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首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Wireless Sensor Network to Monitor Spatio- Temporal Thermal Comfort of Polyhouse Environment
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Wireless Sensor Network to Monitor Spatio- Temporal Thermal Comfort of Polyhouse Environment

机译:无线传感器网络可监测温室环境的时空热舒适度

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Precision agriculture is an innovative technology, wherein the crops are cultivated in controlled environment. Emphasizing the need of precision agriculture, an electronic system is designed to provide thermal comfort to the crops of polyhouse environment, wherein an ubiquitous technology, Wireless Sensor Network (WSN) is deployed. To realize the establishment of wireless sensor network, a wireless sensor node is designed using embedded philosophy and presented in this paper. Availing promising features of AVR ATmega 8L microcontroller, the wireless sensor node is designed to monitor the thermal status of the polyhouse environment in spatio-temporal domain. The precision temperature sensor LM35 is employed to read the thermal status. Moreover, the signal conditioning circuit is wired about TLC 271, which operates on one power supply only and exhibiting very high input impedance with rail to rail input. An analog signal is digitized with on chip analog to digital converter with 10 bit resolution. The controlling unit is also designed to activate the heater as well as ventilators. To ensure wireless communication, the Zigbee model from Digi corporation is deployed as RF module. The sensor nodes are calibrated to the real unit and its performance is confirmed by comparing the results with standard digital thermometer. Each sensor node is assigned with network ID and it communicates the data with the respective ID in star topology. The present wireless sensor network is deployed in the polyhouse to monitor thermal status. It works continuously and precisely to hold control on temperature of the domain with great reliability.
机译:精准农业是一项创新技术,其中的农作物在受控的环境中种植。为了强调对精确农业的需求,设计了一种电子系统,为温室环境中的农作物提供热舒适性,其中部署了无处不在的技术无线传感器网络(WSN)。为了实现无线传感器网络的建立,本文提出了一种基于嵌入式原理的无线传感器节点。无线传感器节点具有AVR ATmega 8L微控制器的有前途的功能,旨在监视时空范围内的温室环境的热状态。精密温度传感器LM35用于读取热状态。此外,信号调理电路绕着TLC 271布线,TLC 271仅在一个电源上工作,并且在轨到轨输入时表现出非常高的输入阻抗。使用片上模数转换器以10位分辨率将模拟信号数字化。控制单元还设计用于启动加热器和通风机。为了确保无线通信,将Digi Corporation的Zigbee模型部署为RF模块。传感器节点已根据实际单位进行了校准,并通过将结果与标准数字温度计进行比较来确认其性能。每个传感器节点都分配有网络ID,并以星形拓扑结构与各自的ID通信数据。当前的无线传感器网络被部署在温室中以监视热状态。它连续且精确地工作,以非常可靠的方式控制域温度。

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