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首页> 外文期刊>Journal of applied mathematics >A clustering and SVM regression learning-based spatiotemporal fuzzy logic controller with interpretable structure for spatially distributed systems
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A clustering and SVM regression learning-based spatiotemporal fuzzy logic controller with interpretable structure for spatially distributed systems

机译:基于聚类和SVM回归学习的时空模糊逻辑控制器,具有可解释的空间分布系统结构

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摘要

Many industrial processes and physical systems are spatially distributed systems. Recently, a novel 3-D FLC was developed for such systems. The previous study on the 3-D FLC was concentrated on an expert knowledge-based approach. However, in most of situations, we may lack the expert knowledge, while input-output data sets hidden with effective control laws are usually available. Under such circumstance, a data-driven approach could be a very effective way to design the 3-D FLC. In this study, we aim at developing a new 3-D FLC design methodology based on clustering and support vector machine (SVM) regression. The design consists of three parts: initial rule generation, rule-base simplification, and parameter learning. Firstly, the initial rules are extracted by a nearest neighborhood clustering algorithm with Frobenius norm as a distance. Secondly, the initial rule-base is simplified by merging similar 3-D fuzzy sets and similar 3-D fuzzy rules based on similarity measure technique. Thirdly, the consequent parameters are learned by a linear SVM regression algorithm. Additionally, the universal approximation capability of the proposed 3-D fuzzy system is discussed. Finally, the control of a catalytic packed-bed reactor is taken as an application to demonstrate the effectiveness of the proposed 3-D FLC design.
机译:许多工业过程和物理系统都是空间分布的系统。最近,针对此类系统开发了新型3-D FLC。以前关于3-D FLC的研究集中在基于专家知识的方法上。但是,在大多数情况下,我们可能缺乏专家知识,而通常可以使用隐藏有有效控制律的输入输出数据集。在这种情况下,数据驱动方法可能是设计3-D FLC的非常有效的方法。在这项研究中,我们旨在基于聚类和支持向量机(SVM)回归开发一种新的3-D FLC设计方法。该设计包括三个部分:初始规则生成,规则库简化和参数学习。首先,通过以Frobenius范数为距离的最近邻聚类算法提取初始规则。其次,通过基于相似性度量技术将相似的3-D模糊集和相似的3-D模糊规则进行合并,简化了初始规则库。第三,通过线性SVM回归算法学习结果参数。此外,还讨论了所提出的3-D模糊系统的通用逼近能力。最后,将催化填充床反应器的控制作为应用来证明所提出的3-D FLC设计的有效性。

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