A Quantum-Secure Voting Framework Using QKD, Dual-Key Symmetric Encryption, and Verifiable Receipts
October 03, 2025 Β· Declared Dead Β· π 2025 International Conference on Artificial Intelligence, Computer, Data Sciences and Applications (ACDSA)
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Authors
Taha M. Mahmoud, Naima Kaabouch
arXiv ID
2510.03489
Category
quant-ph: Quantum Computing
Cross-listed
cs.CR
Citations
0
Venue
2025 International Conference on Artificial Intelligence, Computer, Data Sciences and Applications (ACDSA)
Last Checked
5 months ago
Abstract
Electronic voting systems face growing risks from cyberattacks and data breaches, which are expected to intensify with the advent of quantum computing. To address these challenges, we introduce a quantum-secure voting framework that integrates Quantum Key Distribution (QKD), Dual-Key Symmetric Encryption, and verifiable receipt mechanisms to strengthen the privacy, integrity, and reliability of the voting process. The framework enables voters to establish encryption keys securely, cast encrypted ballots, and verify their votes through receipt-based confirmation, all without exposing the vote contents. To evaluate performance, we simulate both quantum and classical communication channels using the Message Queuing Telemetry Transport (MQTT) protocol. Results demonstrate that the system can process large numbers of votes efficiently with low latency and minimal error rates. This approach offers a scalable and practical path toward secure, transparent, and verifiable electronic voting in the quantum era.
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