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适用于阳台农业的智能植物联网看护系统 被引量:8

Plants automatic networking care system suitable for balcony agriculture
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摘要 本设计主要针对阳台农业的特殊性和当前居家种植植物在无人照料时可能存在的由光照、湿度不足等问题造成的植株生长问题提出解决方案。使用土壤温湿度传感器采集土壤墒情以实现自动补水及补光、遮阳处理。摄像头结合路由器通过WLAN链接网络实现对植物的远程看护。经过对太阳能的采集和储存,将本系统与市电隔离,保证用电安全的同时节能环保。测试结果显示,该系统可以根据土壤温湿度进行自动精确补水补光,植物影像可以从摄像头经WLAN传回计算机。可跟踪太阳能电池最大功率点以保证高效的能源采集存储且可以在连续阴雨天气保证电量供应。 Lack of sunlight,humidity and other requirement may cause plant growth problems. This system is designed mainly for agriculture balcony particularity and current home grown plants to solve the problem. Soil temperature and humidity sensors are used to collect soil moisture achieving automatic replenishment and light and shade treatment. Camera combined router is used to link remote plant care system via WLAN networks. With collection and storage of solar energy,we can keep the system out of the city power,which can ensure the system's safety and be good at energy saving and environmental protection. The test results show that the system can be automatically and accurately fill light and water based on the data of soil temperature and humidity. Plant image can be sent from the camera to the computer via WLAN. You can track the maximum power point of solar energy in order to ensure the efficient collection and storage to ensure continuous power supply in rainy weather.
出处 《微型机与应用》 2016年第18期35-38,共4页 Microcomputer & Its Applications
基金 2014年国家级大学生创新创业训练项目(GJ201410336004)
关键词 阳台农业 能量收集 MPPT 联网控制 balcony agriculture solar energy energy harvesting MPPT network-control
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  • 1周立功.深入浅出ARM7.北京:北京航空航天大学出版社,2005.
  • 2SSD1303 Advance Information 132×64 Dot Matrix OLED/PLED Segment/Common Driver with Controller.http://www.solomon-systech.com
  • 3GINGER B P,TIMOTHY O K.Comparison of field performance of multiple soil moisture sensors in a semi-arid rangeland[J].Journal of the American Water Resources Association,2008,44(1):121-135.
  • 4Dondi D, Bertacchini A, Brunelli D, et al. Modeling and Optimization of a Solar Energy Harvester System for Self-Powered Wireless Sensor Networks [ J ]. Industrial Electronics, IEEE Transactions on, 2008,55 (7) :2759 - 2766.
  • 5Haque A. Maximum Power Point Tracking(MPPT) Scheme for Solar Photovoltaic System[ J]. Energy Technology & Policy, 2014,1(1) :115 -122.
  • 6王春清,黄清标.应用于电波钟之滤除杂讯高效能数位滤波器之设计[EB/OL].[2009-03-04].http://dlamobbs.com/bbs_upload782111/files--16/ourdev_453737.pdf.
  • 7张瑞瑞,赵春江,陈立平,徐刚.农田信息采集无线传感器网络节点设计[J].农业工程学报,2009,25(11):213-218. 被引量:78
  • 8王吉星,孙永远.土壤水分监测传感器的分类与应用[J].水利信息化,2010(4):37-41. 被引量:10
  • 9章伟聪,俞新武,李忠成.基于CC2530及ZigBee协议栈设计无线网络传感器节点[J].计算机系统应用,2011,20(7):184-187. 被引量:205
  • 10牛星,李捷,周新运,赵忠华.无线传感器网络节点能耗测量及分析[J].计算机科学,2012,39(2):84-87. 被引量:17

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