Review, design, stabilization and synchronization of fractional-order energy resources demand-supply hyperchaotic systems using fractional-order PD-based feedback control scheme

被引:2
|
作者
Soukkou, Ammar [1 ]
Soukkou, Yassine [2 ]
Haddad, Sofiane [1 ]
Benghanem, Mohamed [3 ]
Rabhi, Abdelhamid [4 ]
机构
[1] Univ MSBY Jijel, Fac Sci & Technol, Dept Elect, Renewable Energy Lab, BP 98,Ouled Aissa, Jijel, Algeria
[2] Res Ctr Ind Technol CRTI, POB 64, Algiers 16014, Algeria
[3] Islamic Univ Madinah, Fac Sci, Phys Dept, Madinah, Saudi Arabia
[4] Univ Picardie Jules Verne, Informat & Syst Lab, Amiens, France
关键词
fractional-order systems; fractional-order control; Lyapunov stability theory; multiobjective optimization; artificial hummingbird algorithm; stabilization and synchronization; energy resources demand-dupply systems; DIFFERENTIAL-EQUATIONS; NUMERICAL-SOLUTION; CHAOTIC SYSTEMS; LINEAR-SYSTEMS; OPTIMIZATION; IMPLEMENTATION; RELAXATION; STABILITY; ALGORITHM; CALCULUS;
D O I
10.24425/acs.2023.146957
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper introduces a fractional-order PD approach (F-oPD) designed to control a large class of dynamical systems known as fractional-order chaotic systems (F-oCSs). The design process involves formulating an optimization problem to determine the parameters of the developed controller while satisfying the desired performance criteria. The stability of the control loop is initially assessed using the Lyapunov's direct method and the latest stability assumptions for fractional-order systems. Additionally, an optimization algorithm inspired by the flight skills and foraging behavior of hummingbirds, known as the Artificial Hummingbird Algorithm (AHA), is employed as a tool for optimization. To evaluate the effectiveness of the proposed design approach, the fractional-order energy resources demand-supply (Fo-ERDS) hyperchaotic system is utilized as an illustrative example.
引用
收藏
页码:539 / 563
页数:25
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