Improved Whale Optimization Algorithm for Transient Response, Robustness, and Stability Enhancement of an Automatic Voltage Regulator System
Salman Habib,Ghulam Abbas,Touqeer Ahmed Jumani,Aqeel Ahmed Bhutto,Sohrab Mirsaeidi,Emad M. Ahmed +5 more
TL;DR: The results of the study prove the superiority of the proposed IWOA-based AVR system in terms of transient response and stability metrics and robustness analysis was conducted to assess the robustness of the optimized AVRSystem.
read more
Abstract: The proportional integral derivative (PID) controller is one of the most robust and simplest configuration controllers used for industrial applications. However, its performance purely depends on the tuning of its proportional (KP), integral (KI) and derivative (KD) gains. Therefore, a proper combination of these gains is primarily required to achieve an optimal performance of the PID controllers. The conventional methods of PID tuning such as Cohen-Coon (CC) and Ziegler–Nichols (ZN) generate unwanted overshoots and long-lasting oscillations in the system. Owing to the mentioned problems, this paper attempts to achieve an optimized combination of PID controller gains by exploiting the intelligence of the whale optimization algorithm (WOA) and one of its recently introduced modified versions called improved whale optimization algorithm (IWOA) in an automatic voltage regulator (AVR) system. The stability of the IWOA-AVR system was studied by assessing its root-locus, bode maps, and pole/zero plots. The performance superiority of the presented IWOA-AVR design over eight of the recently explored AI-based approaches was validated through a comprehensive comparative analysis based on the most important transient response and stability metrics. Finally, to assess the robustness of the optimized AVR system, robustness analysis was conducted by analyzing the system response during the variation in the time constants of the generator, exciter, and amplifier from −50% to 50% range. The results of the study prove the superiority of the proposed IWOA-based AVR system in terms of transient response and stability metrics.
read more
Chat with Paper
AI Agents for this Paper
Find similar papers on Google Scholar, PubMed and Arxiv
Write a critical review of this paper
Analyze citations of this paper to find unaddressed research gaps
Citations
The Impact of V2G Charging/Discharging Strategy on the Microgrid Environment Considering Stochastic Methods
Sheeraz Iqbal,Salman Habib,Muhammad Umer Ali,Aqib Shafiq,Anis ur Rehman,Emad M. Ahmed,Tahir Khurshaid,Salah Kamel +7 more
TL;DR: In this paper , an effective and efficient coordination system for the charging and discharging of EVs by exploiting a smart algorithm that intelligently tackles the possible difficulties to attain optimum power requirements is proposed.
A comparative study to analyze wind potential of different wind corridors
Baqir Ali,Ghulam Abbas,Ahsanullah Memon,Sohrab Mirsaeidi,Mohsin Ali Koondhar,Saadullah Chandio,Irfan Ali Channa +6 more
TL;DR: In this article , the authors focused on the availability of wind power potential at the selected twelve sites located in three different provinces of the country, using the Weibull probability distribution (WPD) technique.
22
Design and Robust Performance Analysis of Low-Order Approximation of Fractional PID Controller Based on an IABC Algorithm for an Automatic Voltage Regulator System
TL;DR: In this paper , a low-order approximation of fractional order PID (FOPID) for an automatic voltage regulator (AVR) based on the modified artificial bee colony (ABC) is proposed.
An improved RUN optimizer based real PID plus second-order derivative controller design as a novel method to enhance transient response and robustness of an automatic voltage regulator
Davut Izci,Serdar Ekinci +1 more
TL;DR: In this article , an improved Runge Kutta Optimizer (RUN) is obtained by integrating the pattern search (PS) method into the original form of the Run optimizer, and the constructed iRUN optimizer is proposed as an efficient tool to tune a real PIDD2 controller employed in an AVR system.
21
References
The Whale Optimization Algorithm
Seyedali Mirjalili,Andrew Lewis +1 more
TL;DR: Optimization results prove that the WOA algorithm is very competitive compared to the state-of-art meta-heuristic algorithms as well as conventional methods.
11.1K
Integrative Approaches to the Study of Baleen Whale Diving Behavior, Feeding Performance, and Foraging Ecology
Jeremy A. Goldbogen,Ari S. Friedlaender,John Calambokidis,Megan F. McKenna,Malene Simon,Douglas P. Nowacek +5 more
TL;DR: A class of multisensor, suction-cup-attached archival tags has revolutionized the study of large baleen whales, particularly with respect to the predatory strategies used by these gigantic bulk filter feeders to exploit abundant oceanic resources.
Metaheuristic algorithms for PID controller parameters tuning: review, approaches and open problems
Stephen Bassi Joseph,Emmanuel Gbenga Dada,Afeez Abidemi,David Opeoluwa Oyewola,Ban Mohammed Khammas +4 more
TL;DR: A thorough review of state-of-the-art and classical strategies for PID controller parameters tuning using metaheuristic algorithms can be found in this article , where the primary objectives of PID control parameters are to achieve minimal overshoot in steady state response and lesser settling time.
227
Whale optimization algorithm to tune PID and PIDA controllers on AVR system
TL;DR: Whale optimization algorithm (WOA) technique is used in this paper to tune the controllers’ parameters and shows its superiority through comparison with several optimization techniques.
172
A novel optimal PID plus second order derivative controller for AVR system
TL;DR: Simulation results showed a superior response performance of the PIDD2 controller in comparison to PID and FOPID controllers, which can highly improve the system robustness with respect to model uncertainties.
162
Related Papers (5)
Hur Abbas,Sajjad Asghar,Shahid Qamar +2 more
- 17 Dec 2012
Jacqueline Wilkie,Michael Johnson,Reza Katebi +2 more
- 01 Jan 2002