A study of flow-level cascade control with WirelessHARTTM transmitter using LabVIEW

Pongsakorn Somkane, V. Kongratana, S. Gulpanich, V. Tipsuwanporn, N. Wongvanich
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引用次数: 5

Abstract

This work presents a cascade control architecture to combat network induced delays in Wireless network controlled systems. Specifically a flow-level cascade control system is considered whereby the primary process variable is liquid level, and the secondary process variable is the flow rate. The flow-level process variables are measured by Wireless HART differential Pressure (DP) transmitter and sent through a WirelessHART gateway. Control actions are provided by a control valve actuator which is manipulated through a PLC. The PLC and the WirelessHART gateway are managed by an OPC server providing a medium of communication. The PID controller gains are designed through the LabView software, in which the network induced delays is offset by adjusting the controller interval until the responses are satisfactory. Results show that cascade control outperformed the single loop control, in both handling network induced delays and coping with disturbances.
基于LabVIEW的WirelessHARTTM变送器级联控制研究
本文提出了一种级联控制体系结构来对抗无线网络控制系统中网络引起的延迟。具体来说,考虑一个流量级串级控制系统,其中主要过程变量是液位,次要过程变量是流量。液位过程变量由无线HART压差(DP)变送器测量,并通过无线shart网关发送。控制动作由控制阀执行器提供,该执行器通过PLC进行操纵。PLC和WirelessHART网关由提供通信媒介的OPC服务器管理。通过LabView软件设计PID控制器增益,其中通过调整控制器间隔来抵消网络引起的延迟,直到响应令人满意。结果表明,级联控制在处理网络延迟和处理干扰方面都优于单环控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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