Indonesian Journal of Electrical Engineering and Informatics (IJEEI)
Vol 12, No 3: September 2024

Design of Robust Centralized PID Optimized LQR Controller for Temperature Control in Single-Stage Refrigeration System

Ekengwu, Bonaventure Onyeka (Department of Electronic Engineering, University of Nigeria Nsukka, Nsukka, Nigeria)
Eze, Paulinus Chinaenye (Department of Electrical and Electronic Engineering, Imo State University, Owerri, Nigeria)
Muoghalu, Chidiebere Nnaedozie (Department of Electrical and Electronic Engineering, Chukwuemeka Odumegwu Ojukwu University, Uli, Nigeria)
Asiegbu, Christopher Nnaemeka (Department of Electronic Engineering, University of Nigeria Nsukka, Nsukka, Nigeria)
Achebe, Patience Nkiruka (Department of Electrical and Electronic Engineering, Chukwuemeka Odumegwu Ojukwu University, Uli, Nigeria)



Article Info

Publish Date
30 Sep 2024

Abstract

Refrigeration systems are used for many purposes such as food preservation, cooling and others. They require controller to ensure that the refrigerating cycle can go ON and OFF to maintain a setpoint temperature. For instance, in preservation of food or other perishables, deterioration can occur without efficient system to ensure that temperature within refrigerating space is kept at a setpoint value. This paper presents robust centralized proportional integral and derivative (PID) optimized linear quadratic regulator (LQR) temperature control system for single-stage refrigeration system. A composite technique in which PID algorithm was used to adjust the gains of LQR is proposed. The model of single-stage vapour compressor refrigeration (VCR) system was established in terms of the evaporator, compressor, condenser and the expansion valve’s temperatures. An LQR was initially designed. Then a PID optimized LQR was design. The results indicated that the PID optimized LQR controller outperformed the LQR by providing 73.4% and 62.7% improvement for the evaporating temperature, 45.6% and 71.4% improvement for the compression temperature, 30% and 84.6% improvement for the condensing temperature, and lastly 72% and 70.2% improvement for the expansion temperature in terms of response time and settling time. Simulation with test data proved its robustness and effectiveness in tracking setpoint temperature. Generally, the proposed system has shown capacity to offer robust and centralized tracking in the presence of changing setpoint values.  

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Journal Info

Abbrev

IJEEI

Publisher

Subject

Computer Science & IT Electrical & Electronics Engineering

Description

Indonesian Journal of Electrical Engineering and Informatics (IJEEI) is a peer reviewed International Journal in English published four issues per year (March, June, September and December). The aim of Indonesian Journal of Electrical Engineering and Informatics (IJEEI) is to publish high-quality ...