Expert Review and Strategic Redesign of the IOT Based High-Assurance Examination Security System
编号:49 访问权限:仅限参会人 更新:2025-11-19 09:23:09 浏览:6次 张贴报告

报告开始:暂无开始时间(Asia/Amman)

报告时间:暂无持续时间

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摘要
This strategic review addresses the critical integrity crisis in the Indian public examination system, evidenced by approximately 64–70 paper leak incidents reported across 19 states between 2019 and 2024, impacting millions of job aspirants. The study audits a proposed multi-layered IoT physical security system designed to safeguard confidential examination materials within a "Smart Strong Room." The analysis identifies a critical vulnerability gap: the reliance on prototyping-grade Commercial Off-the-Shelf (COTS) hardware (such as Arduino microcontrollers and low-cost biometric sensors) is insufficient for high-security applications, exposing the system to cyber-physical attacks, including RF jamming, side-channel analysis, and voltage glitching. Crucially, the paper establishes the mandatory requirement for the system's design and commercialization to comply with the stringent legal liability framework imposed by the Public Examinations (Prevention of Unfair Means) Act, 2024, which mandates fines up to ₹1 crore for service provider negligence. The study mandates a strategic pivot towards high-assurance engineering, recommending industrial-grade Programmable Logic Controllers (PLCs), EAL-certified biometric authentication, robust resilience features, and the expansion of the system scope to include end-to-end logistics tracking and tamper detection protocols necessary for verifiable accountability and national scalability.
This strategic review addresses the critical integrity crisis in the Indian public examination system, evidenced by approximately 64–70 paper leak incidents reported across 19 states between 2019 and 2024, impacting millions of job aspirants. The study audits a proposed multi-layered IoT physical security system designed to safeguard confidential examination materials within a "Smart Strong Room." The analysis identifies a critical vulnerability gap: the reliance on prototyping-grade Commercial Off-the-Shelf (COTS) hardware (such as Arduino microcontrollers and low-cost biometric sensors) is insufficient for high-security applications, exposing the system to cyber-physical attacks, including RF jamming, side-channel analysis, and voltage glitching. Crucially, the paper establishes the mandatory requirement for the system's design and commercialization to comply with the stringent legal liability framework imposed by the Public Examinations (Prevention of Unfair Means) Act, 2024, which mandates fines up to ₹1 crore for service provider negligence. The study mandates a strategic pivot towards high-assurance engineering, recommending industrial-grade Programmable Logic Controllers (PLCs), EAL-certified biometric authentication, robust resilience features, and the expansion of the system scope to include end-to-end logistics tracking and tamper detection protocols necessary for verifiable accountability and national scalability.
 
关键词
IoT Security, High-Assurance Systems, Examination Integrity, Public Examinations Act 2024, Physical Access Control, Biometric Authentication, Supply Chain Security,,Critical Infrastructure.
报告人
ABHISHEK PUROHIT
Assistant Professor BIKANER TECHNICAL UNIVERSITY

稿件作者
ABHISHEK PUROHIT BIKANER TECHNICAL UNIVERSITY
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重要日期
  • 会议日期

    12月29日

    2025

    12月31日

    2025

  • 11月30日 2025

    初稿截稿日期

  • 12月30日 2025

    报告提交截止日期

  • 12月30日 2025

    注册截止日期

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国际科学联合会
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扎尔卡大学
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