An effective hybrid harmony search and cuckoo optimization algorithm based fuzzy PID controller for load frequency control
[Display omitted] •A novel and hybrid optimization technique called HSCOA for optimum tuning of fuzzy PID controller for LFC of interconnected power systems is developed.•Sensitivity analysis is carried out to verify the robustness of HSCOA based fuzzy PID controller.•The effect of nonlinearity by c...
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| Published in | Applied soft computing Vol. 65; pp. 121 - 138 |
|---|---|
| Main Author | |
| Format | Journal Article |
| Language | English |
| Published |
Elsevier B.V
01.04.2018
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| Subjects | |
| Online Access | Get full text |
| ISSN | 1568-4946 1872-9681 |
| DOI | 10.1016/j.asoc.2018.01.007 |
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| Abstract | [Display omitted]
•A novel and hybrid optimization technique called HSCOA for optimum tuning of fuzzy PID controller for LFC of interconnected power systems is developed.•Sensitivity analysis is carried out to verify the robustness of HSCOA based fuzzy PID controller.•The effect of nonlinearity by considering GDB in the transient responses of the concerned power plant is investigated.•The effectiveness of designed controllers is evaluated under different scenarios of loading conditions.
In this paper, a hybrid algorithm is developed by incorporating the egg-laying and immigration mechanisms of cuckoo optimization algorithm (COA) into harmony search (HS) algorithm (HSCOA), to design a secondary controller for two practical models of load frequency control (LFC) problem. Initially, a two-area non-reheat thermal power system is considered and the gains of PID and fuzzy PI/PID controllers are adjusted by the proposed tuning method. The superiority of HSCOA in regulating controller gains is demonstrated by evaluation and comparison of the obtained transient outcomes over some other published approaches in literature. To prove the satisfaction of the robustness in designed LFC by means of the proposed method, the performance of HSCOA based fuzzy PID controller is extensively verified under varying loading condition and some critical parameters related to the considered power plant. To add further practical challenge, the governor dead band (GDB) is included in the concerned system modeling to study the advantages of the HSCOA tuned fuzzy PID controller in handling the properties of nonlinearity in the system model. Time domain simulation of transient responses indicates that the designed controller operates satisfactorily to deal with the GDB nonlinearity and outperform other published techniques. Furthermore, to demonstrate the effective feasibility of the proposed method, the study is extended to a two-area multi-source power system with/without consideration of HVDC link. It is observed that HSCOA optimized fuzzy PID controller gives superior quality outcomes in comparison to other reported strategies. Finally, the robustness of the controller’s gains designed for the concerned power system is investigated under various scenarios of change in size, location and pattern of step load perturbation. |
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| AbstractList | [Display omitted]
•A novel and hybrid optimization technique called HSCOA for optimum tuning of fuzzy PID controller for LFC of interconnected power systems is developed.•Sensitivity analysis is carried out to verify the robustness of HSCOA based fuzzy PID controller.•The effect of nonlinearity by considering GDB in the transient responses of the concerned power plant is investigated.•The effectiveness of designed controllers is evaluated under different scenarios of loading conditions.
In this paper, a hybrid algorithm is developed by incorporating the egg-laying and immigration mechanisms of cuckoo optimization algorithm (COA) into harmony search (HS) algorithm (HSCOA), to design a secondary controller for two practical models of load frequency control (LFC) problem. Initially, a two-area non-reheat thermal power system is considered and the gains of PID and fuzzy PI/PID controllers are adjusted by the proposed tuning method. The superiority of HSCOA in regulating controller gains is demonstrated by evaluation and comparison of the obtained transient outcomes over some other published approaches in literature. To prove the satisfaction of the robustness in designed LFC by means of the proposed method, the performance of HSCOA based fuzzy PID controller is extensively verified under varying loading condition and some critical parameters related to the considered power plant. To add further practical challenge, the governor dead band (GDB) is included in the concerned system modeling to study the advantages of the HSCOA tuned fuzzy PID controller in handling the properties of nonlinearity in the system model. Time domain simulation of transient responses indicates that the designed controller operates satisfactorily to deal with the GDB nonlinearity and outperform other published techniques. Furthermore, to demonstrate the effective feasibility of the proposed method, the study is extended to a two-area multi-source power system with/without consideration of HVDC link. It is observed that HSCOA optimized fuzzy PID controller gives superior quality outcomes in comparison to other reported strategies. Finally, the robustness of the controller’s gains designed for the concerned power system is investigated under various scenarios of change in size, location and pattern of step load perturbation. |
| Author | Gheisarnejad, Meysam |
| Author_xml | – sequence: 1 givenname: Meysam surname: Gheisarnejad fullname: Gheisarnejad, Meysam email: me.gheisarnejad@gmail.com organization: Department of Electrical Engineering, Najafabad Branch, Islamic Azad University, Isfahan, Iran |
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| SubjectTerms | Cuckoo optimization algorithm Fuzzy logic controller Governor dead band Harmony search algorithm Load frequency control |
| Title | An effective hybrid harmony search and cuckoo optimization algorithm based fuzzy PID controller for load frequency control |
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