Design of cascaded controller based on coyote optimizer for load frequency control in multi-area power systems with renewable sources

Electricity generation from renewable sources is on the rise. The irregular presence of these sources increases the frequency variations induced by the load variance. The penetration of renewable energy sources increases the instability of the integrated power grid due to decreased system inertia. T...

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Veröffentlicht in:Control engineering practice Jg. 121; S. 105058
Hauptverfasser: Abou El-Ela, Adel A., El-Sehiemy, Ragab A., Shaheen, Abdullah M., Diab, Abd El-Gelil
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Elsevier Ltd 01.04.2022
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ISSN:0967-0661, 1873-6939
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Abstract Electricity generation from renewable sources is on the rise. The irregular presence of these sources increases the frequency variations induced by the load variance. The penetration of renewable energy sources increases the instability of the integrated power grid due to decreased system inertia. Therefore, this paper presents an optimal controller design of proportional-derivative with filter cascaded-proportional-integral (PDn-PI) using an innovative coyote optimization algorithm (COA). The modelling of the renewable energy sources (RESs) of photovoltaic (PV) and wind farm interconnection is considered in the load frequency control (LFC). The COA is adopted and integrated with the PI/ PID/ cascaded PDn-PI controllers for the sake of optimally tuning and specifying their gains. Furthermore, the powerful performance of the proposed COA-tuned PDn-PI controller is validated, under all cases studied, not only over PI and PID controllers but also, over the previously reported approaches. To get complete picture of the string of victories gained by the proposed technique, the dynamical uncertainties of load demand and RESs are investigated in both models as third case. The simulation investigation reveals the robustness and superiority dynamic responses of the cascaded PDn-PI with COA in direct contrast to other approaches even under these uncertainties.
AbstractList Electricity generation from renewable sources is on the rise. The irregular presence of these sources increases the frequency variations induced by the load variance. The penetration of renewable energy sources increases the instability of the integrated power grid due to decreased system inertia. Therefore, this paper presents an optimal controller design of proportional-derivative with filter cascaded-proportional-integral (PDn-PI) using an innovative coyote optimization algorithm (COA). The modelling of the renewable energy sources (RESs) of photovoltaic (PV) and wind farm interconnection is considered in the load frequency control (LFC). The COA is adopted and integrated with the PI/ PID/ cascaded PDn-PI controllers for the sake of optimally tuning and specifying their gains. Furthermore, the powerful performance of the proposed COA-tuned PDn-PI controller is validated, under all cases studied, not only over PI and PID controllers but also, over the previously reported approaches. To get complete picture of the string of victories gained by the proposed technique, the dynamical uncertainties of load demand and RESs are investigated in both models as third case. The simulation investigation reveals the robustness and superiority dynamic responses of the cascaded PDn-PI with COA in direct contrast to other approaches even under these uncertainties.
ArticleNumber 105058
Author Shaheen, Abdullah M.
Abou El-Ela, Adel A.
Diab, Abd El-Gelil
El-Sehiemy, Ragab A.
Author_xml – sequence: 1
  givenname: Adel A.
  surname: Abou El-Ela
  fullname: Abou El-Ela, Adel A.
  email: draaa50@hotmail.com
  organization: Electrical Engineering Department, Faculty of Engineering, Menoufiya University, Shebin El-Kom, Egypt
– sequence: 2
  givenname: Ragab A.
  orcidid: 0000-0002-3340-4031
  surname: El-Sehiemy
  fullname: El-Sehiemy, Ragab A.
  email: elsehiemy@eng.kfs.edu.eg
  organization: Electrical Engineering Department, Faculty of Engineering, Kafrelshiekh University, Kafrelshiekh, Egypt
– sequence: 3
  givenname: Abdullah M.
  orcidid: 0000-0001-7566-9874
  surname: Shaheen
  fullname: Shaheen, Abdullah M.
  email: abdullah.mohamed.eng19@suezuni.edu.eg
  organization: Electrical Engineering Department, Faculty of Engineering, Suez University, Suez, Egypt
– sequence: 4
  givenname: Abd El-Gelil
  surname: Diab
  fullname: Diab, Abd El-Gelil
  email: eng.abdodiab2020@gmail.com
  organization: Ministry of Electricity and Renewable Energy, Middle Delta Electricity Production Company, (MDEPC), El-Buhayira, Egypt
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Keywords multi-area power systems
Photovoltaic
Cascaded controller
Load frequency control
Coyote algorithm
Wind farm
Language English
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  doi: 10.1016/j.conengprac.2021.104954
– year: 2016
  ident: 10.1016/j.conengprac.2021.105058_b2
  article-title: Load frequency controller design via BAT algorithm for nonlinear interconnected power system
  publication-title: International Journal of Electrical Power & Energy Systems
  doi: 10.1016/j.ijepes.2015.11.029
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Snippet Electricity generation from renewable sources is on the rise. The irregular presence of these sources increases the frequency variations induced by the load...
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elsevier
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Index Database
Publisher
StartPage 105058
SubjectTerms Cascaded controller
Coyote algorithm
Load frequency control
multi-area power systems
Photovoltaic
Wind farm
Title Design of cascaded controller based on coyote optimizer for load frequency control in multi-area power systems with renewable sources
URI https://dx.doi.org/10.1016/j.conengprac.2021.105058
Volume 121
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