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Kinematic calibration on a parallel kinematic machine tool of the Stewart platform by circular tests

机译:通过循环测试在Stewart平台的并联运动机床上进行运动学校准

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This work presents a methodology to calibrate kinematic parameters on a hexapod-type parallel kinematic machine tool of the Stewart platform. Unlike in the case of conventional serial kinematic feed drives, on parallel kinematic feed drives the tool position and orientation can be only indirectly estimated from angular position of servo motors. Therefore, for high-accuracy motion control of parallel kinematic feed drives, it is the most critical issue to calibrate kinematic parameters such as the reference length of struts and the location of base joints. This paper demonstrates a calibration method based on circular tests to measure the machine's contouring accuracy in a circular operation. To optimize the positioning accuracy of a parallel kinematic feed drive over the entire workspace, it is important to evaluate the machine's global positioning error in circular tests by using the specialized jig plate. The effectiveness of the calibration is experimentally validated on a commercial parallel kinematic machining center.
机译:这项工作提出了一种在Stewart平台的六脚架式并联运动机床上校准运动参数的方法。与传统的串联运动进给驱动器不同,在并联运动进给驱动器上,只能从伺服电机的角位置间接估计刀具的位置和方向。因此,对于并联运动进给驱动器的高精度运动控制,校准运动学参数(例如,支杆的参考长度和基础关节的位置)是最关键的问题。本文演示了一种基于圆形测试的校准方法,可以在圆形操作中测量机器的轮廓精度。为了优化并联运动进给驱动器在整个工作空间中的定位精度,重要的是,使用专用夹具板在圆形测试中评估机床的整体定位误差。在商用并联运动加工中心上通过实验验证了校准的有效性。

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