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Research on the control of the suspension stiffness for the beams in Gantry Machining Center

机译:龙门加工中心梁悬架刚度控制研究

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The requirement of the stiffness of the magnetic suspension beams in Large Gantry Machining Center is different from that of the magnetic suspension trains and other magnetic suspension devices. According to its characteristics, a kind of suspension technology, which combines the permanent magnet and the electromagnetism together, is presented and could obviously reduce power consumption. In order to solve the impact of the change of current in magnet coils on the overall stiffness, a double closed loop control system, which introduces a current loop into the position loop for forming a position and current double closed loop control system, is adopted. According to the process characteristics of the machine tool and the choice of parameters in the controller as the fuzzy control rules, a genetic algorithm (GA) fuzzy PID controller to meet the requirement of suspended beams on the machine tool is designed. The simulation results show that the fuzzy PID controller using the GA can increase the stiffness of the suspension system to meet the precision requirement of the magnetic suspension beams system on the machine tool. The optimization effect of the GA is very outstanding, which makes the choice of every parameter in fuzzy PID controller more comprehensive and scientific.
机译:大龙门加工中心中的磁悬浮梁的刚度的要求与磁悬浮列车和其他磁悬浮装置的刚度不同。根据其特性,提出了一种将永磁体和电磁在一起结合在一起的悬架技术,并显然可以降低功耗。为了解决磁体线圈中电流变化对整体刚度的影响,采用了一种双闭环控制系统,该控制系统将电流回路引入用于形成位置和电流双闭环控制系统的位置环。根据机床的工艺特性和控制器中的参数选择作为模糊控制规则,设计了一种遗传算法(GA)模糊PID控制器,以满足机床上的悬浮梁的要求。仿真结果表明,使用GA的模糊PID控制器可以增加悬架系统的刚度,以满足机床上磁悬浮梁系统的精确要求。 GA的优化效果非常出色,这使得模糊PID控制器中的每个参数的选择更全面和科学。

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