Please wait a minute...
工程设计学报  2016, Vol. 23 Issue (1): 90-94    DOI: 10.3785/j.issn.1006-754X.2016.01.014
整机和系统设计     
基于电力线载波通信的节水灌溉控制系统设计
尹向雷
陕西理工学院 电气工程学院, 陕西 汉中 723000
Design of control system in water-saving irrigation based on power line carrier communication
YIN Xiang-lei
College of Electrical Engineering, Shaanxi University of Technology, Hanzhong 723000, China
 全文: PDF(1237 KB)   HTML
摘要: 为达到节水灌溉目的,设计了一套基于电力线载波通信的喷灌控制系统.系统以电力线载波为通信手段,以主控室的主机为核心,以主从多机通信模式对现场信号进行远程采集及控制,最后对系统进行了现场测试.结果表明,数据传输误差率低,设备运行可靠、稳定,控制距离达到了约300 m.系统不仅达到了控制目的,节约了水资源,同时节约了大量通信电缆,具有很好的应用价值.
关键词: 灌溉控制电力线载波通信    
Abstract: For the purpose of water-saving irrigation, a set of the sprinkler irrigation control system was designed based on power line carrier communication. The system could get the field signal and control the actuator with master-slave multicomputer communication mode based on power line carrier communication means, and the host on the control centre room was as the core. Finally, the system test had been carried out. Results showed that the error rate was low, and the data transmission equipment operation was reliable and stable. The control distance reached about 300 m long. The system not only achieves the control purpose, saves the water resources, but also saves a large amount of communication cable, and has very good application value.
Key words: irrigation    control    power line carrier    communication
收稿日期: 2015-05-22 出版日期: 2016-02-28
CLC:  TP29  
基金资助:

陕西省教育厅科研基金项目(2013JK1086).

作者简介: 尹向雷(1977-),男,陕西咸阳人,讲师,硕士,从事控制工程研究,E-mail:thunder2@163.com.
服务  
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章  

引用本文:

尹向雷. 基于电力线载波通信的节水灌溉控制系统设计[J]. 工程设计学报, 2016, 23(1): 90-94.

YIN Xiang-lei. Design of control system in water-saving irrigation based on power line carrier communication. Chinese Journal of Engineering Design, 2016, 23(1): 90-94.

链接本文:

https://www.zjujournals.com/gcsjxb/CN/10.3785/j.issn.1006-754X.2016.01.014        https://www.zjujournals.com/gcsjxb/CN/Y2016/V23/I1/90

[1] 张新星,杨振杰,彭云,等.我国节水灌溉的现状与分析[J].安徽农业科学,2014,42(33):11972-11974. ZHANG Xin-xing,YANG Zhen-jie,PENG Yun,et al.Status and analysis of water-saving irrigation in China[J].Journal of Anhui Agriculture Science,2014,42(33):11972-11974.

[2] 程帅,张树清.基于系统性策略的灌溉水资源时空优化配置[J].应用生态学报,2015,26(1):321-330. CHENG Shuai,ZHANG Shu-qing.Optimal allocation of irrigation water resources based on systematical strategy [J].Chinese Journal of Applied Ecology,2015,26(1):321-330.

[3] 薛岩,张建锋,李鹏宇,等.基于需水模型的精细灌溉控制系统软件设计[J].计算机工程与设计,2014(9):3332-3336. XUE Yan,ZHANG Jian-feng,LI Peng-yu,et al.Software design of precision irrigation control system based on water requirement model[J].Computer Engineering and Design,2014(9):3332-3336.

[4] 韩安太,何勇,陈志强,等.基于无线传感器网络的茶园分布式灌溉控制系统[J].农业机械学报,2011,42(9):173-179. HAN An-tai,HE Yong,CHEN Zhi-qiang,et al.Design of distributed precision irrigation control system based on wireless sensor network for tea plantation[J].Transactions of the Chinese Society for Agricultural Machinery,2011,42(9):173-179.

[5] 李野,董守田,黄丹丹.基于ZigBee技术的水稻自动灌溉控制系统设计[J].农机化研究,2015(2):226-229. LI Ye,DONG Shou-tian,HUANG Dan-dan.Rice automatic irrigation control system based on ZigBee technology design[J].Journal of Agricultural Mechanization Research,2015(2):226-229.

[6] 贾艳玲,朱瑜红,刘思远.基于无线传感器网络的枸杞园智能灌溉系统设计[J].湖北农业科学,2014,53(23):5861-5863. JIA Yan-ling,ZHU Yu-hong,LIU Si-yuan.Designing intelligent irrigation system of wolfberry orchard based on wireless sensor network[J].Hubei Agricultural Sciences,2014,53(23):5861-5863.

[7] 百度文库. 通讯方式优缺点对比分析(有线无线载波)[EB/OL]. [2015-05-05]. http://wenku.baidu.com/link?url=JOwumJ58xb37L9pbGZtdwyCpui8zk6jsnZeMtUs- GrWGAyg9bOVLyHjBAAPR0UzuVv6KqJ1f9H3jc8p1XlYu- Knh5uCOlO-gH7gRz65QGjC_m. BAIDU Library. Communication methods advantages and disadvantages of comparative analysis (cable & wireless carrier)[EB/OL]. [2015-05-05]. http://wenku.baidu.com/ link?url=JOwumJ58xb37L9pbGZtdwyCpui8zk6jsnZeMtUs- GrWGAyg9bOVLyHjBAAPR0UzuVv6KqJ1f9H3jc8p1XlYu- Knh5uCOlO-gH7gRz65QGjC_m.

