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Design of Agricultural Irrigation Hydropower Dual Control Intelligent Equipment Based on NB-IoT Technology

Published: 28 March 2018 Publication History

Abstract

In order to establish and improve the formation mechanism of agricultural water price, promote agricultural water saving and sustainable development of agriculture, meet the need of water management and metering and charge for farmland water conservancy, agricultural irrigation hydropower dual control intelligent equipment based on NB-IoT technology. In order to ensure the safety of system charging, the reliability of command execution and the accuracy of data collection, the equipment adopts the design of "one card dual-use" and "one card dual control" according to the actual functional requirements of the task. A smart IC card can achieve water and electricity metering and payment functions, and the ladder pricing. Use NB-IoT communication technology as data exchange and remote control. Strong overall control system using PLC control, to ensure the stability of the system line. The equipment is installed in one cabinet, and the irrigation information collection and irrigation automation are realized by taking water, electricity water metering and data reporting.

References

[1]
Tian Hongwu,Zheng Wengang,Li Han. Application status and developing trend of open field water-saving Internet of Things technology{J}. Transact Ions of the CSAE. 2016(21): 1--12.
[2]
Li Ying, Liu Jinhong, Liu Di, Jin Leshan. Rural Households Willingness to Apply IC Irrigation Management---A Case Study of Sanhe in Hebei Province{J}, Water Saving Irrigation. 2017(07): 102--106.
[3]
WANG Qin. Research of Rural Irrigation Management System{J}. Techniques of Automation and Applications. 2013, 32(8): 15--17.
[4]
QIN Changhai, ZHAO Yong, PEI Yuansheng. Study on utility of generalized water resources utilization byadjustment of agricultural water price{J}. Journal of Hydraulic Engineering. 2010(09): 1094--1100.
[5]
Wang Mingfei, Tian Hongwu, Zhang Shirui, Design and Development of Remote Farm Machine Well Hydropower Measurement Equipment{J}. Jiangsu Agricultural Sciences. 2017, 45(13): 177--180.
[6]
Qi Songtao, Qi Buling, Cao Yue. Jiangsu Agricultural Sciences. 2016, 44(3): 421--423.
[7]
Wu QiuMing,Jiao Xiyun. Intelligent micro-irrigation system based on internet of things in arid area{J}. Transact Ions of the CSAE. 2012, 28(1): 118--122.
[8]
Liu Hongyan,Zhang Mingwei,Wei Chun. Intelligent Control System Design of Wireless Irrigation for Seedling Based on ARM and STM32{J}. Journal of Agricultural Mechanization Research. 2017(01): 132--136.
[9]
Li Denghua, Li Zhemin, Xu Shiwei. The Latest Development of Agricultural Internet of Things in Advanced Countries and Its Enlightenment to China{J}. Jiangsu Agricultural Sciences. 2016(10): 1--5.
[10]
Li Dewang, Xu Shiyu, Song Jiancheng. Research Status and Prospects of Modern Agricultural Intelligent Irrigation Technology{J}. Jiangsu Agricultural Sciences. 2017(17): 27--31.
[11]
Feng Feng. Analysis of rural irrigation electricity management focus issues. Enterprise Reform and Management,2014(08):165.
[12]
Kong Delei. Application of Automatic Control Technology in Water Saving Irrigation {J}. Technology Wind.2017 2017(18):227.
[13]
Chen TianHua, Tang Haitao. Remote monitoring and forecasting system of soil moisture based on ARM and GPRS{J}. Transact Ions of the CSAE. 2012(03): 162--166.
[14]
Tian Hongwu, Shen Changjun, Zheng Wengang. Design of Water and Electricity Metering System for Agricultural Irrigati on Moto-Pumped Well{J}. Water Saving Irrigation. 2013(1): 44--47.
[15]
DAI Guohua,YU Junhua.Research on NB-IoT Background, Standard Development, Characteristics and the Service {J}.
[16]
Zhang P, Zhang Q, Liu F, et al. The Construction of the Integration of Water and Fertilizer Smart Water Saving Irrigation System Based on Big Data{J}.
[17]
Han Antai, He Yong, Chen Zhiqiang. 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(09): 173--180.
[18]
Ding Haochen. Design and Implementation of Remote Visualization Intelligent Irrigation System Based on ARN{D}. Dalian University of Technology. 2014.
[19]
Wang Mingfei, Zheng Wengang, Tian Hongwu. Design and Implementation of Low --- power Real --- time Awake Irrigation Controller{J}. Journal of Agricultural Mechanization Research. 2016(01): 113--118.
[20]
Xiao Kehui, Xiao Deqin, Luo Xiwen. Smart water-saving irrigation system in precision agriculture based on wireless sensor network{J}. Transactions of the Chinese Society of Agricultural Engineering. 2010(11): 170--175.
[21]
Wang Ningjie. Analysis on Effective Application of Automatic Control Technology in Water-saving Irrigation{J}. Modern Industrial Economy and Informationization. 2016(05): 25--26.

Cited By

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  • (2023)IoT solution for smart water distribution networks based on a low-power wireless network, combined at the device-level: A case studyInternet of Things10.1016/j.iot.2023.100746(100746)Online publication date: Mar-2023
  • (2023)DynGATTComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/j.comnet.2023.109560222:COnline publication date: 1-Feb-2023
  • (2020)LoRaFarM: A LoRaWAN-Based Smart Farming Modular IoT ArchitectureSensors10.3390/s2007202820:7(2028)Online publication date: 4-Apr-2020

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  1. Design of Agricultural Irrigation Hydropower Dual Control Intelligent Equipment Based on NB-IoT Technology

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      cover image ACM Other conferences
      IEEA '18: Proceedings of the 7th International Conference on Informatics, Environment, Energy and Applications
      March 2018
      256 pages
      ISBN:9781450363624
      DOI:10.1145/3208854
      Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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      • Shanghai Jiao Tong University: Shanghai Jiao Tong University
      • University of Wollongong, Australia

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      Published: 28 March 2018

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      Author Tags

      1. Agricultural irrigation
      2. Hydropower dual-control
      3. NB-IoT
      4. Water meterint

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      View all
      • (2023)IoT solution for smart water distribution networks based on a low-power wireless network, combined at the device-level: A case studyInternet of Things10.1016/j.iot.2023.100746(100746)Online publication date: Mar-2023
      • (2023)DynGATTComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/j.comnet.2023.109560222:COnline publication date: 1-Feb-2023
      • (2020)LoRaFarM: A LoRaWAN-Based Smart Farming Modular IoT ArchitectureSensors10.3390/s2007202820:7(2028)Online publication date: 4-Apr-2020

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