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A Block-Chain Based Decentralized Mechanism to Ensure the Security of Electronic Voting System Using Solidity Language

  • P. Savaridassan,
  • Swapnil Lohani,
  • Harshal Gupta

摘要

Electronic voting systems face many security and privacy challenges, including vote tampering, data breaches, and DOS attacks. To address these issues, this research paper proposes a blockchain-based decentralized mechanism to ensure the security of electronic voting systems using the Solidity programming language. The proposed system utilizes smart contracts and decentralized consensus mechanisms ensuring the integrity and transparency of the process. The system provides secure access controls, data encryption, and identity management features to prevent unauthorized access and data breaches. To evaluate the proposed system’s effectiveness, a simulation is conducted using Ganache, a blockchain development tool. The simulation tests the system’s functionality and security by simulating different voting scenarios and verifying the results. The simulation’s findings indicate that the suggested approach is successful in preserving the security and reliability of electronic voting systems. The proposed system’s use of blockchain technology and Solidity programming language provides many benefits, including transparency, immutability, and privacy. This research paper contributes to the development of secure and reliable electronic voting systems and highlights the importance of using blockchain technology and Solidity language to ensure the fairness and transparency of the voting process.