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Lightweight Sensor Authentication Scheme for Energy Efficiency in Ubiquitous Computing Environments

机译:普适计算环境中能效的轻型传感器认证方案

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The Internet of Things (IoT) is the intelligent technologies and services that mutually communicate information between humans and devices or between Internet-based devices. In IoT environments, various device information is collected from the user for intelligent technologies and services that control the devices. Recently, wireless sensor networks based on IoT environments are being used in sectors as diverse as medicine, the military, and commerce. Specifically, sensor techniques that collect relevant area data via mini-sensors after distributing smart dust in inaccessible areas like forests or military zones have been embraced as the future of information technology. IoT environments that utilize smart dust are composed of the sensor nodes that detect data using wireless sensors and transmit the detected data to middle nodes. Currently, since the sensors used in these environments are composed of mini-hardware, they have limited memory, processing power, and energy, and a variety of research that aims to make the best use of these limited resources is progressing. This paper proposes a method to utilize these resources while considering energy efficiency, and suggests lightweight mutual verification and key exchange methods based on a hash function that has no restrictions on operation quantity, velocity, and storage space. This study verifies the security and energy efficiency of this method through security analysis and function evaluation, comparing with existing approaches. The proposed method has great value in its applicability as a lightweight security technology for IoT environments.
机译:物联网(IoT)是在人与设备之间或基于Internet的设备之间相互通信信息的智能技术和服务。在物联网环境中,会从用户那里收集各种设备信息,以控制设备的智能技术和服务。近来,基于IoT环境的无线传感器网络已被广泛用于医学,军事和商业等领域。具体来说,在信息技术的未来,已经包括了在微不足道的区域(例如森林或军事区)中分配智能灰尘后,通过微型传感器收集相关区域数据的传感器技术。利用智能尘埃的物联网环境由传感器节点组成,这些传感器节点使用无线传感器检测数据并将检测到的数据传输到中间节点。当前,由于在这些环境中使用的传感器由微型硬件组成,因此它们的内存,处理能力和能源有限,并且各种旨在充分利用这些有限资源的研究正在进行中。本文提出了一种在考虑能源效率的同时利用这些资源的方法,并提出了一种基于哈希函数的轻量级相互验证和密钥交换方法,该哈希函数对操作量,速度和存储空间没有限制。通过与现有方法的安全性分析和功能评估,本研究验证了该方法的安全性和能效。所提出的方法在作为物联网环境的轻量级安全技术的适用性方面具有巨大的价值。

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