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A Full Connectable and High Scalable Key Pre-distribution Scheme Based on Combinatorial Designs for Resource-Constrained Devices in IoT Network

机译:基于IOT网络资源受限设备组合设计的完全可连接和高可扩展的键预分配方案

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摘要

Considering the internet of things (IoT), end nodes such as wireless sensor network, RFID and embedded systems are used in many applications. These end nodes are known as resource-constrained devices in the IoT network. These devices have limitations such as computing and communication power, memory capacity and power. Key pre-distribution schemes (KPSs) have been introduced as a lightweight solution to key distribution in these devices. Key pre-distribution is a special type of key agreement that aims to select keys called session keys in order to establish secure communication between devices. One of these design types is the using of combinatorial designs in key pre-distribution, which is a deterministic scheme in key pre-distribution and has been considered in recent years. In this paper, by introducing a key pre-distribution scheme of this type, we stated that the model introduced in the two benchmarks of KPSs comparability had full connectivity and scalability among the designs introduced in recent years. Also, in recent years, among the combinatorial design-based key pre-distribution schemes, in order to increase resiliency as another criterion for comparing KPSs, attempts were made to include changes in combinatorial designs or they combine them with random key pre-distribution schemes and hybrid schemes were introduced that would significantly reduce the design connectivity. In this paper, using theoretical analysis and maintaining full connectivity, we showed that the strength of the proposed design was better than the similar designs while maintaining higher scalability.
机译:考虑到事物(IOT),在许多应用中使用诸如无线传感器网络,RFID和嵌入式系统的终端节点。这些端部节点称为IOT网络中的资源受限设备。这些设备具有限制,例如计算和通信功率,存储容量和电源。密钥预分配方案(KPS)已被引入为这些设备中的密钥分布的轻量级解决方案。键预分发是一种特殊类型的关键协议,旨在选择称为会话密钥的键,以便在设备之间建立安全通信。其中一个设计类型是在关键预分发中使用组合设计,这是主要预分配中的确定性方案,近年来被认为是。本文通过引入这种类型的关键预分配方案,我们表示,在近年来推出的两个基准中引入的模型在近年来推出的设计中具有完全的连接和可扩展性。此外,近年来,在基于组合设计的关键预分配方案中,为了增加弹性作为比较KPS的另一个标准,尝试包括组合设计的变化,或者它们将它们与随机键预分配方案组合起来介绍了混合体系统,将显着降低设计连接。在本文中,使用理论分析和保持完全连接,我们表明所提出的设计的强度优于类似的设计,同时保持更高的可扩展性。

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