lyapunov stability
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2022 ◽  
Vol 155 ◽  
pp. 111745
Author(s):  
Anibal Pedraza ◽  
Oscar Deniz ◽  
Gloria Bueno
Keyword(s):  

2022 ◽  
Vol 9 ◽  
Author(s):  
Shunjie Li ◽  
Yawen Wu ◽  
Gang Zheng

In this paper, the adaptive control design is investigated for the chaos synchronization of two identical hyperchaotic Liu systems. First, an adaptive control law with two inputs is proposed based on Lyapunov stability theory. Secondly, two other control schemes are obtained based on a further analysis of the proposed adaptive control law. Finally, numerical simulations are presented to validate the effectiveness and correctness of these results.


2021 ◽  
Vol 2021 ◽  
pp. 1-6
Author(s):  
Abdulsattar Abdullah Hamad ◽  
M. Lellis Thivagar ◽  
Jalawi Alshudukhi ◽  
Talal Saad Alharbi ◽  
Saud Aljaloud ◽  
...  

Chaotic systems are one of the most significant systems of the technological period because their qualities must be updated on a regular basis in order for the speed of security and information transfer to rise, as well as the system’s stability. The purpose of this research is to look at the special features of the nine-dimensional, difficult, and highly nonlinear hyperchaotic model, with a particular focus on synchronization. Furthermore, several criteria for such models have been examined; Hamiltonian, synchronizing, Lyapunov expansions, and stability are some of the terms used. The geometrical requirements, which play an important part in the analysis of dynamic systems, are also included in this research due to their importance. The synchronization and control of complicated networks’ most nonlinear control is important to use and is based on two major techniques. The linearization approach and the Lyapunov stability theory are the foundation for attaining system synchronization in these two ways.


2021 ◽  
Vol 15 (4) ◽  
pp. 601-606
Author(s):  
Zumrotus Sya'diyah

This research develops the previous one of the electricity bill payment system in PT. PLN (Persero) Rayon East Ambon modelled by Petri Net. The previous researcher had built the Petri Net model of this payment system. In this research, we determine whether the system modelled before is stable or not. This stability will be analysed using the Lyapunov stability theory related to the Petri Net. The result shows that the electricity bill payment system modelled by Petri Net before is not stable but can be stabilized. This can be caused there is a transition which is ‘always enable’ in the modelled which is built. This research also performs a stable model of Petri Net that represents the electricity bill payment system with deleting the ‘always enable’ transition


2021 ◽  
Vol 32 (6) ◽  
pp. 1509-1526
Author(s):  
Li Yue ◽  
Wen Xianghua ◽  
Li Wei ◽  
Wei Lan ◽  
Xia Qunli

Author(s):  
Guilherme Vieira Hollweg ◽  
Paulo Jefferson Dias de Oliveira Evald ◽  
Deise Maria Cirolini Milbradt ◽  
Rodrigo Varella Tambara ◽  
Hilton Abilio Grundling

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