scholarly journals An Event-Based Parameter Switching Method for Controlling Cybersecurity Dynamics

2021 ◽  
pp. 236-251
Author(s):  
Zhaofeng Liu ◽  
Wenlian Lu ◽  
Yingying Lang
2016 ◽  
Vol 66 (2) ◽  
Author(s):  
Marius-F. Danca ◽  
Michal Fečkan

AbstractIn this paper we study analytically a parameter switching (PS) algorithm applied to a class of systems of ODE, depending on a single real parameter. The algorithm allows the numerical approximation of any solution of the underlying system by simple periodical switches of the control parameter. Near a general approach of the convergence of the PS algorithm, some dissipative properties are investigated and the dynamical behavior of solutions is investigated with the Lyapunov function method. A numerical example is presented.


2021 ◽  
Vol 242 ◽  
pp. 03003
Author(s):  
Shengjing She ◽  
Chongtao Li ◽  
Yiping Chen ◽  
Rongzhao Yang ◽  
Liang Xiao ◽  
...  

With the rapid development of DC asynchronous interconnection, in order to ensure the frequency quality, higher requirements are put forward for the primary frequency control of hydropower units. In the high proportion hydropower system, it is difficult for the governor parameters to meet the requirements of primary frequency control and dynamic stability simultaneously. In order to solve the problem, this paper proposes a recommended parameter switching method by referring to the Nordic system. The parameter optimization methods before and after switching are proposed, and the effectiveness of the method is verified by time domain simulation.


Symmetry ◽  
2021 ◽  
Vol 13 (6) ◽  
pp. 923
Author(s):  
Vincent-Ademola Adeyemi ◽  
Jose-Cruz Nuñez-Perez ◽  
Yuma Sandoval Ibarra ◽  
Francisco-Javier Perez-Pinal ◽  
Esteban Tlelo-Cuautle

In this paper, the parameter-switching technique was applied to control chaos in the Chen oscillator and as a decryption mechanism in a secure transmission system, to transmit RGB and grayscale images. In the past few decades, considerable efforts have been put into the study of the stabilization of chaotic dynamical systems. Most of the well-known chaos control methods, such as Ott, Grebogi, and Yorke (OGY), Pyragas, and open-loop methods, force an unstable periodic orbit into a stable one while distorting the original attractor. On the other hand, the parameter-switching technique is an elegant method that can synthesize an already-existing stable orbit, thereby preserving the underlying attractor. Consequently, the main contributions of this work were the FPGA realizations of the parameter-switching method and a secure image transmission system using a synchronized master and slave topology. The results of the parameter-switching technique and synchronization were verified using phase plots and time series. The chaos-encrypted image from the image transmission system, verified using correlation, showed no relativity with the original image, while the recovery of the decrypted image has no loss of quality. The encryption and decryption system was symmetric, whereby the key was private. In this work, co-simulations were performed in Active-HDL with MATLAB/Simulink, while the target FPGA board was the Xilinx’s Artix-7 AC701.


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