2021
DOI: 10.1016/j.chaos.2021.110992
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A family of circulant megastable chaotic oscillators, its application for the detection of a feeble signal and PID controller for time-delay systems by using chaotic SCA algorithm

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Cited by 13 publications
(2 citation statements)
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“…These methods are still being developed and recently AMIGO step and AMIGO frequency methods have also been proposed (Åström and Hägglund, 2004;Hägglund and Åström, 2002). In addition to these technique, the PID controller can be designed according to an objective function with metaheuristic algorithms (Boz et al, 2017a;Boz et al, 2017a;Çimen et al, 2019;Çimen et al,, 2017;Çimen et al, 2021a;Rajagopal et al, 2021;Yılmaz et al, 2021). Generally this controller has a three parameters that are Proportional constant (𝐾 𝑃 ), Integral constant (𝐾 𝐼 ), and Derivative constant (𝐾 𝐷 ).…”
Section: Pid Controllermentioning
confidence: 99%
“…These methods are still being developed and recently AMIGO step and AMIGO frequency methods have also been proposed (Åström and Hägglund, 2004;Hägglund and Åström, 2002). In addition to these technique, the PID controller can be designed according to an objective function with metaheuristic algorithms (Boz et al, 2017a;Boz et al, 2017a;Çimen et al, 2019;Çimen et al,, 2017;Çimen et al, 2021a;Rajagopal et al, 2021;Yılmaz et al, 2021). Generally this controller has a three parameters that are Proportional constant (𝐾 𝑃 ), Integral constant (𝐾 𝐼 ), and Derivative constant (𝐾 𝐷 ).…”
Section: Pid Controllermentioning
confidence: 99%
“…A self‐tuning method for robust PID control was proposed in Reference 5, which can adjust the gain of PID controller automatically. There are also some optimization algorithms used to provide more accurate PID controller parameters, like heavy‐tailed distribution‐cuckoo search (HTD‐CS) algorithm, 6 chaotic sine cosine algorithm (SCA), 7 and hybrid bacteria foraging optimization with particle swarm optimization algorithm (hBFOA–PSO), 8 which can solve the difficult problem of PID controller parameter tuning in time‐delay systems. The internal model control with PID method (IMC‐PID) can also have better control effect in the system with integral and instability 9‐11 .…”
Section: Introductionmentioning
confidence: 99%