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Session Key Derivation for Low Power IoT Devices

机译:低功耗IoT设备的会话密钥派生

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The Internet of Things (IoT) is growing at a rapid pace. With everyday applications and services becoming wirelessly networked, security still is a major concern. Many of these sensors and devices have limited resources, such as low power consumption, reduced memory storage, and reduced fixed point processing capabilities. Therefore, it is imperative that high performance security primitives are used to maximize the lifetime of these devices while minimally impacting memory storage and timing requirements. This paper presents a candidate key derivation function for low power IoT device keys, enabling the generation of a stream of session keys from a larger base key. These session keys allow for a reasonably robust private key cryptographic infrastructure suitable to low power reduced precision systems. Two methods are examined to ensure that the output for the key derivation function is reasonably indistinguishable from a uniform distribution and produces "good" keys. Simulations show that all methods show favorable outcomes and allow the derivation of variable length keys suitable for many different encryption schemes. Implementation resulted in very favorable energy consumption values for low power performance, ideal for IoT devices.
机译:物联网(IoT)的发展迅速。随着日常应用程序和服务变成无线网络,安全性仍然是一个主要问题。这些传感器和设备中的许多具有有限的资源,例如低功耗,减少的内存存储和减少的定点处理能力。因此,当务之急是使用高性能安全性原语来最大化这些设备的寿命,同时最小化影响存储器的存储和时序要求。本文提出了用于低功耗IoT设备密钥的候选密钥派生功能,从而能够从较大的基础密钥生成会话密钥流。这些会话密钥允许适用于低功耗,降低精度的系统的合理健壮的私钥加密基础结构。检验了两种方法,以确保密钥派生函数的输出与均匀分布在合理范围内没有区别,并产生“良好”密钥。仿真表明,所有方法都显示出令人满意的结果,并允许推导适用于许多不同加密方案的可变长度密钥。实施为低功耗性能带来了非常有利的能耗值,非常适合物联网设备。

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