Circuit realization and FPGA-based implementation of a fractional-order chaotic system for cancellable face recognition

被引:1
|
作者
Badr, Iman S. [1 ]
Radwan, Ahmed G. [2 ,3 ]
EL-Rabaie, El-Sayed M. [1 ]
Said, Lobna A. [3 ]
El-Shafai, Walid [1 ,4 ]
El-Banby, Ghada M. [5 ]
Abd El-Samie, Fathi E. [1 ,6 ]
机构
[1] Menoufia Univ, Fac Elect Engn, Dept Elect & Elect Commun Engn, Menoufia 32952, Egypt
[2] Cairo Univ, Fac Engn, Engn Math & Phys Dept, Giza 12613, Egypt
[3] Nile Univ, Nanoelect Integrated Syst Ctr NISC, Giza 12588, Egypt
[4] Prince Sultan Univ, Comp Sci Dept, Secur Engn Lab, Riyadh 11586, Saudi Arabia
[5] Menoufia Univ, Fac Elect Engn, Dept Ind Elect & Control Engn, Menoufia 32952, Egypt
[6] Princess Nourah bint Abdulrahman Univ, Coll Comp & Informat Sci, Dept Informat Technol, Riyadh 11671, Saudi Arabia
关键词
Fractional-order chaos; Cancellable face recognition; PSpise; FPGA; IMAGE ENCRYPTION; GENERATION;
D O I
10.1007/s11042-023-15867-z
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Biometric security has been developed in recent years with the emergence of cancellable biometric concepts. The idea of the cancellable biometric traits is concerned with creating encrypted or distorted traits of the original ones to protect them from hacking techniques. So, encrypted or distorted biometric traits are stored in databases instead of the original ones. This can be accomplished through non-invertible transforms or encryption schemes. In this paper, a cancellable face recognition algorithm is introduced based on face image encryption through a fractional-order multi-scroll chaotic system. The fundamental concept is to create random keys that will be XORed with the three components of color face images (red, green, and blue) to obtain encrypted face images. These random keys are generated from the Least Significant Bits of all state variables of a proposed fractional-order multi-scroll chaotic system. Lastly, the encrypted color components of face images are combined to produce a single cancellable trait for each color face image. The results of encryption with the proposed system are full-encrypted face images that are suitable for cancellable biometric applications. The strength of the proposed system is that it is extremely sensitive to the user's selected initial conditions. The numerical simulation of the proposed chaotic system is done with MATLAB. Phase and bifurcation diagrams are used to analyze the dynamic performance of the proposed fractional-order multi-scroll chaotic system. Furthermore, we realized the hardware circuit of the proposed chaotic system on the PSpice simulator. The proposed chaotic system can be implemented on Field Programmable Gate Arrays (FPGAs). To model our generator, we can use Verilog Hardware Description Language HDL, Xilinx ISE 14.7 and Xilinx FPGA Artix-7 XC7A100T based on Grunwald-Letnikov algorithms for mathematical analysis. The numerical simulation, the circuit simulation and the hardware experimental results confirm each other. Cancellable face recognition based on the proposed fractional-order chaotic system has been implemented on FERET, LFW, and ORL datasets, and the results are compared with those of other schemes. Some evaluation metrics containing Equal Error Rate (EER), and Area under the Receiver Operating Characteristic (AROC) curve are used to assess the cancellable biometric system. The numerical results of these metrics show EER levels close to zero and AROC values of 100%. In addition, the encryption scheme is highly efficient.
引用
收藏
页码:81565 / 81590
页数:26
相关论文
共 50 条
  • [31] Hidden dynamics, synchronization, and circuit implementation of a fractional-order memristor-based chaotic system
    Wang, Mengjiao
    Deng, Bingqing
    Peng, Yuexi
    Deng, Min
    Zhang, Yibing
    EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS, 2022, 231 (16-17): : 3171 - 3185
  • [32] Modeling and Analysis of a Fractional-Order Generalized Memristor-Based Chaotic System and Circuit Implementation
    Yang, Ningning
    Xu, Cheng
    Wu, Chaojun
    Jia, Rong
    Liu, Chongxin
    INTERNATIONAL JOURNAL OF BIFURCATION AND CHAOS, 2017, 27 (13):
  • [33] Hidden dynamics, synchronization, and circuit implementation of a fractional-order memristor-based chaotic system
    Mengjiao Wang
    Bingqing Deng
    Yuexi Peng
    Min Deng
    Yibing Zhang
    The European Physical Journal Special Topics, 2022, 231 : 3171 - 3185
  • [34] DESIGN AND CIRCUIT IMPLEMENTATION OF FRACTIONAL-ORDER MULTIWING CHAOTIC ATTRACTORS
    Tang, Zilong
    Zhang, Chaoxia
    Yu, Simin
    INTERNATIONAL JOURNAL OF BIFURCATION AND CHAOS, 2012, 22 (11):
  • [35] A novel fractional-order chaotic system with specific topology: from proposing to FPGA implementation
    Bayani, Atiyeh
    Jafari, Mohammad Ali
    Rajagopal, Karthikeyan
    Jiang, Haibo
    Jafari, Sajad
    EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS, 2017, 226 (16-18): : 3729 - 3745
  • [36] A novel fractional-order chaotic system with specific topology: from proposing to FPGA implementation
    Atiyeh Bayani
    Mohammad Ali Jafari
    Karthikeyan Rajagopal
    Haibo Jiang
    Sajad Jafari
    The European Physical Journal Special Topics, 2017, 226 : 3729 - 3745
  • [37] Synchronization and FPGA realization of complex networks with fractional-order Liu chaotic oscillators
    Soriano-Sanchez, A. G.
    Posadas-Castillo, C.
    Platas-Garza, M. A.
    Arellano-Delgado, A.
    APPLIED MATHEMATICS AND COMPUTATION, 2018, 332 : 250 - 262
  • [38] Multistability Analysis of a Fractional-Order Multi-Wing Chaotic System and its Circuit Realization
    Liu, Tianming
    Sun, Bo
    Li, Peng
    Ma, Tao
    Ma, Yanjie
    MOBILE NETWORKS & APPLICATIONS, 2024, : 603 - 613
  • [39] Chaotic chameleon: Dynamic analyses, circuit implementation, FPGA design and fractional-order form with basic analyses
    Rajagopal, Karthikeyan
    Akgul, Akif
    Jafari, Sajad
    Karthikeyan, Anitha
    Koyuncu, Ismail
    CHAOS SOLITONS & FRACTALS, 2017, 103 : 476 - 487
  • [40] Multistability Analysis and Digital Circuit Implementation of a New Conformable Fractional-Order Chaotic System
    Ma, Chenguang
    Mou, Jun
    Li, Peng
    Yang, Feifei
    Liu, Tianming
    MOBILE NETWORKS & APPLICATIONS, 2023, 28 (02): : 561 - 570