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液位过程控制系统的设计与实现
引用本文:齐臣坤,李少远.液位过程控制系统的设计与实现[J].东南大学学报(自然科学版),2003,33(Z1):141-143.
作者姓名:齐臣坤  李少远
作者单位:上海交通大学自动化研究所,上海,200030
摘    要:本文设计了用于多种控制算法研究的液位实验系统,包括液位控制实验装置、通讯硬件和上层控制软件.通过液位控制实验装置回路和阀位的不同组合,能够使被控对象具有多变量、有耦合、有干扰、多种工况等各种情况.通讯硬件完成串口通讯和信号A/D,D/A功能.上层控制软件采用VC+ +编程语言,其中控制算法作为一个独立的模块,易于修改或加入各种控制算法.该系统集成度高、功能完善,界面友好.实验实例结果表明该系统是验证多种控制算法的良好实验平台.

关 键 词:液位系统  控制算法验证  ADAM模块  串口通讯
文章编号:1001-0505(2003)增刊-0141-03
修稿时间:2003年5月15日

The design and implementation of liquid level process control system
Qi Chenkun,Li Shaoyuan.The design and implementation of liquid level process control system[J].Journal of Southeast University(Natural Science Edition),2003,33(Z1):141-143.
Authors:Qi Chenkun  Li Shaoyuan
Abstract:A liquid level process control system is designed for the purpose of control algorithm research in this paper, including liquid level tank device, communication hardware and control software. By the combination of the different loops and valve position, the system is a multivariable, coupling, disturbance and multiple working condition controlled object. Communication hardware has the function of serial communication, signal A/D and D/A. Control software is programmed by VC++ , and control algorithm is an independent module, and revise and add of control algorithm is easy. The control system has high integration, perfect function and user friendly interface. The experimental results show that the system is a perfect experiment platform for control algorithm validation.
Keywords:liquid level system  control algorithm validation  ADAM module  serial communication
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