ZigBee-based Temperature Controlling System for Agricultural Greenhouses

Min Xiao, Mingzi Xiao, Jing Liang, Yan Shi
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Abstract

this paper introduced a temperature controlling system designed for agricultural greenhouses by making use of the ZigBee technology. DS18B20, the in-line temperature sensor was used for temperature collection, which can be transformed into a digit directly. In wireless communication, ZigBee, the protocol stack was used for relevant modification on the application layer so as to implement wireless communication over the ZigBee protocol. The whole temperature collection process and wireless communication were all completed by the CC2530 functional node module by IAR Embedded Workbench, which was an integrated development environment. One functional node of CC2530 was designed to collect temperature and send it as a terminal node. The other functional node of CC2530 was responsible for receiving temperature as a coordinator and transmit the temperature to the STM32F103RBT6 development board by the serial port communication technology. The collected temperature can be shown on the 3.2-inch TFT LCD screen and the display drive can be completed on the STM32F103RBT6 board, on which the rotation of the stepping motor can be driven. The whole development process was implemented by the MDK software developed by Keil. The data can be transmitted between the CC2530 functional node module and the STM32F103RBT6 development board by the serial communication technology. Ultimately, the system test indicated that data can be transmitted correctly and the transmission is stable so that the greenhouse management requirement can be met.
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基于zigbee的农业大棚温度控制系统
本文介绍了一种利用ZigBee技术设计的农业大棚温度控制系统。采用DS18B20在线温度传感器进行温度采集,可直接转换为数字。在无线通信中,采用ZigBee协议栈对应用层进行相应修改,从而实现基于ZigBee协议的无线通信。整个温度采集过程和无线通信均由CC2530功能节点模块在集成开发环境IAR Embedded Workbench中完成。设计了CC2530的一个功能节点,用于采集温度并作为终端节点发送。CC2530的另一个功能节点作为协调器负责接收温度,并通过串口通信技术将温度发送到STM32F103RBT6开发板。采集到的温度可以在3.2英寸TFT液晶屏上显示,在STM32F103RBT6板上完成显示驱动,驱动步进电机旋转。整个开发过程由Keil公司开发的MDK软件实现。CC2530功能节点模块与STM32F103RBT6开发板之间通过串行通信技术实现数据传输。最终,系统测试表明,数据传输正确,传输稳定,满足温室管理要求。
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