TY - GEN
T1 - Zero-Knowledge Proof Algorithm for Blockchain-Based Identity Verification Systems
AU - Nayak, Ashu
AU - Sivasubramanian, S.
AU - Sharma, Anil
AU - Madi, Hasan M.
AU - Gopinath, S.
AU - Al Zahraa, Fatima Ayad Abd
AU - Tayeb, Sana Isam
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - The rising need for safe and privacy-preserving digital identity verification has exposed the limits of previous methods, which typically involve personal information. These technologies risk users' privacy owing to data leaks and user-centric management issues. Due to these problems, this article presents ZK-VerifyChain, a blockchain-based Zero-Knowledge-based Verification system. The proposed ZK-VerifyChain uses permissioned blockchain smart contracts and non-interactive zero-knowledge proofs to verify identities securely. With this design, users can identify themselves without giving personal information. The suggested technique was tested in a virtual environment for computational overhead, scalability, and verification time. Testing has demonstrated that the ZK-Verify Chain is effective, fast, and secure against manipulation and identity theft. The blockchain layer provides immutability, transparency, and decentralized trust management. The suggested ZK-VerifyChain moves us closer to user-controlled, secure digital identity systems by providing a scalable, privacy-centric digital identity verification solution. The experimental results show an average verification time of 12.4 ms compared to other methods.
AB - The rising need for safe and privacy-preserving digital identity verification has exposed the limits of previous methods, which typically involve personal information. These technologies risk users' privacy owing to data leaks and user-centric management issues. Due to these problems, this article presents ZK-VerifyChain, a blockchain-based Zero-Knowledge-based Verification system. The proposed ZK-VerifyChain uses permissioned blockchain smart contracts and non-interactive zero-knowledge proofs to verify identities securely. With this design, users can identify themselves without giving personal information. The suggested technique was tested in a virtual environment for computational overhead, scalability, and verification time. Testing has demonstrated that the ZK-Verify Chain is effective, fast, and secure against manipulation and identity theft. The blockchain layer provides immutability, transparency, and decentralized trust management. The suggested ZK-VerifyChain moves us closer to user-controlled, secure digital identity systems by providing a scalable, privacy-centric digital identity verification solution. The experimental results show an average verification time of 12.4 ms compared to other methods.
KW - Blockchain
KW - Data Security
KW - Decentralized Systems
KW - Digital Identity
KW - Zero-Knowledge Proof (ZKP)
UR - https://www.scopus.com/pages/publications/105031607886
U2 - 10.1109/ICCR67387.2025.11291870
DO - 10.1109/ICCR67387.2025.11291870
M3 - Conference contribution
AN - SCOPUS:105031607886
T3 - ICCR 2025 - 3rd International Conference on Cyber Resilience
BT - ICCR 2025 - 3rd International Conference on Cyber Resilience
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 3rd International Conference on Cyber Resilience, ICCR 2025
Y2 - 3 July 2025 through 4 July 2025
ER -