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Error Assessment Model for the Inverse Kinematics Problem for Stewart Parallel Mechanisms for Accurate Aerospace Optical Linkage

机译:精确航天光学联动的Stewart并联机构逆运动学问题的误差评估模型

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In this work we develop a mathematical model to estimate the error for inverse kinematics problem for Gough-Stewart parallel mechanisms. We propose the estimation error method to include manufacture, assembly, backlash, and sensing errors. We provide the error transmission matrices for the length of each leg of the hexapod, which permits evaluation of the accuracy error in the position of each one, given a desired position and orientation of the mobile platform. We also present numerical modelling in order to estimate the accuracy of the methodology herein proposed, for specific attitude operations corresponding to performing a successful ground-LEO nanosatellite optical link. In such a case, we were able to provide the required tolerances for the actuators in order to guarantee an orientation precision requirement of the order of milliradians.
机译:在这项工作中,我们开发了一个数学模型来估计Gough-Stewart并联机构的逆运动学问题的误差。我们提出了估计误差方法,该方法包括制造,装配,间隙和检测误差。我们提供了六脚架每条腿的长度的误差传递矩阵,允许在给定所需的移动平台位置和方向的情况下评估每条腿的位置中的精度误差。我们还提出了数值模型,以便针对与执行成功的地面LEO纳米卫星光学链路相对应的特定姿态操作,估算本文提出的方法的准确性。在这种情况下,我们能够为执行器提供所需的公差,以保证对毫弧度的定位精度要求。

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