Operational Failure Detection Applied to Heat Exchange Systems Using State Observer Method

Q1 Mathematics
J. P. Rojas, Edwin Espinel, Eder Florez
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引用次数: 0

Abstract

The role of computational modeling is becoming predominant in the exploration and evaluation of new technologies. Numerical simulations have solved the most complex phenomena immersed in thermal sciences by the implementation of sophisticated mathematical algorithms. This study incorporates a stationary thermodynamic model in order to evaluate the main operational parameters and the overall performance of heat exchange systems based on energy and exergy viewpoints while implementing unknown inputs. Moreover, the study introduces a UIO state observer technology in order to facilitate the early prediction of failure events in heat exchange systems using a detect, isolate and identify (FDI) methodology. Therefore, the proposed model has induced different fault conditions in order to examine the overall performance while integrating error state of signals criteria from the relative difference between the real and modeled estimates. The outcomes have demonstrated a good agreement for the estimated values of the mathematical algorithm considering the imminent presence of disturbance and interference that promotes modeling error. Finally, the results have outlined that the estimations of real operation conditions are not affected by the unknown inputs.
状态观测器方法在热交换系统运行故障检测中的应用
在新技术的探索和评估中,计算建模的作用越来越重要。数值模拟通过复杂的数学算法解决了热科学中最复杂的现象。本研究结合了一个固定的热力学模型,以便在实现未知输入的情况下,基于能量和火用的观点评估换热系统的主要运行参数和整体性能。此外,该研究引入了一种UIO状态观测器技术,以便使用检测,隔离和识别(FDI)方法促进热交换系统故障事件的早期预测。因此,该模型引入了不同的故障条件,并根据实际估计和模型估计的相对差值对信号准则的误差状态进行积分,以检验系统的整体性能。结果表明,考虑到即将出现的干扰和干扰会导致建模误差,数学算法的估定值具有很好的一致性。最后,结果概述了实际运行条件的估计不受未知输入的影响。
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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来源期刊
International Review of Automatic Control
International Review of Automatic Control Engineering-Control and Systems Engineering
CiteScore
2.70
自引率
0.00%
发文量
17
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