一种适用于农业物联网应用的基于LoRa的高效OTA固件更新架构

Samy Sharf, Rafaat Abd Elhamied, Madonna K. Habib, A. Madian
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引用次数: 2

摘要

本文提出了一种可靠高效的OTA固件更新架构,该架构利用LoRa技术远程分发农业物联网应用的新固件更新。该架构由无处不在连接的硬件和软件系统组成,用于完成OTA固件更新过程。该软件系统是一个开发的桌面应用程序,使Ag-IoT运营商能够远程分发固件。硬件系统是固件上传电路,该电路接收来自软件系统的固件并对目标设备进行编程。本文的贡献在于将LoRa技术集成到农业物联网低功耗广域网的OTA固件分发中。该架构解决了在低功耗广域网中分发固件更新的问题。因为远程智能农场依赖于低功耗技术进行控制和监控。使用桌面应用程序将固件发送到远程上传电路进行仿真。实验工作在Microchip AVR ATmega8L低功耗微控制器板上进行,研究结果与所进行的仿真技术吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient OTA firmware updating Architecture based on LoRa suitable for agricultural IoT Applications
This paper proposes a reliable and efficient OTA firmware updating architecture, which utilizes LoRa technology for remotely distributing new firmware updates for agricultural IoT applications. The architecture is composed of ubiquitously connected hardware and software systems for completing the OTA firmware updating procedure. The software system is a developed desktop application that enables Ag-IoT operators to distribute firmware remotely. The hardware system is a firmware uploader circuit that receives firmware from the software system and programs the target device. The contribution of this paper is to integrate LoRa technology for OTA firmware distribution in low-power wide area networks of Agricultural IoT. This architecture solves the problem of distributing firmware updates in low-power wide-area networks. Since remote smart farms depend on low-power technologies for controlling and monitoring. A simulation is conducted using a desktop application for sending the firmware to the remote uploader circuit. Experimental work is carried on Microchip AVR ATmega8L low-power microcontroller board, and the studied results showed a technical match to the carried-on simulation.
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