This paper introduces a hydraulic synchronous system, which USES a new-type digital valve as synchronous controller and makes use of a fuzzy-PID control arithmetic.
介绍了一种以新型数字同步阀为同步控制元件,运用模糊pid算法进行控制的液压同步系统。
The conclusion shows that the digital PID arithmetic is flexible in control, high in precision and easy in high integration compared with analog arithmetic.
结论表明数字PID算法和模拟算法相比,具有控制灵活、精度高、易于高度集成化等优点。
In the motion of semiconducting equipment, better digital PID control parameters can improve stability and reliability of equipment. Using separate integral arithmetic can get optimal PID control.
在半导体设备运动过程中,有效的调节数字PID控制参数可以提高设备运动的稳定性和可靠性,利用积分分离的算法来实现具有最佳组合的PID控制。
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