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Granular Fuzzy Rule-Based Models: A Study in a Comprehensive Evaluation and Construction of Fuzzy Models

机译:基于粒度模糊规则的模型:模糊模型的综合评价与构建

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Fuzzy models are regarded as numeric constructs and as such are optimized and evaluated at the numeric level. In this study, we depart from this commonly accepted position and propose a granular evaluation of fuzzy models and present an augmentation of fuzzy models by forming information granules around numeric values of the parameters and constructions of the models. The concepts and algorithms of granular fuzzy models are discussed in the setting of Takagi–Sugeno rule-based architectures. We show how different protocols of forming and allocating information granules lead to the improvement of the granular performance of the models. Different from the standard numeric performance measure of fuzzy models coming in the form of the root mean squared error index, two performance measures are introduced that are pertinent to granular constructs, namely coverage and specificity. Furthermore, we propose a global indicator implied by these two measures, called an area under the curve, being computed for the characteristics of the granular model expressed in the coverage-specificity coordinates. A series of experimental studies is reported, which offers a comprehensive overview of the introduced performance measure criteria as well as the underlying realization of the granular fuzzy models.
机译:模糊模型被视为数字构造,因此在数字级别进行了优化和评估。在这项研究中,我们从这个公认的立场出发,提出了模糊模型的细化评估,并通过围绕参数的数值和模型构造形成信息颗粒来提出模糊模型的扩充。在基于Takagi–Sugeno规则的体系结构中讨论了颗粒状模糊模型的概念和算法。我们展示了形成和分配信息颗粒的不同协议如何导致模型的颗粒性能的改善。与采用均方根误差指数形式的模糊模型的标准数值性能度量不同,引入了两种与粒度构造相关的性能度量,即覆盖率和特异性。此外,我们提出了由这两个量度所隐含的全局指标,称为曲线下面积,是针对以覆盖范围特异性坐标表示的粒度模型的特征进行计算的。据报道,一系列实验研究对所引入的性能度量标准以及颗粒模糊模型的基础实现进行了全面概述。

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