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PUF-Based Key Distribution in Wireless Sensor Networks

机译:基于PUF的无线传感器网络密钥分布

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Physical Unclonable Functions (PUFs) can be seen as kind of hardware oneway functions, who are easily fabricated but difficult to clone, duplicate or predict. Therefore, PUFs with unclonable and unpredictable properties are welcome to be applied in designing lightweight cryptography protocols. In this paper, a Basic Key Distribution Scheme (Basic-KDS) based on PUFs is firstly proposed. Then, by employing different deployment modes, a Random Deployment Key Distribution Scheme (RD-KDS) and a Grouping Deployment Key Distribution Scheme (GD-KDS) are further proposed based on the Basic-KDS for large scale wireless sensor networks. In our proposals, a sensor is not pre-distributed with any keys but will generate one by the embedded PUF when receiving a challenge from the gateway, which provides perfect resilience against sensor capture attacks. Besides, the unclonable and unpredictable properties of PUF guarantee the key uniqueness and two-way authentication. Analysis and experiment results show that our proposals have better performances in improving the resilience, secure-connectivity, and efficiency as compared to other schemes.
机译:物理不可渗透的功能(PUF)可以看作是硬件单位功能,易于制造,但难以克隆,重复或预测。因此,欢迎具有不可渗透和不可预测的属性的PUF来设计轻量级密码协议。本文首先提出了基于PUFS的基本关键分配方案(基本KDS)。然后,通过采用不同的部署模式,基于用于大规模无线传感器网络的基本KD,进一步提出随机部署密钥分配方案(RD-KDS)和分组部署密钥分配方案(GD-KDS)。在我们的建议中,传感器不会与任何键预先分布,但在接收到网关的挑战时,将通过嵌入式PUF生成一个,这提供了对传感器捕获攻击的完美弹性。此外,PUF的不可推断和不可预测的属性保证了关键唯一性和双向身份验证。分析和实验结果表明,与其他方案相比,我们的建议具有更好地提高弹性,安全连接和效率。

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