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无线传感器网络中物联网微控制器设备温度与区块链能耗之间的相关性评估。

Evaluation of Correlation between Temperature of IoT Microcontroller Devices and Blockchain Energy Consumption in Wireless Sensor Networks.

作者信息

Arachchige Kithmini Godewatte, Branch Philip, But Jason

机构信息

Department of Telecommunications, Electrical, Robotics and Biomedical Engineering, Swinburne University, Melbourne 3122, Australia.

出版信息

Sensors (Basel). 2023 Jul 10;23(14):6265. doi: 10.3390/s23146265.

Abstract

Blockchain technology is an information security solution that operates on a distributed ledger system. Blockchain technology has considerable potential for securing Internet of Things (IoT) low-powered devices. However, the integration of IoT and blockchain technologies raises a number of research issues. One of the most important is the energy consumption of different blockchain algorithms. Because IoT devices are typically low-powered battery-powered devices, the energy consumption of any blockchain node must be kept low. IoT end nodes are typically low-powered devices expected to survive for extended periods without battery replacement. Energy consumption of blockchain algorithms is an important consideration in any application that combines both technologies, as some blockchain algorithms are infeasible because they consume large amounts of energy, causing the IoT device to reach high temperatures and potentially damaging the hardware; they are also a possible fire hazard. In this paper, we examine the temperatures reached in devices used to process blockchain algorithms, and the energy consumption of three commonly used blockchain algorithms running on low-powered microcontrollers communicating in a wireless sensor network. We found temperatures of IoT devices and energy consumption were highly correlated with the temperatures reached. The results indicate that device temperatures reached 80 °C. This work will contribute to developing energy-efficient blockchain-based IoT sensor networks.

摘要

区块链技术是一种在分布式账本系统上运行的信息安全解决方案。区块链技术在保障物联网(IoT)低功耗设备安全方面具有巨大潜力。然而,物联网与区块链技术的融合引发了一些研究问题。其中最重要的问题之一是不同区块链算法的能耗。由于物联网设备通常是由低功耗电池供电的设备,任何区块链节点的能耗都必须保持在较低水平。物联网终端节点通常是低功耗设备,预计在无需更换电池的情况下长时间运行。在任何结合了这两种技术的应用中,区块链算法的能耗都是一个重要的考虑因素,因为一些区块链算法不可行,因为它们消耗大量能量,导致物联网设备温度过高,可能损坏硬件;它们还可能引发火灾隐患。在本文中,我们研究了用于处理区块链算法的设备所达到的温度,以及在无线传感器网络中通信的低功耗微控制器上运行的三种常用区块链算法的能耗。我们发现物联网设备的温度和能耗与所达到的温度高度相关。结果表明设备温度达到了80°C。这项工作将有助于开发基于区块链的节能物联网传感器网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/953b/10386042/8dacb003d0e6/sensors-23-06265-g001.jpg

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