基于RT-Thread的低功耗环境监测与节能控制系统
Low-Power Environmental Monitoring and Energy-Saving Control System Based on RT-Thread
摘要: 在工业园、校园等人员密集的高密度场景中,普遍存在人员离场后电器持续空转的现象,造成能源的极大浪费。针对这一痛点,我们精心研发了低功耗环境监测与节能控制系统。该系统暂定使用英飞凌PSoC6为主控核心,构建起高效智能的智能体系。系统集成雷达、温湿度、红外等多类型传感器,能够精准捕捉人员活动轨迹与环境参数变化。用户可通过按键操作,在OLED屏幕上直观查看实时检测数据与电器运行状态。同时,CYW43012WiFi模块作为数据传输桥梁,借助MQTT协议将传感器采集的数据稳定上传至OneNET云平台。在云端进行数据边缘处理结合预设逻辑进行分析判断,并将控制指令回传至主控,实现对电器的智能启停控制。此外,系统配套开发的网页端,不仅能实时可视化展示各类监测数据,还支持用户远程操控电器,打破空间限制,真正做到节能管理便捷化、智能化。
Abstract: In densely populated areas like industrial parks and campuses, the persistent idling of electrical appliances after people leave is a common phenomenon, leading to significant energy waste. Ad-dressing this pain point, we have meticulously developed a low-power environment monitoring and energy-saving control system. This system tentatively uses Infineon PSoC6 as the main control core to build an efficient and intelligent system. Integrating multiple types of sensors, including radar, temperature and humidity, and infrared, the system can accurately capture personnel activity trajectories and changes in environmental parameters. Users can intuitively view real-time detection data and appliance operating status on the OLED screen through button operations. Meanwhile, the CYW43012 WiFi module serves as a data transmission bridge, leveraging the MQTT protocol to stably upload sensor-collected data to the OneNET cloud platform. Data edge processing is performed in the cloud, combined with preset logic for analysis and judgment, and control instructions are sent back to the main controller to achieve intelligent start-stop control of electrical appliances. In addition, the system’s supporting web interface not only visualizes various monitoring data in real-time but also supports users in remotely controlling appliances, breaking spatial re-strictions and truly achieving convenient and intelligent energy management.
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