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Synapse
January 20, 20260 citationsOpen Access

Secure Storage Model for Digital Forensics with Authentication and Optimized Encryption Key Generation

ADAruvai DakshayaniYCYarlapalli ChethanaDKDr. S Anupama Kumar

Key Points

  • The aim is to develop a secure storage model for digital forensic evidence that maintains confidentiality, integrity, and authenticity.
  • Proposes a Secure Storage Model using advanced algorithms for cryptographic key generation.
  • Employs multi-factor authentication to enhance security.
  • Utilizes secure hashing to verify evidence integrity.
  • Conducts experimental tests comparing the model with traditional storage methods.
  • Demonstrates superior security efficiency and lower access latency than traditional methods.
  • Shows higher encryption performance and decreased vulnerabilities.
  • Confirms suitability for law enforcement and cyber security auditing applications.

Abstract

Digital forensics is an essential component of contemporary cybersecurity investigations, as it facilitates the secure collection, retention, and evaluation of digital evidence. The confidentiality, integrity, and authenticity of forensic evidence are significantly compromised by the increasing number of cyberattacks, data manipulation attempts, or unauthorized access attempts. A Secure Storage Model for Digital Forensics with Authentication and Optimized Encryption Key Generation is proposed by this work to ensure secure evidence preservation and controlled access. The model employs advanced algorithms to generate cryptographic keys and incorporate multi-factor authentication, thereby improving encryption performance and decreasing vulnerabilities caused by using static or predictable keys. By using secure hashing, the system enhances evidence integrity verification and also enables data storage that is impervious to manipulation. The experimental test confirms the superior security efficiency, lower access latency, and higher encryption performance compared to traditional forensic storage methods. The results show that the solution is well-suited for secure digital forensic workflows, allowing for the handling of admissible evidence in law enforcement, cyber security auditing, and legal investigations.

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Cite This Study

Dakshayani et al. (2026) studied this question.

synapsesocial.com/papers/696f1a629e64f732b51eeb01https://doi.org/10.58482/ijersem.v2i1.10
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A Secure Model for Digital Forensics Integrating Authentication and Optimal Key Encryption2025
  2. 2A New Evidence Preservation Forensics Model Using Blockchain and Stenography Techniques2024 · 3 citations
  3. 3Secure network forensic investigation framework with elliptic curve cryptography-based encryption and enhanced message digest integrity verification2026
  4. 4Designing an automated, privacy preserving, and efficient Digital Forensic Framework2024 · 3 citations
  5. 5Evidence Extraction and Analysis in Digital Disk Forensics: A Systematic Review of Theoretical Frameworks, Recovery Algorithms, and Forensic Validity2024