Identification and self-tuning predictive control of heat exchanger

V. Bobál, M. Kubalcik, P. Dostál
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引用次数: 12

Abstract

Heat exchange belongs to the class of basic thermal processes which occur in a range of industrial technologies, particularly in the energetic, chemical, polymer and rubber industry. The process of heat exchange is often implemented by through-flow heat exchangers. It is apparent that for an exact theoretical description of dynamics of heat exchange processes it is necessary to use partial differential equations. Heat exchange is namely a process with distributed parameters. It is also necessary to take into account its nonlinear and stochastic character. In spite of these facts, most of thermal equipment is controlled by digital modifications of PID controllers at present. This paper deals with identification of a dynamic behavior of a through-flow heat exchanger and a design of an self-tuning predictive controller for its control. The designed controller was verified by a real-time control of experimental laboratory heat exchanger.
热交换器辨识与自整定预测控制
热交换属于发生在一系列工业技术中的基本热过程,特别是在能源、化学、聚合物和橡胶工业中。换热过程通常采用通流式换热器。很明显,要对热交换过程的动力学进行精确的理论描述,必须使用偏微分方程。换热是一个具有分布参数的过程。同时也要考虑到它的非线性和随机性。尽管如此,目前大多数热工设备都是通过PID控制器的数字修改来控制的。本文研究了通流换热器动态特性的辨识及自整定预测控制器的设计。通过对实验室换热器的实时控制,验证了所设计的控制器的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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