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A PUF-based secure wake-up scheme for Internet of Things

机译:基于PUF的安全唤醒方案,用于物联网

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摘要

Internet of Things (IoT) are typically powered by limited-capacity batteries. Thus, reducing energy consumption is a critical issue for the success of IoT. Recently, Wake-up Radios (WuRs) play a key role in minimizing the energy consumption by providing wake-up calls to IoT devices which are currently in a low-power sleep mode to conserve energy. On receiving a pre-defined pattern called a Wake-up Token (WuT) over the WuR, the IoT device wakes up in order to process information and/or conduct communications. However, WuR-based IoT devices are susceptible to malicious attacks, such as Denial-of-Sleep attacks designed to drain the device of its energy, or cloning attacks designed to impersonate a legitimate IoT device and perform various nefarious activities. To address these problems, the present study proposes a novel one-time wake-up token using the Physical Unclonable Function (PUF). In addition, to prevent the WuT from becoming desynchronized thereby resulting in a connection loss, a WuT resynchronization scheme is designed to maintain a constant state of synchronization between the WuTs of the gateway and the IoT devices, respectively. Finally, the proposed schemes are extended to support group wake-up and resynchronization procedures, respectively, in order to enhance the communication efficiency and improve the energy conservation. The correctness of the proposed schemes is verified through AUTLOG analysis. It has been shown that the proposed schemes are secure against various types of attacks and consume significantly less energy than existing mechanisms in waking up an IoT device.
机译:物联网(物联网)通常由有限容量的电池供电。因此,减少能源消耗是IOT成功的关键问题。最近,唤醒无线电(WURS)通过向目前处于低功率睡眠模式的IOT设备来最小化能量消耗来发挥关键作用,该唤醒呼叫是以低功率睡眠模式来节省能量的影响。在接收到WUR上的预定义模式,IOT设备唤醒以处理信息和/或进行通信。然而,基于Wur的IoT设备易于恶意攻击,例如拒绝睡眠攻击,旨在排出其能量的设备,或者克隆攻击旨在模拟合法的IOT设备并执行各种邪恶的活动。为了解决这些问题,本研究提出了使用物理不可渗透功能(PUF)的新颖一次性唤醒令牌。另外,为了防止WUT成为去同步,从而导致连接丢失,旨在分别维持网关的WUT和物联网之间的WUT之间的恒定同步状态。最后,延长了建议的方案,分别扩展到支持组唤醒和重新同步程序,以提高通信效率并改善节能。通过Autlog分析验证了所提出的方案的正确性。已经表明,该方案对各种类型的攻击是安全的,并且比唤醒IOT设备的现有机制消耗明显更少的能量。

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