固定和可变参数的转换矩阵,可以计算出设备的相对平移和方向。这些平移和方向已通过坐标测量机进行了验证,该坐标测量机已成为黄金标准。优化了设备固有的固定参数,以最大程度地减少测量误差。参数优化后,确定精度。的均方根误差(RMSE)为0.175度。方向和位置0.587毫米。所有RMSE值均小于其各自满量程范围的0.8%。这些误差可与ISL公布的位置测量误差相媲美,并且方向至少可降低2倍。尽管在设计和制造过程中采取了许多步骤以实现高精度,但这些错误仍然存​​在。由于要实现定制校准设备作为可行的黄金标准所需的精度具有挑战性,因此重要的是要验证校准设备是否具有足够的精度来校准ISL。

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