The design of wireless sensor terminal on Internet of Things of power transmission and transformation equipment

Lingzhi Zhang, Jie Bai, Zhigang Wang, Chunling Zhang, Dan Wang, Jinan Li, Gaoquan Ding
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Abstract

The system design architecture of wireless sensor terminal is introduced in detail. The wireless sensor terminal is composed of M263 Series NuMicro MCU, bme680 sensor of Bosch and Lora wireless communication module. This paper comprehensively considers the functions of each module, communication reliability, power consumption and power saving, and expounds the design points and principles in detail. As the main control software, MCU is responsible for realizing the functions of driving and business processing, As an environmental sensor, bme680 can collect temperature, humidity, air pressure and other information. The communication protocol of Lora wireless communication module adopts the micro power wireless network communication protocol of the Internet of things for power transmission and transformation equipment of the State Grid. Bme680 is responsible for collecting environment information to MCU. MCU and wireless communication module interact with each other through serial port. The wireless communication module transmits data to and receives information from the sink node through wireless mode, so as to realize intelligent management of power equipment operation. Based on the realization of service functions, this paper focuses on the design of MCU software and wireless communication module, as well as the power consumption and power saving of sensor terminals.
物联网输变电设备无线传感器终端的设计
详细介绍了无线传感器终端的系统设计体系结构。无线传感器终端由M263系列nummicro单片机、博世bme680传感器和Lora无线通信模块组成。本文综合考虑了各模块的功能、通信可靠性、功耗和节电性,详细阐述了设计要点和设计原则。bme680作为主控软件,MCU负责实现驱动和业务处理等功能,作为环境传感器,bme680可以采集温度、湿度、气压等信息。Lora无线通信模块的通信协议采用国网输变电设备物联网微功率无线网络通信协议。Bme680负责将环境信息采集到单片机。单片机与无线通信模块通过串口进行交互。无线通信模块通过无线方式向汇聚节点发送数据和接收信息,从而实现对电力设备运行的智能化管理。在实现服务功能的基础上,重点设计了单片机软件和无线通信模块,以及传感器终端的功耗和节电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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