journal article Open Access Mar 01, 2022

A new artificial ecosystem-based optimization integrated with Nelder-Mead method for PID controller design of buck converter

Alexandria Engineering Journal Vol. 61 No. 3 pp. 2030-2044 · Elsevier BV
View at Publisher Save 10.1016/j.aej.2021.07.037
Topics

No keywords indexed for this article. Browse by subject →

References
38
[1]
Li "Influence of non-ideal factors on the boundary control of buck converters with curved switching surfaces" IEEE Access (2019) 10.1109/access.2019.2912449
[2]
R. Sheehan, L. Diana, Switch-mode power converter compensation made easy, in: Texas Instruments Power Supply Des. Semin., Texas Instruments, 2016. https://www.ti.com/seclit/ml/slup340/slup340.pdf.
[3]
Soriano-Sánchez "Fractional-order approximation and synthesis of a PID controller for a buck converter" Energies (2020) 10.3390/en13030629
[4]
Kapat "A tutorial and review discussion of modulation, control and tuning of high-performance DC-DC converters based on small-signal and large-signal approaches" IEEE Open J. Power Electron. (2020) 10.1109/ojpel.2020.3018311
[5]
Leng "Improved small-signal model for switching converter with ripple-based control" IEEE Trans. Ind. Electron. (2021) 10.1109/tie.2020.2965478
[6]
Bozorgi "Controller design using ant colony algorithm for a non-inverting buck-boost chopper based on a detailed average model" Electr. Power Components Syst. (2015) 10.1080/15325008.2014.975385
[7]
M. Mini, L.P. Suresh, Comparative Evaluation of Bio-inspired Controller for a Buck-Boost Converter, Aust. J. Basic Appl. Sci. 9 (2015) 361–366. http://www.ajbasweb.com/old/ajbas/2015/Special ICSCS/361-366.pdf.
[8]
Tulay "Optimal tuning of a boost PFC converter PI controller using heuristic optimization methods" Int. Trans. Electr. Energy Syst. (2017) 10.1002/etep.2458
[9]
Banerjee "An Improved Interleaved Boost Converter with PSO-Based Optimal Type-III Controller" IEEE J. Emerg. Sel. Top. Power Electron. (2017) 10.1109/jestpe.2016.2608504
[10]
Hekimoglu "Optimally designed PID controller for a DC-DC buck converter via a hybrid whale optimization algorithm with simulated annealing" Electrica (2020) 10.5152/electrica.2020.19034
[11]
S. Ekinci, B. Hekimoglu, E. Eker, D. Sevim, Hybrid Firefly and Particle Swarm Optimization Algorithm for PID Controller Design of Buck Converter, in: 3rd Int. Symp. Multidiscip. Stud. Innov. Technol. ISMSIT 2019 - Proc., 2019: pp. 1–6. https://doi.org/10.1109/ISMSIT.2019.8932733. 10.1109/ismsit.2019.8932733
[12]
D. Izci, S. Ekinci, S. Orenc, A. Demiroren, Improved artificial electric field algorithm using Nelder-mead simplex method for optimization problems, in: 2020 4th Int. Symp. Multidiscip. Stud. Innov. Technol., IEEE, 2020, pp. 1–5. https://doi.org/10.1109/ISMSIT50672.2020.9255255. 10.1109/ismsit50672.2020.9255255
[13]
Zhao "Artificial ecosystem-based optimization: a novel nature-inspired meta-heuristic algorithm" Neural Comput. Appl. (2020) 10.1007/s00521-019-04452-x
[14]
Yousri "Identifying the parameters of different configurations of photovoltaic models based on recent artificial ecosystem-based optimization approach" Int. J. Energy Res. (2020) 10.1002/er.5747
[15]
S. Menesy "Effective parameter extraction of different polymer electrolyte membrane fuel cell stack models using a modified artificial ecosystem optimization algorithm" IEEE Access (2020) 10.1109/access.2020.2973351
[16]
Rizk-Allah "Artificial ecosystem optimizer for parameters identification of proton exchange membrane fuel cells model" Int. J. Hydrogen Energy (2020)
[17]
Sahlol "A novel method for detection of tuberculosis in chest radiographs using artificial ecosystem-based optimisation of deep neural network features" Symmetry (Basel). (2020) 10.3390/sym12071146
[18]
Eid "An enhanced artificial ecosystem-based optimization for optimal allocation of multiple distributed generations" IEEE Access (2020) 10.1109/access.2020.3027654
[19]
Mouassa "Novel design of artificial ecosystem optimizer for large-scale optimal reactive power dispatch problem with application to Algerian electricity grid" Neural Comput. Appl. (2021) 10.1007/s00521-020-05496-0
[20]
Sultan "An improved artificial ecosystem optimization algorithm for optimal configuration of a hybrid PV/WT/FC energy system" Alexandria Eng. J. (2021) 10.1016/j.aej.2020.10.027
[21]
A Simplex Method for Function Minimization

