Academic literature on the topic 'Fuzzy totally bounded'

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Journal articles on the topic "Fuzzy totally bounded"

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Katsaras, A. K. "Totally bounded fuzzy syntopogenous structures." Fuzzy Sets and Systems 28, no. 1 (1988): 91–103. http://dx.doi.org/10.1016/0165-0114(88)90119-4.

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Jehad, R. Kider, and J. Hassan Aisha. "Fuzzy Compact Fuzzy Distance Space." Journal of Progressive Research in Mathematics 6, no. 1 (2015): 694–709. https://doi.org/10.5281/zenodo.3977863.

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In this paper we recall the definition of fuzzy distance space on a fuzzy set then we define a compact fuzzy distance space and fuzzy totally bounded after that we prove that fuzzy totally bounded fuzzy complete fuzzy distance space is fuzzy compact. Moreover we recall the definition of fuzzy continuous and uniform fuzzy continuous function to prove that fuzzy continuous function and uniform fuzzy continuous functions are equivalent on a fuzzy compact fuzzy distance spaces.
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Ertürk, Rıza, and Gökhan Yıldız. "Di-extremities and totally bounded di-uniformities." Filomat 32, no. 4 (2018): 1413–27. http://dx.doi.org/10.2298/fil1804413e.

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In our previous studies, we have defined a counterpart, called a di-extremity, to the classical notion proximity in the complement-free setting of a texture. In this article, we will investigate relationship between totally bounded di-uniformities and di-extremities. We will also characterize fuzzy proximities in the sense of Artico-Hutton as complemented di-extremities on Hutton textures.
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Sánchez, Iván. "Compactness in the endograph uniformity." Applied General Topology 25, no. 1 (2024): 199–211. http://dx.doi.org/10.4995/agt.2024.19400.

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Given a uniform space (X,U), we denote by F*(X) to the family of fuzzy sets u in (X,U) such that u is normal and upper semicontinuous. Let UE be the endograph uniformity on F*(X). In this paper, we mainly characterize totally bounded and compact substes in the uniform space (F*(X),UE).
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Sabri, Raghad Ibraham, Maiada Nazar Mohammedali, Mohammed Rasheed, and Suha Shihab. "Compactness of Soft Fuzzy Metric Space." Journal of Southwest Jiaotong University 55, no. 3 (2020). http://dx.doi.org/10.35741/issn.0258-2724.55.3.20.

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The purpose of this work is to present the concepts of a compact soft fuzzy metric space and totally fuzzy bounded space. The definition of a soft fuzzy metric space is first listed with its basic important properties. Then, the main theorems related to the compact soft fuzzy metric space and totally fuzzy bounded space concepts are proved. In particular, if is a soft fuzzy metric space with the property that is compact, then it is totally fuzzy bounded. Moreover, we prove the fact that a totally fuzzy bounded and a complete soft fuzzy metric space must be compact.
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Sabri, Raghad I., Mayada N. Mohammedali, and Fatema Ahmad Sadiq. "Some Results in Fuzzy 2- Metric Space." Journal of Al-Qadisiyah for Computer Science and Mathematics 14, no. 1 (2022). http://dx.doi.org/10.29304/jqcm.2022.14.1.890.

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The notion of fuzzy 2-metric space and its essential features are initially examined in this study. Following that, the ideas of compact fuzzy2- metric space and fuzzy totally bounded space are discussed. Furthermore, the essential theorems relating to these concepts are established. In particular, we prove that a fuzzy 2- metric space which is compact must be complete.
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Conference papers on the topic "Fuzzy totally bounded"

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Sun, Hao, Jianfeng Tao, Honggan Yu, and Chengliang Liu. "Fuzzy-Based Adaptive Model Predictive Control for Deteriorating Model Uncertainty of Hydraulic Servo Systems." In BATH/ASME 2022 Symposium on Fluid Power and Motion Control. American Society of Mechanical Engineers, 2022. http://dx.doi.org/10.1115/fpmc2022-89072.

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Abstract The deterioration of model uncertainties is an important factor restricting the control performance for hydraulic servo systems. This paper proposes a fuzzy-based adaptive model predictive control (MPC) method with a linear extended state observer (LESO) for such systems. The LESO is employed to estimate the total disturbances and other unmeasured states to predict system behavior. Based on the constructed objective function, the optimal output sequence is obtained via the receding horizon and repeating optimization. As for the output feedback MPC, the influence of key parameters on o
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Lai, J. S., and K. W. Wang. "Parametric Control of Structural Vibrations via Adaptable Stiffness Dynamic Absorbers." In ASME 1996 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 1996. http://dx.doi.org/10.1115/imece1996-0928.

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Abstract An energy-based algorithm is developed for dynamic absorbers with adaptable stiffness to suppress structural vibrations via real-time parametric control actions. A controller with multi-objective fuzzy logic is created to reduce the main structure energy while constraining the total system energy. An adaptive-passive supervisor is designed to provide guidelines for implementing the control law. It is proved that the system using this supervisor is globally stable in the sense that all signals involved are bounded. The performance of the controller is demonstrated on a beam example. It
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