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Harnessing Uncertainty in Photoresistor Sensor for True Random Number Generation in IoT Devices

机译:利用光阻传感器的不确定性在物联网设备中生成真正的随机数

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摘要

Internet of Things (IoT) has facilitated the connection of many smart devices via internet. Recent cyberattacks have shown that resource constrained IoT nodes are easy prey that lead towards compromising the secrecy of the data and vulnerabilities could be exploited remotely to take control of safety-critical systems. Photoresistor sensors have applications in IoT systems, such as smart street lighting, intelligent cameras, light activated smart consumer electronics, smart home, smart healthcare, etc. Building hardware security primitives, such as True Random Number Generator (TRNG), based on the intrinsic properties of photoresistor would be a novel direction to develop cost-savvy IoT security primitives. Therefore, this paper proposes a TRNG prototype that is devised from uncertainty presents in photoresistor sensors. The proposed TRNG prototype does not require any complex interfacing for preprocessing the weak signal, thereby reducing the unnecessary delay and the recurring hardware cost. The proposed prototype employs the novel approach of additive scrambling that aids to sample sensors at a higher rate. The proposed TRNG has an average random bit generation rate of 8 kbps that is better than the recent work in the literature. The quality of randomness was validated by 15 test batteries of NIST STS test.
机译:物联网(IoT)促进了许多智能设备通过Internet的连接。最近的网络攻击表明,资源受限的IoT节点很容易被捕食,从而导致破坏数据的保密性,并且可以远程利用这些漏洞来控制安全关键型系统。光电电阻传感器可在IoT系统中应用,例如智能路灯,智能相机,光激活的智能消费电子产品,智能家居,智能医疗保健等。基于内在函数构建硬件安全性原语,例如True Random Number Generator(TRNG)。光敏电阻的特性将是开发精打细算的物联网安全原语的新方向。因此,本文提出了一种TRNG原型,该原型是根据光敏电阻传感器中存在的不确定性设计的。提出的TRNG原型不需要任何复杂的接口即可对弱信号进行预处理,从而减少了不必要的延迟和重复出现的硬件成本。拟议的原型采用新颖的加扰方式,有助于以更高的速率采样传感器。所提出的TRNG具有8 kbps的平均随机比特生成率,比文献中的最新工作要好。通过15个NIST STS测试电池来验证随机性的质量。

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