大流量比例阀工作特性及控制研究的实验研究

Nilton Ramos Esteban, Abraham Caso Torres, Ronaldo Vicente Lima Aroni, José Luis Mantari Laureano, German Yuri Comina Bellido
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引用次数: 1

摘要

自我调节氧气、空气或其他气体的流量在新型高端医疗产品的设计中起着重要作用。高流量比例阀是决定其整体性能的主要组成部分,因为它们影响操作和瞬态条件。因此,重要的是通过非线性模型来控制通过比例阀的流量值,以保证精度,最重要的是一个控制模型,允许处理电磁阀的滞后效应。本文介绍了一种测试小型高流量比例阀的方法,描述了所涉及的元件的操作特性,并设计了比例阀控制研究的实验原型。实验活动的结果显示,包括使用条件,可操作性和组件的组装,特别注意电流控制器,流量传感器和模拟数字转换器。对系统进行分析和辨识,利用MATLAB和Simulink工具,利用系统输入和输出的实验数据集,通过ARX和ARMAX逼近方法,对待控对象模型进行辨识,由于存在阀滞回,得到了待控对象模型。在获得控制模型后,进行PI/PID控制器的实现,并通过实验验证了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental research of the operational characteristics and control study of a high-flow proportional valve
Self-regulated control of the flow of oxygen, air, or other gases plays an important role in the design of new high-end medical products. High-flow proportional valves are the main component in determining their overall performance as they influence operating and transient conditions. Therefore, it is important to control the value of the flow through the proportional valve by means of a non-linear model that guarantees precision and above all a control model that allows to deal with the hysteresis effects of solenoid valves. The article presents a methodology for testing a miniature high-flow proportional valve, with a description of the operational characteristics of the elements involved and design of an experimental prototype for the proportional valve control study. The results of the experimental activities are shown, both the conditions of use, operability, and assembly of the components, with special attention to the current controller, Flow Sensor and Analog Digital Converter. For the analysis and identification of the system, MATLAB and Simulink tools are used, which through the use of the ARX and ARMAX approximation methods, the model of the plant to be controlled was identified, making use of the experimental data set of both inputs and outputs of the system in question and two plant models were obtained due to the presence of valve hysteresis. Once the control models were obtained, the implementation of a PI/PID controller was carried out and the validity of the proposal was validated experimentally.
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