使用以太坊和智能合约的安全投票网站

IF 3.8 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS Applied System Innovation Pub Date : 2023-08-10 DOI:10.3390/asi6040070
Abhay Singh, Ankush Ganesh, R. Patil, S Kumar, Ruchi Rani, S. Pippal
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引用次数: 1

摘要

投票是一个民主的过程,允许个人选择他们的领导人并表达他们的意见。然而,目前的实际投票情况涉及排长队、纸质选票和安全挑战。基于区块链的投票模型作为一种解决传统投票方法局限性的方法而出现。由于区块链是分布式和去中心化的,它使用哈希函数来保护交易,因此它极大地改进了现有的投票系统。这些数字平台消除了实际存在的需要,减少了文书工作,并通过透明和防篡改的区块链技术确保了投票的完整性。本文介绍了一种基于区块链的投票模型,以提高投票过程的可访问性、安全性和效率。本研究的重点是利用去中心化技术的优势,开发一个强大的、用户友好的投票系统。提出的模型通过创新和迭代的方法将以太坊作为底层区块链平台。该模型使用智能合约来记录和验证投票,同时集成了基于人工智能的面部识别技术来验证选民的身份。进行了严格的测试和分析,以验证所提出的基于区块链的投票模型的有效性和可靠性。该系统进行了广泛的模拟场景和压力测试,以评估其性能、安全性和可用性。
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Secure Voting Website Using Ethereum and Smart Contracts
Voting is a democratic process that allows individuals to choose their leaders and voice their opinions. However, the current situation with physical voting involves long queues, paper-based ballots, and security challenges. Blockchain-based voting models have appeared as a method to address the limitations of traditional voting methods. As blockchain is distributed and decentralized, which uses hash functions for securing transactions, it dramatically improves the existing voting system. These digital platforms eliminate the need for physical presence, reduce paperwork, and ensure the integrity of votes through transparent and tamper-proof blockchain technology. This paper introduces a blockchain-based voting model to enhance accessibility, security, and efficiency in the voting process. The research focuses on developing a robust and user-friendly voting system by leveraging the advantages of decentralized technology. The proposed model employs Ethereum as the underlying blockchain platform through an innovative and iterative approach. The model uses Smart contracts to record and validate votes, while AI-based facial recognition technology is integrated to verify the identity of voters. Rigorous testing and analysis are conducted to validate the effectiveness and reliability of the proposed blockchain-based voting model. The system underwent extensive simulation scenarios and stress tests to evaluate its performance, security, and usability.
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来源期刊
Applied System Innovation
Applied System Innovation Mathematics-Applied Mathematics
CiteScore
7.90
自引率
5.30%
发文量
102
审稿时长
11 weeks
期刊最新文献
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