|本期目录/Table of Contents|

[1]雷晓春,杨 平.双容时滞过程的MCP-PID控制参数整定法[J].工业仪表与自动化装置,2014,(05):22-25.
 LEI Xiaochun,YANG Ping.MCP-PID control parameter setting method of two-capacity process with dead-time[J].Industrial Instrumentation & Automation,2014,(05):22-25.
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双容时滞过程的MCP-PID控制参数整定法(PDF)

《工业仪表与自动化装置》[ISSN:1000-0682/CN:61-1121/TH]

卷:
期数:
2014年05期
页码:
22-25
栏目:
出版日期:
2014-10-15

文章信息/Info

Title:
MCP-PID control parameter setting method of two-capacity process with dead-time
作者:
雷晓春杨 平
(上海电力学院 自动化工程学院,上海 200090)
Author(s):
LEI Xiaochun YANG Ping
(School of Automation Engineering, Shanghai University of Electric Power, Shanghai 200090,China)
关键词:
双容过程时滞鲁棒性控制系统参数整定
Keywords:
setting
分类号:
TP13
DOI:
-
文献标志码:
A
摘要:
针对典型的双容时滞过程,应用了新的MCP-PID控制参数整定方法。仿真试验结果表明:相比ZN-PID控制,MCP-PID控制具有超调量小、调整时间短和鲁棒性高的优势。在双容时滞过程模型拟合成单容时滞过程模型时,选用纯时滞拟合误差较大的过程模型设计MCP-PID控制器更有利于得到超调量小和鲁棒性强的控制效果。
Abstract:
The new MCP-PID control parameters setting method is applied to a typical two-capacity process with dead-time. Simulation test results show that: compared with ZN-PID control, MCP-PID control has the advantages of small overshoot, short adjusting time and high robustness. When the model of two-capacity process with dead-time is fitted into the model of one-capacity process with dead-time, using the process model of big fitting error for delay time to design the MCP - PID controller is beneficial to get the control effect of less overshoot and high robustness control.

参考文献/References:

[1] 周荣强,罗真. 双容水箱液位DMC-PID 串级控制仿真研究[J].自动化仪表,2011,32(10):63-65.
[2] 李琦,尚文斌. 改进免疫PID在双容水箱控制中的优化研究[J].计算机仿真,2013,30(10):372-376.
[3] 李平,周搏.双容水箱的神经PID控制[J].华侨大学学报:自然科学版,2012,33(6):608-612.
[4] 陈伟雄,王钦若,谢森林.ITAE在双容纯时滞系统的研究及仿真[J].微计算机信息:测控自动化,2008,24(5-1):258-260.─3c/div>
[5] 王琳,张根宝.自抗扰控制器在双容水箱中的应用[J].计算机测量与控制,2013,21(3):775-778.
[6] 杨平,余洁,孙宇贞.多容惯性标准传递函数的建立与比较[J].上海电力学院学报,2011,27(5):512-514.
[7] 杨平,陈式跃.无超调不限阶数的M 型次多容惯性标准传递函数[J].中国测试,2013,39(2):14-18.
[8] 杨平,黄伟,孙宇贞,等. PID参数整定的MCP标准传递函数法公式[J].上海电力学院学报,2014,30(1):80-84.[9] 杨平,翁思义,郭平.自动控制原理—理论篇[M].北京:中国电力出版社,2009:147-155.

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更新日期/Last Update: 1900-01-01