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Low-Cost Conversion of Single-Zone HVAC Systems to Multi-Zone Control Systems Using Low-Power Wireless Sensor Networks

机译:使用低功耗无线传感器网络对多区控制系统的单区域HVAC系统的低成本转换

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摘要

This paper presents a novel approach to convert a conventional house air conditioning installation into a more efficient system that individually controls the temperature of each zone of the house through Wi-Fi technology. Each zone regulates the air flow depending on the detected temperature, providing energy savings and increasing the machine performance. Therefore, the first step was to examine the communication bus of the air conditioner and obtain the different signal codes. Thus, an alternative Controller module has been designed and developed to control and manage the requests on the communication bus (Bus–Wi-Fi gateway). A specific circuit has been designed to adapt the signal of the serial port of the Controller with the communication bus. For the acquisition of the temperature and humidity data in each zone, a Node module has been developed, which communicates with the Controller through the Wi-Fi interface using the Message Queuing Telemetry Transport (MQTT) protocol with Secure Sockets Layer / Transport Layer Security (SSL/TLS) certificates. It has been equipped with an LCD touch screen as a human-machine interface. The Controller and the Node modules have been developed with the ultra-low power consumption CC3200 microController of Texas Instruments and the code has been implemented under the TI-RTOS real-time operating system. An additional module based on the Raspberry Pi computer has been designed to create the Wi-Fi network and implement the required network functionalities. The developed system not only ensures that the temperature in each zone is the desired one, but also controls the fan velocity of the indoor unit and the opening area of the vent registers, which considerably improves the efficiency of the system. Compared with the single-zone system, the experiments carried out show energy savings between 75% and 94% when only one of the zones is selected, and 44% when the whole house is air-conditioned, in addition to considerably improving user comfort.
机译:本文提出了一种新颖的方法,将传统的房屋空调安装转换成更有效的系统,通过Wi-Fi技术单独控制房屋的每个区域的温度。每个区域根据检测到的温度调节空气流量,提供节能并增加机器性能。因此,第一步是检查空调的通信总线并获得不同的信号码。因此,已经设计并开发了替代控制器模块以控制和管理通信总线(总线Wi-Fi网关)上的请求。特定电路设计用于使控制器的串口信号与通信总线适应。为了获取每个区域中的温度和湿度数据,已经开发了一个节点模块,该节点模块通过Wi-Fi接口通过具有安全套接字层/传输层安全性的消息排队遥测传输(MQTT)协议与控制器通信( SSL / TLS)证书。它配备了LCD触摸屏作为人机界面。控制器和节点模块已经使用TEXAS仪器的超低功耗CC3200微控制器开发,并且在TI-RTOS实时操作系统下已经实现了代码。基于Raspberry PI计算机的附加模块旨在创建Wi-Fi网络并实现所需的网络功能。开发系统不仅确保每个区域中的温度是所需的,而且还控制室内单元的风扇速度和通风口寄存器的开口面积,这显着提高了系统的效率。与单区域系统相比,在仅选择其中一个区域时,进行的实验表明节能在75%和94%之间,当整个房屋空调时,44%,除了大大提高用户舒适性。

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