[8] 戚佳金,陈雪萍,刘晓胜.低压电力线载波通信技术研究进展[J].电网技术,2010(5):161-172. QI Jia-jin,CHEN Xue-ping,LIU Xiao-sheng.Advances of research on low-voltage power line carrier communication technology[J].Power System Technology,2010(5):161-172.

[9] 徐伟,王斌,姜元建.低压电力线载波通信技术在用电信息采集系统中的应用[J].电测与仪表,2010(S2):44-47. XU Wei,WANG Bin,JIANG Yuan-jian.Power line carrier communication technology and its applications in electric energy data acquisition system[J].Electrical Measurement and Instrumentation,2010(S2):44-47.

[10] 俞斌,贾雅琼.基于电力线载波通信技术的农村电网电表集抄系统[J].低压电器,2013(18):43-46. YU Bin,JIA Ya-qiong.Meter collective reading system of rural power grid based on PLCC[J].Low Voltage Apparatus,2013(18):43-46.

[11] 陈建智.基于电力线载波通信技术的高校教学楼智能照明控制系统[D].锦州:辽宁工业大学电气工程学院,2014:1-6. CHEN Jian-zhi.Intelligent lighting-control system based on power line carrier communication technology in college teaching building[D].Jinzhou:Liaoning University of Technology,Electronics & Information Engineering College,2014:1-6.

[12] 谢秀颖,彭伟,张桂青,等.基于电力载波技术的建筑设备物联网节点研制[J].计算机工程与设计,2013,34(5):1651-1656. XIE Xiu-ying,PENG Wei,ZHANG Gui-qing,et al.Design and implementation of nodes for things of building equipments based on power line carrier technology[J].Computer Engineering and Design,2013,34(5):1651-1656.

[13] 章雪挺,翁大平,刘敬彪,等.一种海洋传感器的电力线载波数据采集传输系统[J].传感器与微系统,2015,34(2):88-91. ZHANG Xue-ting,WENG Da-ping,LIU Jing-biao,et al.A data collection and transmission system of marine sensor based on power line carrier[J].Transducer and Microsystem Technologies,2015,34(2):88-91.

[14] 金鑫,陈存广,王帅宇,等.载波通信在家用安防系统中的应用研究[J].现代电子技术,2014,37(9):100-102. JIN Xin,CHEN Cun-guang,WANG Shuai-yu,et al.Applied research carrier communication in home monitoring system[J].Modern Electronics Technique,2014,37(9):100-102.

[15] 王枭,林平分.基于电力线通信的温度采集系统的设计[J].单片机与嵌入式系统应用,2013(7):72-75. WANG Xiao,LIN Ping-fen.Temperature acquisition system based on power line communication[J].Microcontrollers and Embedded Systems,2013(7):72-75.
[1] 谭鑫平,甘浪,林成旭,李雪梅,李倩,闫旺,陈刚,廖广兰,刘智勇. 基于STM32的全自动病理染色控制系统的设计与实现[J]. 工程设计学报, 2022, 29(4): 510-518.
[2] 宁志强,卫立新,权龙,赵美卿,高有山. 变排量非对称轴向柱塞泵抗扰控制及并行整定方法[J]. 工程设计学报, 2022, 29(4): 401-409.
[3] 庄培灿,李麒阳,郗欣甫,孙以泽. 径向环形编织机机电一体化系统建模及控制策略研究[J]. 工程设计学报, 2022, 29(3): 347-357.
[4] 田为广,徐海黎,陈妍,朱倚娴,刘熙. 可变车道隔离护栏运载机器人系统及其控制策略[J]. 工程设计学报, 2022, 29(2): 237-246.
[5] 刘庆祥,郭冰菁,韩建海,李向攀,黄明祥. 体感交互式上肢镜像康复训练机器人系统[J]. 工程设计学报, 2022, 29(2): 143-152.
[6] 王春霖,刘畅,杨华,覃鸿,陈国柱. 用于油气勘探的电代油驱动装置系统设计与分析[J]. 工程设计学报, 2022, 29(2): 220-230.
[7] 潘盛湖, 刘云强, 胡涵, 张小军, 冯一夫. 基于多喷头并联的3D打印机控制系统的研究[J]. 工程设计学报, 2022, 29(1): 100-106.
[8] 胡坤, 蒋庆楠, 季晨光, 杨健, 李飞. 基于改进ESO的磁悬浮系统模型参考滑模控制[J]. 工程设计学报, 2022, 29(1): 82-91.
[9] 殷戎飞, 徐海黎, 田为广, 徐勋倩, 沈标. 框架式3D建筑打印机控制系统设计[J]. 工程设计学报, 2022, 29(1): 107-114.
[10] 李然然, 张凯, 柴麟, 张龙, 刘宝林, 李国民. 黏滑振动下机械式自动垂直钻具稳定平台的控制性能研究[J]. 工程设计学报, 2021, 28(6): 746-757.
[11] 辛传龙, 郑荣, 杨博. AUV水下对接系统设计与接驳控制方案研究[J]. 工程设计学报, 2021, 28(5): 633-645.
[12] 丁述勇, 张征, 丁文洁, 林勇. 多巷道式立体车库优化设计与车辆存取策略研究[J]. 工程设计学报, 2021, 28(4): 443-449.
[13] 张泽, 陈勇, 李光鑫, 雷勇敢, 阮鸥, 王再宙. 电动汽车变速器电液控制系统总成设计及结构优化[J]. 工程设计学报, 2021, 28(3): 335-343.
[14] 胡宇博, 王少峰, 校文超. 机械压缩式湿垃圾处理装置设计[J]. 工程设计学报, 2021, 28(3): 374-380.
[15] 王奔, 朱龙彪, 沈祖军, 陈小林. LYP1050轮转胶印机控制系统设计[J]. 工程设计学报, 2021, 28(1): 112-120.