用于智能家居和楼宇自动化的多协议物联网网关和WiFi/BLE传感器节点:设计与实现

Kanitkorn Khanchuea, Rawat Siripokarpirom
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引用次数: 23

摘要

本文介绍了一种基于多跳无线网络的智能家居和楼宇自动化多协议网关的设计与实现。本文介绍了如何使用低成本的2.4GHz商用WiFi/BLE SoC模块,构建这样一个基于多跳树的无线网络,与ZigBee网状网络共存。该网关支持与其他传感器节点的有线和无线连接,包括RS485/Modbus现场总线和基于两种不同协议的无线网络,即Espressif Systems开发的ESP-Now点对点无线协议和ZigBee协议。本文采用ESP-NOW协议构建核心低功耗多跳无线网络,采用ZigBee标准构建传感器节点子网。一台运行嵌入式Linux操作系统的单板计算机(SBC)被选为实现提议的物联网网关的平台,该网关利用MQTT协议进行消息传递。通过现场实验,对多达5跳的ESP-Now多跳无线网络的性能进行了评估。为了说明所建议的网关的功能,提出了一个用例,其中开发了一个楼宇自动化系统原型,用于控制和管理空调和交流电表单元。
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A Multi-Protocol IoT Gateway and WiFi/BLE Sensor Nodes for Smart Home and Building Automation: Design and Implementation
This paper presents the design and implementation of a multi-protocol gateway that relies on a multi-hop wireless network for smart home and building automation applications. This paper describes how to construct such a multi-hop tree-based wireless network to coexist with ZigBee mesh networks, using low-cost commodity 2.4GHz WiFi/BLE SoC modules. The gateway supports both wired and wireless connectivities to other sensor nodes, including the RS485/Modbus fieldbus and wireless networks based on two different protocols, namely the ESP-Now peer-to-peer wireless protocol developed by Espressif Systems and the ZigBee protocol. In this work, the ESP-NOW protocol was utilized to construct the core low-power multi-hop wireless network, whereas the ZigBee standard was used to build subnetworks of sensor nodes. A single-board computer (SBC), running an embedded Linux operating system, was chosen as a platform for implementing the proposed IoT gateway which utilized the MQTT protocol for message delivery. Field experiments were conducted to evaluate the performance of the ESP-Now multi-hop wireless network, comprised of up to 5 hops. To illustrate the functionality of the proposed gateway, a use case was presented, in which a building automation system prototype was developed for control and management of air-conditioners and AC power meter units.
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