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首页> 外文期刊>International Journal of Computer Mathematics: Computer Systems Theory >An efficient secret key agreement protocol based on random noise without beacons
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An efficient secret key agreement protocol based on random noise without beacons

机译:基于无信标的随机噪声的高效秘密密钥协商协议

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摘要

Computationally lightweight and unconditionally secure key agreement protocols are very useful for secure communication in public networks, especially for sensors with limited computing resources. In 2017, Guan and Tseng proposed a key agreement protocol which is computationally lightweight and unconditionally secure. In their protocol, it was assumed that the two communicating nodes can receive random bit string from a beacon node. Random bit string plays an important role in the generation of secret keys. With the advancement of hardware and software technologies, sensors may be able to generate good random strings. In this paper, we consider the case that the sensor nodes can generate random bit strings for secret keys. Therefore, no beacon nodes are required. The results of this study show that a key agreement protocol can be much more effective and efficient in the case that the communicating nodes can generate good random bit strings.
机译:计算轻便和无条件安全的密钥协商协议对于公共网络中的安全通信非常有用,尤其是对于计算资源有限的传感器。在2017年,Guan和Tseng提出了一个关键协议协议,该协议计算量轻且无条件安全。在他们的协议中,假设两个通信节点可以从信标节点接收随机位串。随机位串在密钥生成中起着重要作用。随着硬件和软件技术的进步,传感器可能能够生成良好的随机字符串。在本文中,我们考虑了传感器节点可以为密钥生成随机位串的情况。因此,不需要信标节点。这项研究的结果表明,在通信节点可以生成良好的随机比特串的情况下,密钥协商协议可以更加有效。

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