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An Efficient Key Generation for the Internet of Things Based Synchronized Quantization

机译:基于物联网的同步量化的高效密钥生成

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摘要

One solution to ensure secrecy in the Internet of Things (IoT) is cryptography. However, classical cryptographic systems require high computational complexity that is not appropriate for IoT devices with restricted computing resources, energy, and memory. Physical layer security that utilizes channel characteristics is an often used solution because it is simpler and more efficient than classical cryptographic systems. In this paper, we propose a signal strength exchange (SSE) system as an efficient key generation system and a synchronized quantization (SQ) method as a part of the SSE system that synchronizes data blocks in the quantization phase. The SQ method eliminates the signal pre-processing phase by performing a multi-bit conversion directly from the channel characteristics of the measurement results. Synchronization is carried out between the two authorized nodes to ensure sameness of the produced keys so it can eliminate the error-correcting phase. The test results at the IoT devices equipped with IEEE 802.11 radio show that SSE system is more efficient in terms of computing time and communication overhead than existing systems.
机译:确保物联网(IoT)保密的一种解决方案是加密。但是,传统的密码系统需要很高的计算复杂度,这不适用于计算资源,能源和内存有限的IoT设备。利用通道特性的物理层安全性是一种常用的解决方案,因为它比传统的密码系统更简单,更有效。在本文中,我们提出了一种信号强度交换(SSE)系统作为一种有效的密钥生成系统,并提出了一种同步量化(SQ)方法作为将SSE系统在量化阶段同步数据块的一部分。 SQ方法通过直接根据测量结果的通道特性执行多位转换来消除信号预处理阶段。在两个授权节点之间执行同步,以确保产生的密钥的相同性,因此可以消除纠错阶段。在配备IEEE 802.11无线电的IoT设备上的测试结果表明,SSE系统在计算时间和通信开销方面比现有系统更有效。

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