Title Multivariable analysis and H-infinity control of a one-stage refrigeration cycle
Authors BEJARANO PELLICER, GUILLERMO, Alfaya, Jose A. , Ortega, Manuel G. , Rubio, Francisco R.
External publication Si
Means Appl Therm Eng
Scope Article
Nature Científica
JCR Quartile 1
SJR Quartile 1
JCR Impact 3.04300
SJR Impact 1.68300
Publication date 05/12/2015
ISI 000365053200116
DOI 10.1016/j.applthermaleng.2015.09.003
Abstract In this paper the robust control of a one-stage refrigeration cycle is addressed. This is a MIMO process, where the expansion valve opening and the compressor speed are used as manipulated variables, whereas the control of both the outlet temperature of evaporator secondary flux and the superheating degree of refrigerant at evaporator outlet is intended. After the identification of the system at several operating points, a controllability analysis is carried out and a multivariable robust H-infinity controller is designed, using the S/KS/T Mixed Sensitivity Problem approach. Simulation results concerning reference tracking, coupling measurement and disturbance rejection are included, comparing the H-infinity controller to a decentralised PID one. Better closed-loop performance of the robust controller and reduced coupling between controlled variables are observed, as well as agreement with the controllability analysis conclusions regarding rise time bounds. A versatile experimental plant designed and set up by the authors is also described. As future work it is expected that identification and comparison between simulation and actual results can be achieved. (C) 2015 Elsevier Ltd. All rights reserved.
Keywords Refrigeration system; Vapour compression cycle; Controllability analysis; Robust control; S/KS/T Mixed Sensitivity Problem
Universidad Loyola members

Change your preferences Manage cookies