Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption
Abstract & Details
Research Area
Computer Science Engineering
Keywords
Key generation
encryption
decryption
digital forensic architecture
Abstract
Secure storage model for digital forensics represents essential progress in the domain, addressing the major problems associated with protecting and maintaining digital evidence. This method employs recent encryption systems and optimal key generation methods to ensure the confidentiality and integrity of data throughout the investigative process. Cloud forensics is an intelligent development of digital forensics to be preserved against online hacking. But, centralized evidence gathered and preservation reduces the reliability of digital evidence. The architecture for digital forensics in an Infrastructure as a Service (IaaS) cloud platform is a crucial structure intended to simplify the collection and protection of evidence while preserving the integrity and origin of digital objects within cloud-based methods. This architecture integrates numerous modules and methods to address the exclusive tasks modeled by cloud computing (CC) environments in the framework of forensic investigations. This project develops a new digital forensic architecture utilizing the Authentication with Optimal Key Generation Encryption (DFA-AOKGE) technique. The main intention of the DFA-AOKGE method is to use a BC-distributed design to allocate data between numerous peers for data collection and safe storage. Additionally, the DFA-AOKGE model uses the Secure Block Verification Mechanism (SBVM) for the authentication procedure. Also, the secret keys can be produced by the usage of the Enhanced Equilibrium Optimizer (EEO) model. Furthermore, the encryption of the data takes place using a multikey homomorphic encryption (MHE) approach and is then saved in the cloud server.
License
This work is licensed under a Creative
Commons
Attribution-ShareAlike 4.0 International License.
Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | N ANITHA | Siddharth Institute of Engineering and Technology |
| 2 | D S AEISHA | Siddharth Institute of Engineering and Technology |
| 3 | R CHENCHU KUMAR | Siddharth Institute of Engineering and Technology |
| 4 | N J MANISHA | Siddharth Institute of Engineering and Technology |
| 5 | ALAKUNTA SIVA | Siddharth Institute of Engineering and Technology |
| 6 | NAVEEN.B | Siddharth Institute of Engineering and Technology |
How to Cite
Use the following formats to cite this article in your research.
APA Style
ANITHA, N, AEISHA, D S, KUMAR, R CHENCHU, MANISHA, N J, SIVA, ALAKUNTA, & NAVEEN.B (2025). Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption. International Journal of Advance Research and Innovative Ideas In Education, 11(2), 1331-1341.
MLA Style
ANITHA, N, et al. "Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption." International Journal of Advance Research and Innovative Ideas In Education, vol. 11, no. 2, 2025, pp. 1331-1341.
IEEE Style
N ANITHA, D S AEISHA, R CHENCHU KUMAR, N J MANISHA, ALAKUNTA SIVA, and NAVEEN.B, "Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption," International Journal of Advance Research and Innovative Ideas In Education, vol. 11, no. 2, pp. 1331-1341, 2025.
Vancouver Style
ANITHA N, AEISHA D S, KUMAR R CHENCHU, MANISHA N J, SIVA ALAKUNTA, NAVEEN.B. Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption. International Journal of Advance Research and Innovative Ideas In Education. 2025;11(2):1331-1341.
Harvard Style
ANITHA, N, AEISHA, D S, KUMAR, R CHENCHU, MANISHA, N J, SIVA, ALAKUNTA, & NAVEEN.B (2025) 'Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption', International Journal of Advance Research and Innovative Ideas In Education, 11(2), pp. 1331-1341.
Chicago Style
ANITHA, N, et al. "Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption." International Journal of Advance Research and Innovative Ideas In Education 11, no. 2 (2025): 1331-1341.
Turabian Style
ANITHA, N, et al. "Enhancing Forensic Data Protection: A Robust Storage Framework with Verified Access and Intelligent Key-Based Encryption." International Journal of Advance Research and Innovative Ideas In Education 11, no. 2 (2025): 1331-1341.
Related Research
DIGITAL DIVIDE AND EQUITY IN ACCESS TO INTERNET: ITS IMPACT TO LEARNERS’ ACADEMIC ACHIEVEMENT
PDF Unavailable
A PHENOMENOLOGICAL STUDY ON THE CHALLENGES, AND COPING STRATEGIES OF SCHOOL HEADS IN USING TECHNOLOGY
PDF Unavailable
INFLUENCE OF TEACHER PERSONAL COMPETENCE AND SCHOOL LEADERSHIP ON STUDENT ACHIEVEMENT IN MEDIA AND INFORMATION LITERACY
PDF Unavailable
A Comprehensive Review of Blockchain in Automotive Data Tracking
PDF Unavailable
IoT-Based Elderly Emergency Health Monitoring System integrated with a Smart Ambulance mechanism
PDF Unavailable
Decentralized Voting System Using Ethereum Blockchain
PDF Unavailable