使用基于非线性 PID 的控制方法控制太阳能炉的温度

IF 2.5 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Andrés López-Palenzuela, Manuel Berenguel, Juan D. Gil, Lidia Roca, José Luis Guzmán, José Rodríguez
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引用次数: 0

摘要

如今,有效利用可再生能源在社会和经济上都具有重要意义。本研究的重点是捕捉太阳能量,研究西班牙阿尔梅里亚太阳能平台(PSA)的 SF60 太阳能炉的建模和控制。主要目标是调节碳化硅(SiC)样品的温度曲线。为此,建立了两个主要分析阶段。第一个阶段是建立系统模型,设计并校准非线性和线性模型。下一部分是设备控制,根据线性和非线性模型制定控制策略,同时考虑响应速度、稳态规格和工艺限制。采用的主要控制方案有 PI 控制(带防倒风机制)、前馈控制和基于 PI 的反馈线性化控制,并使用不同的方法对其进行了适当的调整。这项工作的主要贡献之一是,在使用非线性模型模拟之后,在实际安装中验证了所开发的控制方案。最后,还讨论了每种控制器的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature Control in Solar Furnaces Using Nonlinear PID-based Control Approaches

Nowadays, the efficient use of renewable energies is of great importance both socially and economically. This research focusses on capturing energy from the Sun and studying the modelling and control of the SF60 solar furnace at the Plataforma Solar de Almería (PSA) in Spain. The main goal is to regulate the temperature profile of a silicon carbide (SiC) sample. To do this, two main stages of analysis are established. The first one involves modelling the system, where the nonlinear and linear models are designed and calibrated. The next part is the control of the plant, where control strategies based on both linear and nonlinear models are developed, taking into account the speed of response, steady-state specifications, and process constraints. The main control schemes applied have been PI control (with anti-windup mechanism), feedforward control, and PI-based feedback linearisation control, which have been properly tuned using different methodologies. One of the major contributions of this work has been the validation of the developed control schemes in the real installation, after simulation using the nonlinear model. Finally, the advantages and disadvantages of each controller are discussed.

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来源期刊
International Journal of Control Automation and Systems
International Journal of Control Automation and Systems 工程技术-自动化与控制系统
CiteScore
5.80
自引率
21.90%
发文量
343
审稿时长
8.7 months
期刊介绍: International Journal of Control, Automation and Systems is a joint publication of the Institute of Control, Robotics and Systems (ICROS) and the Korean Institute of Electrical Engineers (KIEE). The journal covers three closly-related research areas including control, automation, and systems. The technical areas include Control Theory Control Applications Robotics and Automation Intelligent and Information Systems The Journal addresses research areas focused on control, automation, and systems in electrical, mechanical, aerospace, chemical, and industrial engineering in order to create a strong synergy effect throughout the interdisciplinary research areas.
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