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Remote Servo Tuning System for Multi-Axis CNC Machine Tools Using a Virtual Machine Tool Approach

机译:使用虚拟机工具方法的多轴CNC机床远程伺服调谐系统

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Servo systems affect the performances of machining in accuracy and surface quality for high speed and precision machine tools. This study introduces an efficient servo tuning technique for Computer Numerical Control (CNC) feed drive systems using particle swarm optimization (PSO) algorithm by virtual machine tool approach. The proposed approach contained a system identification phase and a servo tuning phase based on the same bandwidth for all axes feed drive systems. The PSO algorithm was adopted to obtain the system parameters and maximize the corresponding bandwidth. An efficient two-step servo tuning method based on gain and phase margins was proposed for high speed and precision requirements. All feed drive systems controller gains were optimized simultaneously for synchronization. A remote system called Machine Dr. was established for servo tuning and monitoring. Simulation and experimental results were introduced to illustrate the effectiveness of the proposed approach.
机译:伺服系统影响高速和精密机床精度和表面质量的加工性能。本研究介绍了使用粒子群优化(PSO)算法的计算机数控(CNC)馈电驱动系统的有效伺服调谐技术,虚拟机刀具方法。所提出的方法包含系统识别阶段和基于所有轴馈送驱动系统的相同带宽的伺服调谐阶段。采用PSO算法获取系统参数并最大化相应的带宽。提出了一种高效的两步伺服调谐方法,提出了高速和精度要求的基础增益和相位利润。所有馈送驱动系统控制器增益都同时优化了同步。为伺服调谐和监控建立了一个名为机器博士的远程系统。介绍了模拟和实验结果,以说明所提出的方法的有效性。

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