目的为了有效地减少因CTP制版机丝杠传动系统热膨胀所产生的制版质量问题。方法通过对CTP丝杠传动系统进行热误差实验,分析其膨胀量与丝杠温度、丝杠位置的关系,并建立补偿数学模型。结果经检验,所得模型的计算值与实际测量值偏差保持在...目的为了有效地减少因CTP制版机丝杠传动系统热膨胀所产生的制版质量问题。方法通过对CTP丝杠传动系统进行热误差实验,分析其膨胀量与丝杠温度、丝杠位置的关系,并建立补偿数学模型。结果经检验,所得模型的计算值与实际测量值偏差保持在[0.0320 mm, 0.0406 mm]区间内,基于这一结果,操作人员可以利用CTP驱动软件,应用模型的计算结果对CTP制版机进行热误差优化预设置,补偿扫描头的热误差,进而提高CTP制版质量。结论通过对CTP制版机进行热误差补偿,可以有效地减少因丝杠热膨胀导致的扫描激光头扫描位置发生变化,版材内容发生偏移、变形、套印不准等问题的发生,提高了印刷质量。展开更多
The design of servo controllers for flexible ball screw drives with matched and mismatched disturbances and uncertainties is focused to improve the tracking performance and bandwidth of ball screw drives.A two degrees...The design of servo controllers for flexible ball screw drives with matched and mismatched disturbances and uncertainties is focused to improve the tracking performance and bandwidth of ball screw drives.A two degrees of freedom mass model is established based on the axial vibration characteristics of the transport ball screw,and the controller of an adaptive integral sliding mode is proposed combining the optimal design of state feedback gain matrix K to restrain the vibration and the matched disturbances and uncertainties.Then for the counteraction of the mismatched disturbances and uncertainties,a nonlinear disturbance observer is also developed.The trajectory tracking performance experiments and bandwidth analysis were conducted on experimental setup with the proposed control method.It is proved that the adaptive integral sliding mode controller has a high tracking performance and bandwidth especially for the axial vibration characteristics model of ball screw drives.And the ball screw tracking accuracy also has a considerable improvement with the application of the proposed nonlinear disturbance observer.展开更多
文摘目的为了有效地减少因CTP制版机丝杠传动系统热膨胀所产生的制版质量问题。方法通过对CTP丝杠传动系统进行热误差实验,分析其膨胀量与丝杠温度、丝杠位置的关系,并建立补偿数学模型。结果经检验,所得模型的计算值与实际测量值偏差保持在[0.0320 mm, 0.0406 mm]区间内,基于这一结果,操作人员可以利用CTP驱动软件,应用模型的计算结果对CTP制版机进行热误差优化预设置,补偿扫描头的热误差,进而提高CTP制版质量。结论通过对CTP制版机进行热误差补偿,可以有效地减少因丝杠热膨胀导致的扫描激光头扫描位置发生变化,版材内容发生偏移、变形、套印不准等问题的发生,提高了印刷质量。
基金Project(2013ZX04008011)supported by the National Science and Technology Major Projects of ChinaProject(51675100)supported by the National Natural Science Foundation of China
文摘The design of servo controllers for flexible ball screw drives with matched and mismatched disturbances and uncertainties is focused to improve the tracking performance and bandwidth of ball screw drives.A two degrees of freedom mass model is established based on the axial vibration characteristics of the transport ball screw,and the controller of an adaptive integral sliding mode is proposed combining the optimal design of state feedback gain matrix K to restrain the vibration and the matched disturbances and uncertainties.Then for the counteraction of the mismatched disturbances and uncertainties,a nonlinear disturbance observer is also developed.The trajectory tracking performance experiments and bandwidth analysis were conducted on experimental setup with the proposed control method.It is proved that the adaptive integral sliding mode controller has a high tracking performance and bandwidth especially for the axial vibration characteristics model of ball screw drives.And the ball screw tracking accuracy also has a considerable improvement with the application of the proposed nonlinear disturbance observer.