Interval type-2 fuzzy aggregation operator in decision making and its application

Author:

Lathamaheswari M.,Nagarajan D.,Kavikumar J.,Broumi Said

Abstract

AbstractType-2 fuzzy sets (T2FSs) can deal with higher modeling and uncertainties which exist in the real-world application, specifically in the control systems. Particularly the climate changes are always uncertain and thus, the type-2 fuzzy controller is an effective system to handle those situations. Polyhouse is a methodology used to cultivate the plants. It breaks the seasonal hurdle of the formulation and it is also suitable for the conflictive climate conditions. Controlling and directing internal parameters of the polyhouse play an essential role in the growth of the plant. Among those, humidity is an important element when one deals with the growth of the plant in polyhouse. It affects the weather, as well as the global change of the climate and hence, the inner climate of the polyhouse will be disturbed. In this paper, operational laws for triangular interval type-2 fuzzy numbers and derived triangular interval type-2 weighted geometric (TIT2WG) operator with their desired mathematical properties using Dombi triangular norms. Also, humidity control is analyzed using interval type-2 fuzzy controller (IT2FC) with the use of derived aggregation operator which is the aim of the paper. Further stability of the system has been analyzed by applying four different defuzzification methods and the method is recommended which gives a better response.

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference55 articles.

1. Azar AT (2012) Overview of type-2 fuzzy logic systems. Int J Fuzzy SystAppl 2(4):1–28

2. Ban SG, Zanic K, Dumicic G, Raspudic E, Selak GV, Ban D (2014) Growth and yield of grafted cucumbers in soil infested with root-knot nematodes. Chil J Agric Res 74(1):29–34

3. Biglarbegian M, Melek WW, Mendel JM (2011) On the robustness of type-1 and interval type-2 fuzzy logic systems in modeling. InfSci 181(7):1325–1347

4. Bhosale S, Sonavane SS (2016) Automated monitoring and controlling of polyhouse environment. Int J Adv Res ComputEngTechnol 5(8):2333–2338

5. Castillo O, Melin P (2012) Type-2 fuzzy logic systems. In: recent advances in interval type-2 fuzzy systems spring briefs in applied sciences and technology 1. 10.1c007/978-3-642-28956-9

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