Please use this identifier to cite or link to this item: https://dspace.ctu.edu.vn/jspui/handle/123456789/68913
Title: PLC-based adaptive controller for stability tank pressure
Authors: Pham, Trong Tuong
Le, Ngoc Binh
Pham, Huy Hoang
Tran, Thi Linh Nhi
Ta, Van Phuong
Keywords: Sliding mode control (SMC)
Pressure control system
Adaptive neural controller
Radial basis function neural networks
Artificial neural networks (ANNs)
Adaptive neural networks
Issue Date: 2019
Series/Report no.: Tạp chí Khoa học Giáo dục Kỹ thuật;Số 55 .- Tr.73-79
Abstract: In recent years, the trend of applying intelligent controllers into an industrial system has been gaining more and more attention. Artificial neural networks is a must to mention when mentioning intelligent controllers. Not only for it's good performance but also for it’s wide range of application. With an adaptive controller, we can save time of recalibrating the controller when load changes. This paper confirms the practical effect of applying Artificial Neural Networks (ANNs) using Radial basis function (RBF) bases on Sliding mode control (SMC) to control nonlinear systems. The proposed algorithm is put into comparison with the super twisting 2-SMC, which was designed to reduce chattering and increase the performance of conventional SMC. The pressure system is controlled by a Programmable Logic Controller (PLC), which is the most commonly used in industry, with a view to applying intelligent controllers in industrial applications to increase quality, productivity and reduce downtime of current systems.
URI: https://dspace.ctu.edu.vn/jspui/handle/123456789/68913
ISSN: 1859-1272
Appears in Collections:Khoa học Giáo dục Kỹ thuật

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