新疆农业科学 ›› 2024, Vol. 61 ›› Issue (2): 300-309.DOI: 10.6048/j.issn.1001-4330.2024.02.005

• 作物遗传育种·种质资源·分子遗传学 • 上一篇    下一篇

基于P-M模型的棉田智能灌溉系统的设计与试验

惠瑞晗(), 林丽(), 曹伟, 张梦珂, 林豪, 姚帅   

  1. 新疆农业大学水利与土木工程学院,乌鲁木齐 830052
  • 收稿日期:2023-06-15 出版日期:2024-02-20 发布日期:2024-03-19
  • 通信作者: 林丽(1977-),女,吉林长春人,教授,博士,硕士生导师,研究方向为水利信息化、水资源规划与利用,(E-mail)klmhll@126.com
  • 作者简介:惠瑞晗(1998-),女,河南郑州人,硕士,研究方向为智慧农业,(E-mail)hrhdyx1998@163.com
  • 基金资助:
    新疆维吾尔自治区“十四五”重大专项“智慧灌区与现代农业产业绿色发展模式研究与示范”(2020A01003-4)

Design and experiment of intelligent irrigation system for cotton field based on P-M model

HUI Ruihan(), LIN Li(), CAO Wei, ZHANG Mengke, LIN Hao, YAO Shuai   

  1. College of Hydraulic and Civil Engineering, Xinjiang Agricultural University, Urumqi 830052, China
  • Received:2023-06-15 Online:2024-02-20 Published:2024-03-19
  • Correspondence author: LIN Li(1977-), female, from Changchun, Jilin, professor, doctor, master tutor, research direction:water conservancy informatization, water resources planning and utilization,(E-mail)klmhll@126.com
  • Supported by:
    The Major Project of the "Fourteenth Five-Year Plan" of Xinjiang Uygur Autonomous Region "Research and Demonstration of Green Development Model of Intelligent Irrigation Areas and Modern Agricultural Industry"(2020A01003-4)

摘要:

【目的】研究并分析基于P-M模型棉田智能灌溉系统的试验设计。【方法】基于P-M模型设计一套棉田智能灌溉系统,由数据采集节点、无线通信节点、云平台决策终端、灌溉应用节点四部分组成。数据采集节点的气象设备采集到数据后无线传输至云平台决策终端,终端基于P-M模型计算单次灌溉量,在指定的灌溉时间自动发出灌溉指令,灌溉应用节点接收指令开启阀门精确灌溉,土壤墒情变化由数据采集节点的墒情设备实时监测后无线传输到云平台展现;以当地传统灌溉模式作为对照(CK),灌溉系统设置120%(W1)、100%(W2)和80%(W3)3种灌溉模式,进行田间试验。【结果】3个试验组灌溉工作在无人为干预的条件下实现全智能化,系统有效精准执行灌溉指令;在灌溉水充足的情况下可选用W2模式,总耗水量较传统模式增加16.85%的情况下土壤含盐量下降13.65%,籽棉产量提高20.84%,水分利用效率提高3.41%,能够大幅度提高产量的同时有效改善土壤环境;W3总耗水量较传统灌溉减少6.52%,土壤含盐量上升0.16%,盐渍化速度较传统灌溉模式变缓,籽棉产量提高11.18%,水分利用效率大幅提高,可达到兼顾提高产量与节水的效果。【结论】验证了智能灌溉系统的有效性和可行性,增加了灌溉系统的可选参数范围。

关键词: 棉花; 灌溉系统; 产量; 水分利用效率

Abstract:

【Objective】 Design and experiment of intelligent irrigation system for cotton field based on P-M model.【Methods】 Based on P-M model, a set of intelligent irrigation system for cotton field was designed, which consisted of four parts:data acquisition node, wireless communication node, cloud platform decision terminal, and irrigation application node.The data collected by the meteorological equipment of the data acquisition node was wirelessly transmitted to the cloud platform decision terminal.Then the terminal calculated the single irrigation amount based on the P-M model, automatically sent irrigation instructions at the specified irrigation time, and the irrigation application node received the instructions to open the valve for precise irrigation.The soil moisture change was monitored and wirelessly transmitted to the cloud platform by the moisture equipment of the data acquisition node in real time; The local traditional irrigation mode was taken as the control(CK), the irrigation system was set with 120%(W1), 100%(W2)and 80%(W3)irrigation modes, and the actual test of three treatments was carried out in the field to verify the system effect.【Results】 The irrigation work of the three experimental groups was fully intelligent under the condition of no human intervention, and the system effectively and accurately executed the irrigation instructions; W2 mode could be selected when the irrigation water was sufficient.When the total water consumption was 16.85% higher than that of the traditional mode, the soil salt content decreases by 13.65%, the seed cotton yield increases by 20.84%, and the water use efficiency increases by 3.41%.It significantly increased the yield and effectively improved the soil environment; Compared with traditional irrigation, the total water consumption of W3 was reduced by 6.52%, the soil salt content was increased by 0.16%, the salinization rate slowed, the yield of seed cotton increased by 11.18%, and the water use efficiency greatly improved, which achieved the effects of both improving yield and saving water.【Conclusion】 The effectiveness and feasibility of the intelligent irrigation system has been verified in practice, which increases the range of optional parameters of the irrigation system.

Key words: cotton; irrigation system; yield; water use efficiency

中图分类号: 


ISSN 1001-4330 CN 65-1097/S
邮发代号:58-18
国外代号:BM3342
主管:新疆农业科学院
主办:新疆农业科学院 新疆农业大学 新疆农学会

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