J. A. Nelder, R. Mead

The Computer Journal 1965 10.1093/comjnl/7.4.308
[22]
Panigrahi "Bacterial foraging optimisation: Nelder-Mead hybrid algorithm for economic load dispatch" IET Gener. Transm. Distrib. (2008) 10.1049/iet-gtd:20070422
[23]
Wang "Parameter identification of chaotic systems by hybrid Nelder-Mead simplex search and differential evolution algorithm" Expert Syst. Appl. (2011) 10.1016/j.eswa.2010.08.110
[24]
Rajan "Optimal reactive power dispatch using hybrid Nelder-Mead simplex based firefly algorithm" Int. J. Electr. Power Energy Syst. (2015) 10.1016/j.ijepes.2014.10.041
[25]
Yildiz "Optimization of thin-wall structures using hybrid gravitational search and nelder-Mead algorithm" Mater. Test. (2016) 10.3139/120.110823
[26]
Senthil Kumar "Optimizing renewable based generations in AC/DC microgrid system using hybrid Nelder-Mead – Cuckoo Search algorithm" Energy (2018) 10.1016/j.energy.2018.06.029
[27]
Xu "Parameter estimation of proton exchange membrane fuel cells using eagle strategy based on JAYA algorithm and Nelder-Mead simplex method" Energy (2019) 10.1016/j.energy.2019.02.106
[28]
Yıldız "A new hybrid Harris hawks-Nelder-Mead optimization algorithm for solving design and manufacturing problems" Mater. Test. (2019) 10.3139/120.111378
[29]
Xu "Hybrid Nelder-mead algorithm and dragonfly algorithm for function optimization and the training of a multilayer perceptron" Arab. J. Sci. Eng. (2019) 10.1007/s13369-018-3536-0
[30]
Fakhouri "Hybrid particle swarm optimization with sine cosine algorithm and Nelder-mead simplex for solving engineering design problems" Arab. J. Sci. Eng. (2020) 10.1007/s13369-019-04285-9
[31]
Convergence Properties of the Nelder--Mead Simplex Method in Low Dimensions

Jeffrey C. Lagarias, James A. Reeds, Margaret H. Wright et al.

SIAM Journal on Optimization 1998 10.1137/s1052623496303470
[32]
Smedley "Switching flow-graph nonlinear modeling technique" IEEE Trans. Power Electron. (1994) 10.1109/63.318899
[33]
Hekimoğlu "Nonlinear modeling and simulation of DC-DC buck converter using switching flow-graph method" DUMF J. Eng. (2018)
[34]
Kuo (2003)
[35]
Gaing "A particle swarm optimization approach for optimum design of PID controller in AVR system" IEEE Trans. Energy Convers. (2004) 10.1109/tec.2003.821821
[36]
B. Hekimoǧlu, S. Ekinci, S. Kaya, Optimal PID Controller Design of DC-DC Buck Converter using Whale Optimization Algorithm, in: 2018 Int. Conf. Artif. Intell. Data Process. IDAP 2018, 2019, pp. 1–6. https://doi.org/10.1109/IDAP.2018.8620833. 10.1109/idap.2018.8620833
[37]
Particle swarm optimization

J. Kennedy, R. Eberhart

Proceedings of ICNN'95 - International Conference... 10.1109/icnn.1995.488968
[38]
Differential Evolution – A Simple and Efficient Heuristic for global Optimization over Continuous Spaces

Rainer Storn, Kenneth Price

Journal of Global Optimization 1997 10.1023/a:1008202821328
Metrics
105
Citations
38
References
Details
Published
Mar 01, 2022
Vol/Issue
61(3)
Pages
2030-2044
License
View
Cite This Article
Davut Izci, Baran Hekimoğlu, Serdar Ekinci (2022). A new artificial ecosystem-based optimization integrated with Nelder-Mead method for PID controller design of buck converter. Alexandria Engineering Journal, 61(3), 2030-2044. https://doi.org/10.1016/j.aej.2021.07.037
Related

You May Also Like