基于环境噪声合成的多因素安全协议系统的开发

A. Imoize, Boluwatife Samuel Ben-Adeola, J. Adebisi
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引用次数: 2

摘要

全球范围内,特别是网络空间安全威胁不断升级,迫切需要部署复杂的措施来缓解这些灾难性威胁。为此,已经开发和部署了各种锁机制,以防止潜在入侵者访问控制系统。本文针对这个普遍存在的问题提供了一个解决方案,解决了对访问控制系统的物理和虚拟组件的关注。利用环境噪声作为熵输入,创建了本地生成的一次性密钥(otp)。该系统部署在Arduino微控制器上,该微控制器嵌入一个安全柜中,并使用12V电磁锁固定。该设计是根据标准指标实现和测试的。所取得的成果包括对现有本地OTP协议实现的算法优化,以及安全锁模块的实现,该模块通过安全的蓝牙连接与Android上开发的移动应用程序接口。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Multifactor-Security-Protocol System Using Ambient Noise Synthesis
The escalating cases of security threats on the global scene, especially in the cyberspace, demands urgent need to deploy sophisticated measures to mitigate these calamitous threats. To this end, various lock mechanisms have been developed and deployed to prevent access to control systems from potential intruders. This paper provides a solution to this pervasive problem, addressing concerns on the physical and virtual components of an access control system. A locally generated One-Time-Passkeys (OTPs) was created, leveraging ambient noise as entropy input. The system was deployed on an Arduino microcontroller embedded in a safe-cabinet secured with a 12V solenoid lock. The design was implemented and tested against standard metrics. Results achieved include algorithmic optimizations of existing local OTP protocol implementations, and the realization of a safe lock module, which interfaces with a mobile application developed on Android over a secured Bluetooth connection.
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