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  5. Design and implementation of closed-loop PI control strategies in real-time for Linear ARMAX Models of Vapour Compression Refrigeration System using R600a Refrigerant
 
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Design and implementation of closed-loop PI control strategies in real-time for Linear ARMAX Models of Vapour Compression Refrigeration System using R600a Refrigerant

Journal
Lecture Notes in Electrical Engineering
ISSN
18761100
Date Issued
2022-01-01
Author(s)
Rajaie M.N.
Universiti Malaysia Perlis
Mohd Saifizi Saidon
Universiti Malaysia Perlis
Siti Marhainis Othman
Universiti Malaysia Perlis
Wan Azani Wan Mustafa
Universiti Malaysia Perlis
DOI
10.1007/978-981-16-8690-0_44
Handle (URI)
https://hdl.handle.net/20.500.14170/5177
Abstract
The objective of the research undertaken in this paper is to design a control strategy using a Linear Auto-Regressive Moving-Average Exogenous (ARMAX), which is a mathematical modelling method in real time, which to be implemented into the closed-loop Proportional-Integral controller. The ARMAX model is developed using SIMULINK tool from the MATLAB R2020a software. The Vapour Compression Refrigeration System consists of an evaporator, an expansion valve, a condenser and a compressor which was modified to a variable speed compressor. This modification is required due to the usage of R600a refrigerant that has thermophysical properties that can be described as with a slight change in its pressure will cause a considerable change in its temperature [1]. R600a refrigerant was chosen for this paper, despite the difficulty is due to it is more environmental-friendlier refrigerant compared to other types of refrigerant [2]. Two types of ARMAX model were designed, the first type of ARMAX model will have a polynomial order of na= 2, nb= 2, nc= 1 while the second type of ARMAX model will have a polynomial order of na= 2, nb= 2, nc= 2. Both types of controller were tested and compared the performance in terms of settling time, steady-state error, overshoot and peak-time. From the test conducted, it was found that the controller with the ARMAX model will have a polynomial order of na= 2, nb= 2, nc= 1 has a better overall performance.
Subjects
  • Auto-Regressive Movin...

  • Closed-loop Proportio...

  • R600a refrigerant

  • Vapour Compression Re...

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