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DEF-CRYPT-Q: a quantum-enhanced hybrid encryption framework for privacy-preserving distributed defense communications
N Anithadevi1, S Deivarani2, Arunkumar Balakrishnan3
1Department of Information Technology, Coimbatore Institute of Technology, Coimbatore, Tamil Nadu, India.
Scientific Reports
|May 21, 2026
Summary
This study introduces DEF-CRYPT-Q, a quantum-resilient hybrid framework for defense communications. It enhances security for tactical networks against quantum threats and cyber-warfare, ensuring data integrity and privacy.
Area of Science:
- Cybersecurity and Cryptography
- Defense Communication Systems
- Quantum Computing Impact
Background:
- Modern defense communication is increasingly distributed, AI-enabled, and multi-domain.
- Existing cryptographic infrastructures face vulnerabilities from quantum computing and resource constraints.
- Traditional public-key algorithms (RSA, ECC) are susceptible to quantum attacks, while lightweight ciphers struggle with advanced threats.
Purpose of the Study:
- To propose DEF-CRYPT-Q (Defense Cryptographic Quantum-Enhanced Privacy-Preserving Hybrid Framework).
- To establish a unified, quantum-resilient, and privacy-preserving security architecture for heterogeneous defense settings.
- To address vulnerabilities in distributed defense communications against quantum computing and cyber-warfare.
Main Methods:
- Developed a hybrid framework with four synergistic elements.
- Incorporated a Context-Aware Lightweight Defense Encryption (CALDE) module for constrained devices (wearables, UAVs, sensors).
- Integrated a Quantum-Resistant Cryptographic Layer (QRCL) using lattice-based post-quantum primitives (CRYSTALS-Kyber, CRYSTALS-Dilithium).
Main Results:
- Experimental assessment showed reduced encryption latency (14.83 ms) and bandwidth overhead (13.9%) compared to classical and naive PQC methods.
- The framework demonstrated limited computational costs on constrained platforms and high integrity.
- Achieved high quantum resistance (0.92 score), mission adaptability (0.95), and low residual risk (<0.1).
Conclusions:
- DEF-CRYPT-Q is a scalable and prospective cryptographic paradigm for modernizing defense.
- The framework effectively secures distributed defense communication data against classical and quantum adversarial models.
- It is suitable for latency-sensitive defense communications, balancing security, performance, and resource efficiency.
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