Research on dual-driving synchronous control system modeling of gantry-type machine tools with traveling bridge

Yuxia Li, Wanhua Zhao, Yao Cheng, Qingyu Yang, Jun Zhang
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引用次数: 6

Abstract

Non-synchronous error widely exists in dual-driving systems due to different electromechanical characteristics of dual-axis. An synchronous control model of dual-driving system applied on the gantry-type machine tools with travelling bridge is established in this paper aiming to account for the synchronous error. The mechanical coupling of the dual-driving systems is modeled by force analysis of the crossbeam frictions of the dual axes are identified respectively, backlash model is detected separately and Acceleration/deceleration (Acc/Dec) controller model in the CNC system is also established, then a synchronous control model allowing for above four parts is deduced. Furthermore, the good agreement between the simulation outputs and the experimental results demonstrates the validity of the proposed model. It also shows that different frictions and mechanical coupling between dual-driving axes are the key factors causing the non- synchronous error.
行走桥式龙门机床双驱动同步控制系统建模研究
由于双轴的机电特性不同,双驱动系统普遍存在非同步误差。针对龙门式走桥机床的同步误差,建立了双驱动系统的同步控制模型。通过对双轴横梁摩擦力的受力分析,建立了双驱动系统的机械耦合模型,分别对双轴横梁摩擦力进行了辨识,并分别检测了间隙模型,建立了数控系统的加减速(Acc/Dec)控制器模型,推导了考虑上述四部分的同步控制模型。仿真结果与实验结果吻合较好,验证了所提模型的有效性。分析还表明,双驱动轴之间的摩擦和机械耦合是造成非同步误差的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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