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Triple-layered security system: reliable and secured image communications over 5G and beyond networks
Tarek Srour1, Mohsen A M El-Bendary2, Mostafa Eltokhy3
1Department of Electronics Technology, Faculty of Technology and Education, Helwan University, Cairo, Egypt. tariq.tito76@yahoo.com.
This study introduces a novel Loss-less Triple-level security system for 5G and beyond networks, ensuring data integrity and high-quality extraction with efficient algorithms.
Area of Science:
- Computer Science
- Network Security
- Cryptography
Background:
- 5G and beyond networks aim to integrate diverse network types (undersea, terrestrial, space) for massive data transfer.
- Existing security techniques lack adaptation, gradient boosting, and comprehensive complexity analysis for these advanced networks.
- There is a need for robust, adaptable security solutions capable of handling high data volumes and stringent security requirements.
Purpose of the Study:
- To address the research gap in adaptable and graded security systems for 5G and beyond networks.
- To design and evaluate a novel Loss-less Triple-level security system.
- To ensure data integrity, high-quality message extraction, and efficient performance.
Main Methods:
- Proposed a Loss-less Triple-level security system combining chaos-based encryption and SVD-DWT for data embedding.
- Utilized two-Dimensional Logistic map, Singular Value Decomposition (SVD), and baker map techniques for encryption and embedding.
- Conducted simulation experiments to optimize the integration of these techniques and assess performance.
Main Results:
- Achieved efficient algorithm times: 2.13s for ciphering/hiding and 1.57s for deciphering/extracting.
- Demonstrated 100% perfect match between original and decrypted/extracted data, confirming integrity and quality.
- The proposed system exhibited robustness, low complexity, and high reliability.
Conclusions:
- The developed Loss-less Triple-level security system effectively addresses the limitations of existing techniques.
- The system's adaptability, low complexity, and high reliability make it suitable for 5G and beyond networks.
- The proposed security approach ensures secure, high-quality data transfer across integrated terrestrial, undersea, and space networks.
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