• Sonuç bulunamadı

[1] E. Yalçin, T. Vardar, ve M. Lüy, “PID Kontrolör ile İki Bölgeli Güç Sistemlerinde Yük Frekans Kontrolünün İncelenmesi”, Uluslararası Mühendislik Araştırma ve

Geliştirme Derg., c. 5, sayı 2, ss. 7–11, 2013.

[2] M. T. Özdemir, S. Yildiz, “Yüksek Gerilimli Doğru Akım Bağlantı Hattının Çok Bölgeli Güç Sisteminde Yük Frekans Kontrolüne Etkileri”, Güç Sistemleri Konferansı, Ankara, Türkiye, 2016, ss. 15-16.

[3] K. S. S. Ramakrishna ve T. S. Bhatti, “Sampled-data automatic load frequency control of a single area power system with multi-source power generation”,

Electrical Power Components Systems, c. 35, sayı 8, ss. 955–980, 2007.

[4] D. G. Padhan ve S. Majhi, “A new control scheme for PID load frequency controller of single-area and multi-area power systems”, ISA Transactions, c. 52, sayı 2, ss. 242–251, 2013.

[5] R. K. Cavin, M. C. Budge, ve P. Ramussen, “An Optımal Lınear Systems Approach To Load-Frequency Control”, Electrical Engineering Department Texas

A&M Univercity College Station., ss. 2472–2482, 2011.

[6] W. C. Chan ve N. N. Bengiamin, “Variable structure control of electric power generation”, IEEE Transactions on Power Apparatus and Systems, c. PAS-101, sayı 2, ss. 376–380, 1982.

[7] C. T. Pan ve C. M. Liaw, “An Adaptive Controller For Power System Load- Frequency Control”, Psychology Applied to Work: An Introduction to Industrial

and Organizational Psychology, Tenth Edition Paul, c. 53, sayı 9, ss. 1689–1699,

2012.

[8] A. Demiroren, N. S. Sengor, ve H. L. Zeynelgil, “Automatic generation control by using ANN technique”, Electrical Power Components Systems, c. 29, sayı 10, ss. 883–896, 2001.

[9] W. Tan ve Z. Xu, “Robust analysis and design of load frequency controller for power systems”, Electrical Power Systems Research, c. 79, sayı 5, ss. 846–853, 2009.

[10] W. Tan, “Unified tuning of PID load frequency controller for power systems via IMC”, IEEE Transactions on Power Systems, c. 25, sayı 1, ss. 341–350, 2010. [11] A. Karyeyen, “Çok Bölgeli Elektrik Güç Sistemlerinde Optimum Yük Frekans

Kontrolü”, Yüksek Lisans, Elektrik Elektronik Mühendisliği, Fen Bilimleri Enstitüsü, Selçuk Üniversitesi, Konya, Türkiye, 2009.

Engineering and Technology Indianapolis, c. 25, sayı 1, ss. 9–19, 2008.

[13] K. M. Passino, “Biomimicry of Bacterial Foraging for Distributed Optimization and Control”, IEEE Control Systems, c. 22, sayı 3, ss. 52–67, 2002.

[14] D. G. Mayer, B. P. Kinghorn, ve A. A. Archer, “Differential evolution - An easy and efficient evolutionary algorithm for model optimisation”, Agricultural

Systems, c. 83, sayı 3, ss. 315–328, 2005.

[15] R. Storn ve K. Price, “Differential Evolution – A Simple and Efficient Heuristic for Global Optimization over Continuous Spaces”, Journal of Global Optimization

11, ss. 341–359, 1997, doi: 10.1071/AP09004.

[16] R. Storn, (2020, 9 Mayıs), Differential Evolution Homepage [Online]. Erişim: http://www1.icsi.berkeley.edu/~storn/code.html.

[17] S. Ö. Değertekin ve M. S. Hayalioğlu, “Kafes Yapıların Öğretme-Öğrenme Esaslı Optimizasyon Yöntemiyle Boyutlandırılması”, 6. Çelik Yapılar Sempozyumu, 2015.

[18] B. M. Weedy, B. J. Cory, N. Jenkins, J. B. Ekanayake, ve G. Strbac, (2020, 9 Mayıs), Electric Power Systems - Google Kitaplar [Online]. Erişim: https://books.google.com.tr/books?hl=tr&lr=&id=JkQdhXtGBtYC&oi=fnd&pg= PP9&dq=Electric+Power+Systems&ots=qQTVch2G1I&sig=zP0w6W2lhC- afswtIYzCm47ZwqA&redir_esc=y#v=onepage&q=Electric Power Systems&f=false.

