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首页> 外文期刊>Cybernetics, IEEE Transactions on >The Design of Free Structure Granular Mappings: The Use of the Principle of Justifiable Granularity
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The Design of Free Structure Granular Mappings: The Use of the Principle of Justifiable Granularity

机译:自由结构粒度映射的设计:合理粒度原则的使用

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The study introduces a concept of mappings realized in presence of information granules and offers a design framework supporting the formation of such mappings. Information granules are conceptually meaningful entities formed on a basis of a large number of experimental inputȁ3;output numeric data available for the construction of the model. We develop a conceptually and algorithmically sound way of forming information granules. Considering the directional nature of the mapping to be formed, this directionality aspect needs to be taken into account when developing information granules. The property of directionality implies that while the information granules in the input space could be constructed with a great deal of flexibility, the information granules formed in the output space have to inherently relate to those built in the input space. The input space is granulated by running a clustering algorithm; for illustrative purposes, the focus here is on fuzzy clustering realized with the aid of the fuzzy C-means algorithm. The information granules in the output space are constructed with the aid of the principle of justifiable granularity (being one of the underlying fundamental conceptual pursuits of Granular Computing). The construct exhibits two important features. First, the constructed information granules are formed in the presence of information granules already constructed in the input space (and this realization is reflective of the direction of the mapping from the input to the output space). Second, the principle of justifiable granularity does not confine the realization of information granules to a single formalism such as fuzzy sets but helps form the granules expressed any required formalism of information granulation. The quality of the granular mapping (viz. the mapping realized for the information granules formed in the input and output spaces) is expressed in terms of the coverage criterion (articulating how well the experimental data are - ȁC;coveredȁD; by information granules produced by the granular mapping for any input experimental data). Some parametric studies are reported by quantifying the performance of the granular mapping (expressed in terms of the coverage and specificity criteria) versus the values of a certain parameters utilized in the construction of output information granules through the principle of justifiable granularity. The plots of coverageȁ3;specificity dependency help determine a knee point and reach a sound compromise between these two conflicting requirements imposed on the quality of the granular mapping. Furthermore, quantified is the quality of the mapping with regard to the number of information granules (implying a certain granularity of the mapping). A series of experiments is reported as well.
机译:该研究介绍了在存在信息颗粒的情况下实现的映射的概念,并提供了支持此类映射形成的设计框架。信息粒子是在大量实验输入ȁ3的基础上形成的具有概念意义的实体;输出可用于构建模型的数值数据。我们开发了一种形成信息颗粒的概念上和算法上合理的方法。考虑到要形成的映射的方向性,开发信息颗粒时需要考虑这个方向性。方向性的性质意味着,尽管可以很灵活地构造输入空间中的信息粒子,但在输出空间中形成的信息粒子必须与构建在输入空间中的信息粒子固有地相关。通过运行聚类算法对输入空间进行细化;出于说明目的,此处的重点是借助模糊C均值算法实现的模糊聚类。输出空间中的信息颗粒是根据合理的粒度原理(是颗粒计算的基本基本概念之一)构造的。该构建体表现出两个重要特征。首先,在已经在输入空间中构造了信息颗粒的情况下形成构造的信息颗粒(并且这种实现反映了从输入空间到输出空间的映射方向)。第二,合理粒度的原则并不将信息颗粒的实现局限于单一形式,例如模糊集,而是有助于形成表示任何信息颗粒形式的形式。粒度映射的质量(即为在输入和输出空间中形成的信息颗粒实现的映射)的质量用覆盖标准表示(说明实验数据的好坏程度-ȁC;覆盖率ȁD;由生成的信息颗粒任何输入实验数据的粒度映射)。通过量化粒度映射的性能(以覆盖率和特异性标准表示)相对于通过合理粒度原理构建输出信息颗粒时使用的某些参数的值,报告了一些参数研究。覆盖率ȁ3;特异性依赖关系图有助于确定拐点,并在对粒度映射的质量施加的这两个相互矛盾的要求之间达成合理的折衷。此外,关于信息粒度的数量,映射的质量是量化的(暗示映射的特定粒度)。还报道了一系列实验。

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