DocumentCode :
3141170
Title :
Real time PID control for hydro-diffusion steam distillation essential oil extraction system using Gradient Descent tuning method
Author :
Yusoff, Zakiah Mohd ; Muhammad, Zuraida ; Nordin, Mohd Noor Nasriq ; Rahiman, Mohd Hezri Fazalul ; Taib, Mohd Nasir
Author_Institution :
Fac. of Electr. Eng., UiTM Shah Alam, Shah Alam, Malaysia
fYear :
2012
fDate :
16-17 July 2012
Firstpage :
288
Lastpage :
293
Abstract :
This paper present the implementation of real time PID controller for hydro-diffusion steam distillation essential oil extraction system based on comparison of Gradient Descent (GD) and Ziegler Nichols (ZN) tuning methods. The first order of Auto Regressive Exogenous (ARX) model was used to describe the behavior of the temperature system and will be use in the controller design. A PID controller is expected to execute a robust response towards parameters changes and better control of steam temperature during distillation process. The system had been evaluated based on rise time, % overshoot, settling time and root mean square error (RMSE). The temperature control was achieved by controlling the voltage fed to the heater ranging from 0V to 5V via digital-to-analogue converter (DAC). Robustness test of the PID controller are based on: i) introduce disturbance and ii) set-point tracking. From the result, the performance of PID controller using GD tuning method reveals that this controller can be adapt for the system because being sensitive to parameters changes and robust as the response can compensate the load disturbance and set point change.
Keywords :
distillation; essential oils; temperature control; three-term control; voltage control; ARX model; DAC; GD tuning method; RMSE; Ziegler Nichols tuning methods; auto regressive exogenous model; controller design; digital-to-analogue converter; distillation process; gradient descent tuning method; hydro-diffusion steam distillation essential oil extraction system; load disturbance; real time PID controller; root mean square error; set-point tracking; steam temperature; temperature control; temperature system; voltage control; Mathematical model; Process control; Robustness; Temperature control; Tuning; Zinc; ARX model; Gradient descent; Ziegler Nichols; distillation process; hydro-diffusion; set-point tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control and System Graduate Research Colloquium (ICSGRC), 2012 IEEE
Conference_Location :
Shah Alam, Selangor
Print_ISBN :
978-1-4673-2035-1
Type :
conf
DOI :
10.1109/ICSGRC.2012.6287178
Filename :
6287178
Link To Document :
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