龙门加工中心动梁模糊PID控制器的设计与仿真

Xia Yang, Yan Zhao, Zhu Xiao, Qingding Guo
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引用次数: 2

摘要

磁悬浮系统是典型的非线性滞回系统。提出了一种将永磁体与电磁体相结合的技术,该技术具有自身的特点,能明显降低电力消耗。为解决磁体线圈内电流变化对整体刚度的影响,采用双闭环控制系统,将电流回路引入位置回路,形成位置电流双闭环控制系统。根据机床的工艺特点,设计了模糊PID控制器,以满足机床悬梁的要求。仿真结果表明,模糊PID控制器提高了悬架系统的刚度,能够满足机床磁悬浮梁系统的精度要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and simulation of fuzzy PID controller for the movable beam in gantry machining center
Magnetic suspension system is a typical non-linear hysteretic system. A kind of technology, which combines the permanent magnet and the electromagnetism, is presented for its characteristics and can obviously reduce power consumption. In order to solve the impact of the change of current in magnet coils on the overall rigidity, a double closed loop control system, which introduces the current loop into the position loop for forming a position and current double closed loop control system, is adopted. A fuzzy PID controller is designed to meet the requirement of suspended beams on the machine tool according to the process characteristics of the machine tool. Compared with the results of the simulation, it can be shown that fuzzy PID controller improves the stiffness of the suspension system which can meet the precision requirement of the magnetic suspension beams system on the machine tool.
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