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单神经元PID算法在流量比值控制中的应用
引用本文:丁芳,贾翔宇. 单神经元PID算法在流量比值控制中的应用[J]. 中国民航学院学报, 2008, 26(2): 25-28
作者姓名:丁芳  贾翔宇
作者单位:中国民航大学航空自动化学院,天津300300
摘    要:针对在PCT-2型过程控制装置进行流量比值控制时.PID(proportional integral differential controller)参数难以整定的问题,提出一种基于单神经元自适应的PID流量比值控制方法,使PID参数实现自整定。该算法利用单神经元的自学习和自适应能力、结构简单和易于计算的特点与PID算法相结合,形成了一种新型的智能PID流量比值控制方法.其可以解决传统PID调节器不易在线实时进行参数整定、难于对一些复杂过程和慢时变系统进行有效控制的不足。实验结果表明:这种控制方法不仅容易掌握、精度高,且具有一定的实用价值。

关 键 词:单神经元  流量比值控制  参数整定
文章编号:1001-5000(2008)02-0025-04
修稿时间:2007-11-23

Application of Single Neuron Algorithm for Flow-Ratio Control System
DING Fang,JIA Xiang-yu. Application of Single Neuron Algorithm for Flow-Ratio Control System[J]. Journal of Civil Aviation University of China, 2008, 26(2): 25-28
Authors:DING Fang  JIA Xiang-yu
Affiliation:(College of Aerospace Automation, CA UC , Tianjin 300300, China)
Abstract:Aiming at the problem that it is difficult to confirm the PID-parameters when we do the experiment of Flow-ratio on the process control system experimental equipment of PCT-2,this paper advances a method of PID algorithm for Flow-ratio control,which is based on the single neuron algorithm and makes the PID parameters achieve self-tuning. Single neuron algorithm has the ability of self-study and self-confirm,and It is simple and easy to compute. This paper combines the two algorithms to be a new PID control method for Flow-ratio,which can offset some shorts that PID regulator is difficult to adjust parameter on line real-timely and cannot supply effective control for some complicated process and Slow Time-variable system. Lab experimentations show that the method of intelligent control is not only simple and exactitude but also has a great practical value.
Keywords:single neuron  flow-ratio control  parameter tuning
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