Page 96 - IJEEE-2022-Vol18-ISSUE-1
P. 96

92 |                                                            Ali & Rashid

 Chemical Engineering Research and Design, vol. 132, pp.
 616-626, 2018.
[11] Jianghua Xu and Huihe Shao, "A novel method of PID
 tuning for integrating processes," 42nd IEEE International
 Conference on Decision and Control (IEEE Cat.
 No.03CH37475), Vol.1 , pp. 139-142, 2003.
[12] Š. Bucz, and A. Kozáková, “Advanced methods of PID
 controller tuning for specified performance,” PID Control
 for Industrial Processes, pp. 73-119, 2018.
[13] S. K. Pandey, K. Veeranna, B. Kumar and K. U.
 Deshmukh, "A Robust Auto-tuning Scheme for PID
 Controllers," IECON 2020 The 46th Annual Conference of
 the IEEE Industrial Electronics Society, pp. 47-52, 2020.
[14] W. H. Al-Mutar, and T. Y. Abdalla, “Quarter car active
 suspension system control using PID controller tuned by
 PSO,” Iraqi Journal for Electrical And Electronic
 Engineering, vol. 11, no. 2, 2015.
[15] N.-S. Pai, S.-C. Chang, and C.-T. Huang, “Tuning
 PI/PID controllers for integrating processes with deadtime
 and inverse response by simple calculations,” Journal of
 Process Control, vol. 20, no. 6, pp. 726-733, 2010.
[16] F. Padula, and A. Visioli, “Tuning rules for optimal PID
 and fractional-order PID controllers,” Journal of process
 control, vol. 21, no. 1, pp. 69-81, 2011.
[17] K. Amoura, R. Mansouri, M. Bettayeb, and U. M. Al-
 Saggaf, “Closed-loop step response for tuning PID-
 fractional-order-filter controllers,” ISA transactions, vol.
 64, pp. 247-257, 2016.
[18] D. Castellanos-Cárdenas, F. Castrillón, R. E. Vásquez,
 and C. Smith, “PID tuning method based on IMC for
 inverse-response second-order plus dead time processes,”
 Processes, vol. 8, no. 9, pp. 1183, 2020.
[19] L. Wang, “Automatic tuning of PID controllers using
 frequency sampling filters,” IET Control Theory &
 Applications, vol. 11, no. 7, pp. 985-995, 2017.
[20] K. Sinthipsomboon, I. Hunsacharoonroj, J. Khedari, W.
 Pongaen, and P. Pratumsuwan, "A hybrid of fuzzy and
 fuzzy self-tuning PID controller for servo electro-hydraulic
 system." pp. 220-225.
[21] J. G. Ziegler, and N. B. Nichols, “Optimum settings for
 automatic controllers,”pp.220-222, 1993.
[22] http://www.src.gov.iq/en/about_us.
[23] K. A. McDonald and T. J. McAvoy, "Decoupling Dual
 Composition Controllers 1. Steady State Results," 1983
 American Control Conference, pp. 176-184, 1983.
[24] W. contributors. "Recursive least squares filter,"
 https://en.wikipedia.org/w/index.php?title=Recursive_least
 _squares_filter&oldid=1059014247
[25] H. H. MONSON, "9.4: Recursive Least Squares.
 Statistical Digital Signal Processing and Modelling,"
 Wiley, 1996.
[26] S. Haykin, “9. Recursive least squares adaptive filters,”
 Adaptive filter theory, pp. 436-447, 2002.
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