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JOURNALS // Computational nanotechnology // Archive

Comp. nanotechnol., 2022 Volume 9, Issue 4, Pages 30–34 (Mi cn392)

AUTOMATION AND CONTROL OF TECHNOLOGICAL PROCESSES AND PRODUCTIONS

Dc boost converter using a fuzzy control system, simulated in Simulink

G. N. Kovalchuk, A. S. Khismatullin

Institute of Oil Refining and Petrochemistry of the Ufa State Petroleum Technological University

Abstract: Decisive for the operation of voltage, current and power converters is the choice of control method. Control of complex dynamic systems in conditions of insufficient or fuzzy information requires the involvement of non-standard approaches during the construction of the control system. There are two possible ways out of the traditional framework of linear control. The first, is to develop more accurate nonlinear models on which high-performance controller design can be based. However, when choosing this way, one has to develop very complex control algorithms, and, consequently, the controller will perform complex mathematical calculations, which can have a negative impact on the control speed and response. Another way is to use a neural network controller based on fuzzy logic. Fuzzy logic is a generalization of mathematical logic and set theory, which is a function of the object belonging to a set and can take any value in the range [0; 1], not only 0 or 1. In the case of fuzzy logic we don't need simulation, because the whole work on designing of the controller is reduced to the transformation of the rules included in the fuzzy logic into the algorithm of automatic control.

Keywords: DC boost converter, modeling, fuzzy control system, controller rules, output voltage graph.

Received: 20.10.2022
Accepted: 22.11.2022

DOI: 10.33693/2313-223X-2022-9-4-30-34



© Steklov Math. Inst. of RAS, 2024