Nonlinear Constraint Optimization Based Robust Decentralized PID Controller for a Benchmark CSTR System Using Kharitonov-Hurwitz Stability Analysis

被引:15
作者
Govind, K. R. Achu [1 ]
Mahapatra, Subhasish [1 ]
Mahapatro, Soumya Ranjan [2 ]
机构
[1] VIT AP Univ, Sch Elect Engn, Vijayawada 522237, Andhra Pradesh, India
[2] Vellore Inst Technol, Sch Elect Engn, Chennai 600127, Tamil Nadu, India
关键词
PID; CSTR; FOPDT; Decouplers; Nonlinear optimization; Model uncertainty; Robust control; STIRRED-TANK REACTOR; ADAPTIVE-CONTROL; FUZZY CONTROL; DESIGN;
D O I
10.1007/s13369-023-08076-1
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
This paper exploits the design of a decentralized proportional integral derivative (PID) controller based on nonlinear optimization for a continuously stirred tank reactor system. The basic objective is to attain the design specifications by maintaining both the temperature and concentration. The continuously stirred tank reactor is modeled to a first-order plus dead time system by designing a decoupler. The proposed PID controller is designed on the basis of fundamentals of nonlinear optimization. Further, the overshoot is bounded with constraints on the maximum closed-loop amplitude ratio. The control algorithm is designed for decoupled systems to reduce the loop interactions and attain the servo response. The robust stability is analyzed by considering multiplicative input as well as output uncertainties, while stability is verified with the Kharitonov-Hurwitz theorem. A concise comparison is made between the proposed technique with existing methods. It is envisaged that the proposed control algorithm exhibits better servo and regulatory responses compared to the existing techniques. Furthermore, the efficacious nature of the proposed control scheme is validated by considering a wide range of closed-loop amplitude ratios.
引用
收藏
页码:15377 / 15402
页数:26
相关论文
共 42 条
[11]   Tuning Generalized Predictive PI controllers for process control applications [J].
Briones, Oscar ;
Alarcon, Ruben ;
Rojas, Alejandro J. ;
Sbarbaro, Daniel .
ISA TRANSACTIONS, 2022, 119 :184-195
[12]   Nonlinear CSTR control system design using an artificial bee colony algorithm [J].
Chang, Wei-Der .
SIMULATION MODELLING PRACTICE AND THEORY, 2013, 31 :1-9
[14]   A new approach to fuzzy control using the distending function [J].
Dombi, Jozsef ;
Hussain, Abrar .
JOURNAL OF PROCESS CONTROL, 2020, 86 :16-29
[15]   On Fractional-order PID Controllers [J].
Edet, Emmanuel ;
Katebi, Reza .
IFAC PAPERSONLINE, 2018, 51 (04) :739-744
[16]   Design of multiloop PI controllers based on quadratic optimal approach [J].
Estevez-Sanchez, K. H. ;
Sampieri-Croda, A. ;
Garcia-Alvarado, M. A. ;
Ruiz-Lopez, I. I. .
ISA TRANSACTIONS, 2017, 70 :338-347
[17]   Thermodynamics and chemical systems stability: The CSTR case study revisited [J].
Favache, A. ;
Dochain, D. .
JOURNAL OF PROCESS CONTROL, 2009, 19 (03) :371-379
[18]  
Govind K.A., IN PRESS, DOI [10.1504/IJMIC.2023.10054671, DOI 10.1504/IJMIC.2023.10054671]
[19]   Frequency Domain Specifications Based Robust Decentralized PI/PID Control Algorithm for Benchmark Variable-Area Coupled Tank Systems [J].
Govind, K. R. Achu ;
Mahapatra, Subhasish .
SENSORS, 2022, 22 (23)
[20]   An analytical method for PID controller tuning with specified gain and phase margins for integral plus time delay processes [J].
Hu, Wuhua ;
Xiao, Gaoxi ;
Li, Xiumin .
ISA TRANSACTIONS, 2011, 50 (02) :268-276