期刊文献+

农业智能灌溉系统关键技术研发 被引量:11

Research on key technologies in agricultural intelligent irrigation system
在线阅读 下载PDF
导出
摘要 文章对智能灌溉系统中的关键技术问题展开研究,对智能灌溉系统的组成、多路信号采集与控制、网络通信系统以及后台应用系统进行了详细设计与开发,并实现了应用。智能灌溉系统可实时采集并存储现场各类数据和参数,如土壤温湿度、气象参数等;实现地块各温室大棚灌溉指令下发。农业智能灌溉系统的研发有助于实现精准灌溉,达到节水、增效、增产的目的,提升农业科学管理的水平。 Several key technologies in the intelligent irrigation system were studied in this paper. The composition structure, multi-channel signal acquisition and control methods, network communication system and applications were designed and realized. The intelligent irrigation system can be used to collect and store all kinds of field data and parameters in real time, such as soil temperature and humidity, meteorological parameters, etc. It can also be used to send irrigation instructions to the terminals installed in the greenhouses. The research of agricultural intelligent irrigation system helps to achieve precise irrigation and achieve the purpose of saving water, increasing efficiency and production, and raising the level of agricultural scientific management.
出处 《江苏科技信息》 2018年第2期59-61,共3页 Jiangsu Science and Technology Information
基金 国家自然科学基金面上项目 项目编号:71373125 沛县科技项目 项目编号:P201602 南京林业大学大学生实践创新训练计划项目 项目编号:201710298096X
关键词 智慧农业 智能灌排 传感器网络 关键技术 smart agriculture intelligent irrigation sensor networks key technologies
  • 相关文献

参考文献4

二级参考文献28

  • 1夏春华,方部玲,金永奎.节水灌溉系统自动控制的研究应用[J].农业网络信息,2004(12):18-20. 被引量:6
  • 2张璐,孙文轩,王秀茹,柳立兵.节水灌溉自动控制技术的应用[J].水土保持研究,2007,14(5):385-387. 被引量:9
  • 3传感器技术向微型化、智能化和可移动性发展.http://www.51ian.cn/html/2012/chuanganqi_O929/34687.html, 2012-09-29/2012- 09-29.
  • 4Claussen J C, Kumar A, Jaroch D B et al. Nanostructuring Plati- num Nanoparticles on Multilayered Graphene Petal Nanosheets for Electrochemical Biosensin. Adv. Funet. Mater., 2012,22 : 3399- 3405.
  • 5Okhee Choi, Yongsang Lee, Inyoung Han et al. A simple and sensi- tive biosensor strain for detecting toxoflavin using 13-galactosidase activity. Biosensors and Bioelectronics, 2013,256-261.
  • 6Raul Morais, Miguel A Fernandes, Samuel G Matos. A ZigBee multi-powered wireless acquisition device for re- motesensing applications in precision viticulture. Comput- ers and electronics in agriculture, 2008,62 (2) .. 94-106.
  • 7L6pez Riquelmea J A, Sotoa F, Suardiaza Jet al. Wireless Sensor Networks for precision horticulture in Southern Spain. Computers and Electronics in Agriculture, 2009 (68) :25-35.
  • 8Ning Wang, Naiqian Zhang, Maohua Wang. Wireless sen- sors in agriculture and food industry-Recent development and future perspective. Computers and Electronics in Ag- riculture, 2006, 50( 1): 1-14.
  • 9人民日报.全球数据总量每两年翻一番2020年预计将35ZB.http://www.ce.cn/cysc/tech/07ityj/guone/201212/24/t20121224_21306593.shtml, 2012-12-24/ 2012-12-24.
  • 10杨诚.无线传感器网络在农业环境监测中的应用.江苏大学,2007.

共引文献110

同被引文献66

引证文献11

二级引证文献37

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部