Implementation of hardware-in-the-loop system for drum-boiler-turbine decoupled multivariable control

Mihai Iacob, G. Andreescu
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引用次数: 10

Abstract

This paper focuses on developing a hardware-in-the-loop (HIL) system for a boiler-turbine process, employing decoupled adaptive control based on gain scheduling technique. The used model is a 3×3 non-linear strongly coupled system adapted to fit a real thermal power plant of 16 MW. The main purpose of this work lies in implementing, comparing and validating the proposed HIL method over classic simulation methods applied on the present complex structure, rather than analyzing control system performance (which was studied in a previous paper). The proposed investigation contains two sections for integration: i) simulation environment for the boiler-turbine process carried out using Labview running on a PC under a general purpose operating system, and ii) control algorithms implemented on industrial real-time Siemens programmable logic controller (PLC). The control algorithms are made in two different ways: by Labview Virtual Instruments (VI) on PC, and by ladder-logic program on PLC, for comparison purpose. Data exchange between parties is provided by an OLE for process control server (OPC Server) at the software level, and by an Industrial Ethernet bus at the physical level. The synchronization between PLC and PC, which does not have a real-time operating system, was a challenge. Test results show that the proposed HIL method is validated even in these conditions.
汽包-锅炉-汽轮机解耦多变量控制的硬件在环系统实现
本文重点研究了基于增益调度技术的解耦自适应控制的锅炉-汽轮机过程半在环控制系统。所使用的模型是一个3×3非线性强耦合系统,适合于实际16mw火电厂。这项工作的主要目的是实现、比较和验证所提出的HIL方法与应用于当前复杂结构的经典仿真方法,而不是分析控制系统的性能(这在以前的论文中已经研究过)。提出的研究包含两个部分进行集成:i)在通用操作系统下使用PC上运行的Labview进行锅炉-涡轮机过程的仿真环境,以及ii)在工业实时西门子可编程逻辑控制器(PLC)上实现的控制算法。为了便于比较,采用两种不同的控制算法:在PC上使用Labview虚拟仪器(VI)和在PLC上使用梯形逻辑程序。各方之间的数据交换由软件层的过程控制服务器(OPC服务器)OLE和物理层的工业以太网总线提供。PLC和PC之间的同步是一个挑战,因为PC没有实时操作系统。实验结果表明,该方法在上述条件下是有效的。
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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