English

SecureVAX: A Blockchain-Enabled Secure Vaccine Passport System

Cryptography and Security 2024-07-22 v1 Distributed, Parallel, and Cluster Computing Emerging Technologies

Abstract

A vaccine passport serves as documentary proof, providing passport holders with greater freedom while roaming around during pandemics. It confirms vaccination against certain infectious diseases like COVID-19, Ebola, and flu. The key challenges faced by the digital vaccine passport system include passport forgery, unauthorized data access, and inaccurate information input by vaccination centers. Privacy concerns also need to be addressed to ensure that the user's personal identification information (PII) is not compromised. Additionally, it is necessary to track vaccine vials or doses to verify their authenticity, prevent misuse and illegal sales, as well as to restrict the illicit distribution of vaccines. To address these challenges, we propose a Blockchain-Enabled Secure Vaccine Passport System, leveraging the power of smart contracts. Our solution integrates off-chain and on-chain cryptographic computations, facilitating secure communication among various entities. We have utilized the InterPlanetary File System (IPFS) to store encrypted vaccine passports of citizens securely. Our prototype is built on the Ethereum platform, with smart contracts deployed on the Sepolia Test network, allowing for performance evaluation and validation of the system's effectiveness. By combining IPFS as a distributed data storage platform and Ethereum as a blockchain platform, our solution paves the way for secure, efficient, and globally interoperable vaccine passport management, supporting comprehensive vaccination initiatives worldwide.

Keywords

Cite

@article{arxiv.2407.13852,
  title  = {SecureVAX: A Blockchain-Enabled Secure Vaccine Passport System},
  author = {Debendranath Das and Sushmita Ruj and Subhamoy Maitra},
  journal= {arXiv preprint arXiv:2407.13852},
  year   = {2024}
}
R2 v1 2026-06-28T17:46:34.790Z