000 03256nam a22002657a 4500
008 201210b2025 a|||f bm|| 00| 0 eng d
024 7 _a0000-0002-8713-1585
_2ORCID
040 _aEG-CaNU
_cEG-CaNU
041 0 _aeng
_beng
_bara
082 _a621
100 0 _aMarwan Ahmed Elsayed Fetteha Aly Korim
_93670
245 1 _aFPGA Realization of Genetic Encoding and Digital Data Security Applications
_c/Marwan Ahmed Elsayed Fetteha Aly Korim
260 _c2025
300 _a p.
_bill.
_c21 cm.
500 _3Supervisor: Lobna Ahmed Said
502 _aThesis (M.A.)—Nile University, Egypt, 2025 .
504 _a"Includes bibliographical references"
505 0 _aContents: The importance of information security in today’s world cannot be overstated. There has been a steady rise in the availability of high-tech mobile gadgets and their connections. The public nature of internet networks means that this domain encounters extra difficulties due to unlawful eavesdropping when archiving and sharing multimedia data. Digital images, which we store and communicate everyday, may contain confidential information that must not be exposed to others. Images sent online should be encrypted to prevent snooping eyes from spying on the data. Effectively image encryption should offer high security and minimal complexity to ensure safe data transfer. The proposed designs are simple and amenable for hardware realization. Several well established performance evaluation tests including statistical properties of the encrypted image, key space, and differential attack analysis were conducted for several images. The proposed schemes passed the tests and demonstrated good results compared to several recent chaos-based image encryption schemes. Keywords: Digital electronics, FPGA implementation, Image encryption, Data security, Chaotic systems.
520 3 _aAbstract: The importance of information security in today’s world cannot be overstated. There has been a steady rise in the availability of high-tech mobile gadgets and their connections. The public nature of internet networks means that this domain encounters extra difficulties due to unlawful eavesdropping when archiving and sharing multimedia data. Digital images, which we store and communicate everyday, may contain confidential information that must not be exposed to others. Images sent online should be encrypted to prevent snooping eyes from spying on the data. Effectively image encryption should offer high security and minimal complexity to ensure safe data transfer. The proposed designs are simple and amenable for hardware realization. Several well established performance evaluation tests including statistical properties of the encrypted image, key space, and differential attack analysis were conducted for several images. The proposed schemes passed the tests and demonstrated good results compared to several recent chaos-based image encryption schemes. Keywords: Digital electronics, FPGA implementation, Image encryption, Data security, Chaotic systems.
546 _aText in English, abstracts in English and Arabic
650 4 _aMSD
_9317
655 7 _2NULIB
_aDissertation, Academic
_9187
690 _aMSD
_9317
942 _2ddc
_cTH
999 _c11012
_d11012