Chaotic dynamic disturbance algorithm based on RFID system

2013 ◽  
Vol 32 (6) ◽  
pp. 1643-1645
Author(s):  
You TANG ◽  
Yuan-yuan LU ◽  
Yi-wei ZAHANG
Author(s):  
Yunfeng Wang ◽  
Xing Zheng ◽  
Jing wang ◽  
Donghui Guo

2009 ◽  
Vol 32 (7) ◽  
pp. 1356-1364 ◽  
Author(s):  
Hong-Gang WANG ◽  
Chang-Xing PEI ◽  
Yun-Hui YI

2019 ◽  
Vol 75 (2) ◽  
pp. I_941-I_946
Author(s):  
Kiyotaka ORITA ◽  
Kazuo TANI ◽  
Akihiko SUZUKI ◽  
Shogo SUGA ◽  
Keiichi TANAKA
Keyword(s):  

Entropy ◽  
2021 ◽  
Vol 23 (4) ◽  
pp. 456
Author(s):  
Xitong Xu ◽  
Shengbo Chen

Image encryption is a confidential strategy to keep the information in digital images from being leaked. Due to excellent chaotic dynamic behavior, self-feedbacked Hopfield networks have been used to design image ciphers. However, Self-feedbacked Hopfield networks have complex structures, large computational amount and fixed parameters; these properties limit the application of them. In this paper, a single neuronal dynamical system in self-feedbacked Hopfield network is unveiled. The discrete form of single neuronal dynamical system is derived from a self-feedbacked Hopfield network. Chaotic performance evaluation indicates that the system has good complexity, high sensitivity, and a large chaotic parameter range. The system is also incorporated into a framework to improve its chaotic performance. The result shows the system is well adapted to this type of framework, which means that there is a lot of room for improvement in the system. To investigate its applications in image encryption, an image encryption scheme is then designed. Simulation results and security analysis indicate that the proposed scheme is highly resistant to various attacks and competitive with some exiting schemes.


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