基于ZigBee和云平台的葡萄霜霉病防控系统的设计与应用Design and application of grape downy mildew prevention and control system based on ZigBee and cloud platform
杨宁,来智勇,苏鹏飞,刘斌
摘要(Abstract):
以防控葡萄霜霉病为背景,针对传统喷施农药的方法无法避免果实残毒和食品安全等问题,设计并实现基于ZigBee和云平台的葡萄霜霉病防控系统。该系统采用CC2530构建ZigBee环境监控网络,根据实时采集的空气相对湿度、光照强度参数进行数据整合,整合数据与预设病变阈值参数对比,确定控制节点的开启与关闭以实现智能防控,提高系统防控的有效性;另外,系统基于TCP/IP协议的GPRS通信实现数据交互,用户通过远程监控中心可对葡萄生长环境进行实时监测和病变阈值在线决策。通过实地运行测试,试验表明该系统功能可靠、运行稳定、操作方便,具有一定的应用前景。
关键词(KeyWords): 葡萄霜霉病;ZigBee;云平台;病变阈值;数据整合;GPRS
基金项目(Foundation): 中国博士后科学基金(2017M613216);; 陕西省博士后基金(2016BSHEDZZ121)~~
作者(Author): 杨宁,来智勇,苏鹏飞,刘斌
DOI: 10.16652/j.issn.1004-373x.2018.24.044
参考文献(References):
- [1] ROUXEL M,MESTRE P,BAUDOIN A,et al. Geographic distribution of cryptic species of Plasmopara viticola causing downy mildew on wild and cultivated grape in eastern North America[J]. Phytopathology,2014,104(7):692-701.
- [2] SAPKAL R T,TAMBE T B,MORE T A. Effectiveness of fungicides against downy mildew disease of grapevines[J/OL].[2000-10-21]. http://agris.fao.org/agris-search/search.do?recordID=IN2001000541.
- [3]龙世林,胡瑾,房小晶,等.葡萄霜霉病研究进展[J].耕作与栽培,2015(4):65-67.LONG Shilin,HU Jin,FANG Xiaojing,et al. Research progress of plasmopara viticola[J]. Tillage and cultivation,2015(4):65-67.
- [4]刘燕德,吴滔.基于无线传感网络的果园环境实时监控系统设计[J].湖北农业科学,2011,50(21):4469-4472.LIU Yande,WU Tao. The design of real-time monitoring system for orchard environment based on wireless sensor networks[J]. Hubei agricultural sciences,2011,50(21):4469-4472.
- [5]秦琳琳,陆林箭,石春,等.基于物联网的温室智能监控系统设计[J].农业机械学报,2015,46(3):261-267.QIN Linlin,LU Linjian,SHI Chun,et al. Implementation of IoT-based greenhouse intelligent monitoring system[J]. Transactions of the Chinese Society for Agricultural Machinery,2015,46(3):261-267.
- [6]郑争兵.基于GSM网络的蔬菜大棚环境参数监测系统[J].广东农业科学,2012,39(1):158-159.ZHENG Zhengbing. Environmental parameters monitoring system for vegetables greenhouse based on GSM network[J].Guangdong agricultural sciences,2012,39(1):158-159.
- [7]杨旭辉,周庆国,韩根亮,等.基于ZigBee的节能型水产养殖环境监测系统[J].农业工程学报,2015,31(17):183-190.YANG Xuhui,ZHOU Qingguo,HAN Genliang,et al. Energyefficient aquaculture environmental monitoring system based on ZigBee[J]. Transactions of the Chinese Society of Agricultural Engineering,2015,31(17):183-190.
- [8]彭爱梅,尹玉军,毛晓英.基于ZigBee的温室WSN监测系统的设计与实现[J].江苏农业科学,2014,42(12):445-447.PENG Aimei,YIN Yujun,MAO Xiaoying. Design and implementation of greenhouse WSN system based on ZigBee[J]. Jiangsu agricultural sciences,2014,42(12):445-447.
- [9]谢小康,张靖.基于ZigBee技术的智能家居系统设计[J].物联网技术,2016,6(12):69-72.XIE Xiaokang,ZHANG Jing. Design of smart home system based on ZigBee[J]. Internet of Things technologies,2016,6(12):69-72.
- [10]李树丹,张从松,覃章健,等.基于ZigBee协议的温湿度监测系统设计与实现[J].电子科技,2014,27(12):37-40.LI Shudan,ZHANG Congsong,QIN Zhangjian,et al. Design and implementation of temperature and humidity acquisition system based on ZigBee[J]. Electronic science and technology,2014,27(12):37-40.
- [11]黄建清,刘德兵,袁琦,等.基于MSP430的热带花卉无线温湿度传感器节点设计[J].电子设计工程,2017,25(6):123-126.HUANG Jianqing,LIU Debing,YUAN Qi,et al. Wireless sensor node based on MSP430 for monitoring temperature and humidity in the greenhouse of tropical flowers[J]. Electronic design engineering,2017,25(6):123-126.
- [12]谢家兴,余国雄,王卫星,等.基于无线传感网的荔枝园智能节水灌溉双向通信和控制系统[J].农业工程学报,2015,31(z2):124-130.XIE Jiaxing,YU Guoxiong,WANG Weixing,et al. Bidirectional communication and control system of intelligent watersaving irrigation in litchi orchard based on wireless sensor network[J]. Transactions of the Chinese Society of Agricultural Engineering,2015,31(S2):124-130.
- [13]吕岩夫.葡萄霜霉病环境信息采集与控制系统的设计与实现[D].杨凌:西北农林科技大学,2016.LüYanfu. Design and implementation of environmental information collection and control system for grape downy mildew[D]. Yangling:Northwest A&F University,2016.
- [14]阮健俊,陈源,李斌.低功耗远程数据采集模块的设计与实现[J].自动化仪表,2012,33(11):45-47.RUAN Jianjun,CHEN Yuan,LI Bin. Design and implementation of the remote data acquisition module with low power consumption[J]. Process automation instrumentation,2012,33(11):45-47.
- [15]姚兰,桂勋.基于多线程的气象传感器数字网络化系统[J].仪表技术与传感器,2008(9):105-108.YAO Lan,GUI Xun. Remote weather data acquisition system based on multi-thread serial communication technology[J]. Instrument technique and sensor,2008(9):105-108.