Development of Wireless Sensor Network for Environment Monitoring and Its Implementation Using SSAIL Technology.

Development of Wireless Sensor Network for Environment Monitoring and Its Implementation Using SSAIL Technology.
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DOI:
10.3390/s22145343
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发表时间:
2022-07-18
期刊:
Sensors (Basel, Switzerland)
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--
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其他
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物联网(IoT)技术及其应用程序正在将现实世界的事物变成智能对象,将所有内容集成在通用基础设施下,通过软件应用程序管理性能,并及时提供集成Web服务器的升级。生活质量、绿色经济和社会污染管理需要具有易于使用和维护功能的综合环境监测系统。本研究建议实施一个无线传感器网络与嵌入式传感器节点制造使用选择性表面活化激光技术。这种技术允许电路与自由形式的塑料传感器外壳集成。在这项工作中,开发了一种低成本的异步Web服务器,用于监测连接到ESP 32 Wi-Fi模块的温度和湿度传感器。来自整个设施的传感器节点的数据被收集并以实时图表的形式显示在Web服务器上。同一网络上的多个Web客户端可以访问传感器数据。传感器节点的能量可以通过从周围的电磁辐射源收集能量来供电。这种自动化和自供电系统可监控环境和气候因素,有助于及时采取行动,并通过允许在各种塑料上甚至在设备本身的主体上形成天线和射频电路来有益于传感器设计。它还在硬件修改和快速大规模部署方面提供了更大的灵活性。
The Internet of Things (IoT) technology and its applications are turning real-world things into smart objects, integrating everything under a common infrastructure to manage performance through a software application and offering upgrades with integrated web servers in a timely manner. Quality of life, the green economy, and pollution management in society require comprehensive environmental monitoring systems with easy-to-use features and maintenance. This research suggests implementing a wireless sensor network with embedded sensor nodes manufactured using the Selective Surface Activation Induced by Laser technology. Such technology allows the integration of electrical circuits with free-form plastic sensor housing. In this work, a low-cost asynchronous web server for monitoring temperature and humidity sensors connected to the ESP32 Wi-Fi module has been developed. Data from sensor nodes across the facility are collected and displayed in real-time charts on a web server. Multiple web clients on the same network can access the sensor data. The energy to the sensor nodes could be powered by harvesting energy from surrounding sources of electromagnetic radiation. This automated and self-powered system monitors environmental and climatic factors, helps with timely action, and benefits sensor design by allowing antenna and rf-circuit formation on various plastics, even on the body of the device itself. It also provides greater flexibility in hardware modification and rapid large-scale deployment.
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