DocumentCode :
3585982
Title :
Steam temperature control of hydro-diffusion essential oil extraction system using hybrid-fuzzy plus PID controller
Author :
Yusoff, Zakiah Mohd ; Muhammad, Zuraida ; Taib, Mohd Nasir ; Rahiman, Mohd Hezri Fazalul
Author_Institution :
Fac. of Electr. Eng., UiTM Shah Alam, Shah Alam, Malaysia
fYear :
2014
Firstpage :
105
Lastpage :
110
Abstract :
In extracting the essential oils, some of the influential factors need to be considered which can affect the yield and quality of the oils. Many studies have performed on several influential parameters and dictated that the temperature of extraction plays an important parameter that can give large effect on yield and quality. In order to regulate the temperature, a suitable controller is required. However, until now, very little publications stress on the control development of essential oil extraction system. This work proposed the simulation comparative studies on control performance of hybrid fuzzy plus PID controller using 3, 5 and 7 membership functions to regulate the steam temperature of hydro-diffusion essential oil extraction system. The ARX model was used to represent the system dynamic. The effectiveness of the proposed controller was tested via robustness test. Based on the simulated outcomes, the step responses analysis shows that the controllers performed very well. From the set point tracking test, the developed controllers were able to track the changes of set point whether in small or large set point change. There were also true for load disturbance tests.
Keywords :
chemical industry; continuous systems; discrete systems; essential oils; fuzzy control; stability; steam; step response; temperature control; three-term control; ARX model; hybrid-fuzzy plus PID controller; hydrodiffusion essential oil extraction system; load disturbance tests; membership functions; robustness test; set point tracking test; steam temperature control; step response analysis; Conferences; Fuzzy logic; Process control; Robustness; Temperature; Temperature control; Steam temperature; hybrid fuzzy plus PID controller; robustness test;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Systems, Process and Control (ICSPC), 2014 IEEE Conference on
Print_ISBN :
978-1-4799-6105-4
Type :
conf
DOI :
10.1109/SPC.2014.7086239
Filename :
7086239
Link To Document :
بازگشت