[19] A. J. Wood, B. F. Wollenberg, ve G. B. Sheblé, (2020, 9 Mayıs), Power

Generation, Operation, and Control - Google Kitaplar [Online]. Erişim:

https://books.google.com.tr/books?hl=tr&lr=&id=JDVmAgAAQBAJ&oi=fnd&p g=PA17&dq=Power+Generation+Operation+and+Control,+Second+Edition&ots =CRQ-dJf8d2&sig=3zVz

ViAreHReYKAjfe8ViBIIP4&redir_esc=y#v=onepage&q&f=false.

[20] D. Guha, P. K. Roy, ve S. Banerjee, “Application of backtracking search algorithm in load frequency control of multi-area interconnected power system”, Ain Shams

Engineering Journal, c. 9, sayı 2, ss. 257–276, 2018.

[21] R. K. Sahu, S. Panda, U. K. Rout, ve D. K. Sahoo, “Teaching learning based optimization algorithm for automatic generation control of power system using 2- DOF PID controller”, International Journal of Electrical Power and Energy

Systems, c. 77, sayı 5, ss. 287–301, 2016.

[22] O.I. Elgerd, (2020, 9 Mayıs), Electric Energy Systems Theory An Introduction

[Online], Erişim:

https://books.google.com.tr/books/about/Electric_Energy_Systems_Theory.html? id=AKTİ3UxfhlgC&redir_esc=y

Turbo Code Using a Novel Modified Symbiotic Organism Search (MSOS) Algorithm”, Wireless Personal Communications, c. 92, sayı 3, ss. 941–968, 2017. [24] E. Çelik ve N. Öztürk, “Doğru Akım Motor Sürücüleri için PI Parametrelerinin Simbiyotik Organizmalar Arama Algoritması ile Optimal Ayarı”, Bilişim

Teknolojileri Dergisi, ss. 311–318, 2017.

[25] M. Y. Cheng ve D. Prayogo, “Symbiotic Organisms Search: A new metaheuristic optimization algorithm”, Computers and Structures, c. 139, sayı 7, ss. 98–112, 2014.

[26] E. S. Ali ve S. M. Abd-Elazim, “Bacteria foraging optimization algorithm based load frequency controller for interconnected power system”, International Journal

of Electrical Power and Energy Systems, c. 33, sayı 3, ss. 633–638, 2011.

[27] S. Panda, B. Mohanty, ve P. K. Hota, “Hybrid BFOA-PSO algorithm for automatic generation control of linear and nonlinear interconnected power systems”, Applied

Soft Computing Journal, c. 13, sayı 12, ss. 4718–4730, 2013.

[28] U. K. Rout, R. K. Sahu, ve S. Panda, “Design and analysis of differential evolution algorithm based automatic generation control for interconnected power system”,

Ain Shams Engineering Journal, c. 4, sayı 3, ss. 409–421, 2013.

[29] R. K. Sahu, S. Panda, ve G. T. Chandra Sekhar, “A novel hybrid PSO-PS optimized fuzzy PI controller for AGC in multi area interconnected power systems”,

International Journal of Electrical Power and Energy Systems, c. 64, sayı 1, ss.

880–893, 2015.

[30] E. Çelik, “Improved stochastic fractal search algorithm and modified cost function for automatic generation control of interconnected electric power systems”,

Engineering Applications of Artificial Intelligence, c. 88, sayı 2, s. 103407, 2020.

[31] H. Gozde ve M. C. Taplamacioglu, “Automatic generation control application with craziness based particle swarm optimization in a thermal power system”,

International Journal of Electrical Power and Energy Systems, c. 33, sayı 1, ss. 8–

16, 2011.

[32] B. Mohanty, S. Panda, ve P. K. Hota, “Differential evolution algorithm based automatic generation control for interconnected power systems with non- linearity”, Alexandria Engineering Journal, c. 53, sayı 3, ss. 537–552, 2014. [33] S. Padhy, S. Panda, ve S. Mahapatra, “A modified GWO technique based cascade

PI-PD controller for AGC of power systems in presence of Plug in Electric Vehicles”, Engineering Science and Technology, an International Journal, c. 20, sayı 2, ss. 427–442, 2017.

[34] S. Padhy ve S. Panda, “A hybrid stochastic fractal search and pattern search technique based cascade PI-PD controller for automatic generation control of multi-source power systems in presence of plug in electric vehicles”, CAAI

[35] B. Mohanty, S. Panda, ve P. K. Hota, “Controller parameters tuning of differential evolution algorithm and its application to load frequency control of multi-source power system”, International Journal of Electrical Power and Energy Systems, c. 54, sayı 1, ss. 77–85, 2014.

[36] A. K. Barisal, “Comparative performance analysis of teaching learning based optimization for automatic load frequency control of multi-source power systems”,

International Journal of Electrical Power and Energy Systems, c. 66, sayı 3, ss.

Benzer Belgeler