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IoT-ID: A Novel Device-Specific Identifier Based on Unique Hardware Fingerprints

机译:IoT-ID:基于唯一硬件指纹的新型设备特定标识符

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A significant number of IoT devices are being deployed in the wild, mostly in remote locations and in untrusted conditions. This could include monitoring an electronic perimeter fence or a critical infrastructure such as telecom and power grids. Such applications rely on the fidelity of data reported from the IoT devices, and hence it is imperative to identify the trustworthiness of the remote device before taking decisions. Existing approaches use a secret key usually stored in volatile or non-volatile memory for creating an encrypted digital signature. However, these techniques are vulnerable to malicious attacks and have significant computation and energy overhead. This paper presents a novel device-specific identifier, IoT-ID that captures the device characteristics and can be used towards device identification. IoT-ID is based on physically unclonable functions (PUFs), that exploit variations in the manufacturing process to derive a unique fingerprint for integrated circuits. In this work, we design novel PUFs for Commercially Off the Shelf (COTS) components such as clock oscillators and ADC, to derive IoT-ID for a device. Hitherto, system component PUFs are invasive and rely on additional dedicated hardware circuitry to create a unique fingerprint. A highlight of our PUFs is doing away with special hardware. IoT-ID is non-invasive and can be invoked using simple software APIs running on COTS components. IoT-ID has the following key properties viz., constructability, real-time, uniqueness, and reproducibility, making them robust device-specific identifiers. We present detailed experimental results from our live deployment of 50 IoT devices running over a month. Our edge machine learning algorithm has 100% accuracy in uniquely identifying the 50 devices in our deployment and can run locally on the resource-constrained IoT device. We show the scalability of IoT-ID with the help of numerical analysis on 1000s of IoT devices.
机译:大量IoT设备正在野外部署,大部分部署在偏远地区和不受信任的条件下。这可能包括监视电子围栏或关键基础设施,例如电信和电网。这样的应用程序依赖于从IoT设备报告的数据的保真度,因此必须在做出决定之前确定远程设备的可信度。现有方法使用通常存储在易失性或非易失性存储器中的密钥来创建加密的数字签名。但是,这些技术容易受到恶意攻击,并且具有巨大的计算量和能源开销。本文提出了一种新颖的特定于设备的标识符IoT-ID,它可以捕获设备特征并可以用于设备识别。 IoT-ID基于物理不可克隆的功能(PUF),可利用制造过程中的变化为集成电路得出唯一的指纹。在这项工作中,我们为时钟振荡器和ADC等商用现货(COTS)组件设计了新颖的PUF,以得出设备的IoT-ID。迄今为止,系统组件PUF具有侵入性,并且依赖于其他专用硬件电路来创建唯一的指纹。我们的PUF的一大亮点是消除了特殊的硬件。 IoT-ID是非侵入性的,可以使用在COTS组件上运行的简单软件API进行调用。 IoT-ID具有以下关键属性,即可构造性,实时性,唯一性和可重复性,使它们成为特定于设备的可靠标识符。我们展示了一个月运行50台IoT设备的实时部署的详细实验结果。我们的边缘机器学习算法在唯一地识别我们部署中的50个设备时具有100%的准确性,并且可以在资源受限的IoT设备上本地运行。我们借助对数千个IoT设备的数值分析来显示IoT-ID的可扩展性。

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