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CN105613211A - Air water taking irrigation system based on wireless network - Google Patents

Air water taking irrigation system based on wireless network Download PDF

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Publication number
CN105613211A
CN105613211A CN201510962870.1A CN201510962870A CN105613211A CN 105613211 A CN105613211 A CN 105613211A CN 201510962870 A CN201510962870 A CN 201510962870A CN 105613211 A CN105613211 A CN 105613211A
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Prior art keywords
information
air
wireless network
irrigation
air water
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CN201510962870.1A
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Inventor
陈树强
林炜
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Shenzhen Yunhui Digital Technology Co Ltd
University of Electronic Science and Technology of China
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Shenzhen Yunhui Digital Technology Co Ltd
University of Electronic Science and Technology of China
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Priority to CN201510962870.1A priority Critical patent/CN105613211A/en
Publication of CN105613211A publication Critical patent/CN105613211A/en
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G25/00Watering gardens, fields, sports grounds or the like
    • A01G25/02Watering arrangements located above the soil which make use of perforated pipe-lines or pipe-lines with dispensing fittings, e.g. for drip irrigation
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G25/00Watering gardens, fields, sports grounds or the like
    • A01G25/16Control of watering
    • A01G25/167Control by humidity of the soil itself or of devices simulating soil or of the atmosphere; Soil humidity sensors

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  • Life Sciences & Earth Sciences (AREA)
  • Soil Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Environmental Sciences (AREA)
  • Arrangements For Transmission Of Measured Signals (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

本发明涉及农业灌溉技术领域,具体涉及一种基于无线网络的空气取水灌溉系统,本发明包括:现场设备和远程监控中心;所述现场设备包括:空气取水器,灌溉喷淋器,温度传感器,湿度传感器,数据库,无线收发器和主控制器,该主控制器用于根据温度信息、湿度信息和预设的条件信息,分别驱动空气取水器和灌溉喷淋器,同时将所发出的控制命令整理为日志数据后存储至数据库中;所述无线收发器用于与所述远程监控中心进行无线通讯;所述远程监控中心可调取数据库中的所有信息与数据;并可对对主控制器的工作状态进行调整。本发明使得整个灌溉过程可以不需要人工现场参与,其特别适合于对各种偏僻的荒漠地区进行灌溉,使得灌溉过程简单化,智能化。

The present invention relates to the technical field of agricultural irrigation, in particular to a wireless network-based air water intake irrigation system. The present invention includes: field equipment and a remote monitoring center; the field equipment includes: air water fetcher, irrigation sprinkler, temperature sensor, Humidity sensor, database, wireless transceiver and main controller, the main controller is used to drive the air water dispenser and irrigation sprinkler respectively according to the temperature information, humidity information and preset condition information, and at the same time organize the control commands issued Store the log data in the database; the wireless transceiver is used for wireless communication with the remote monitoring center; the remote monitoring center can retrieve all the information and data in the database; and can check the work of the main controller status is adjusted. The invention enables the whole irrigation process without manual on-site participation, and is especially suitable for irrigating various remote desert areas, making the irrigation process simple and intelligent.

Description

一种基于无线网络的空气取水灌溉系统A Wireless Network-Based Air Water Irrigation System

技术领域 technical field

本发明涉及农业灌溉技术领域,具体涉及一种基于无线网络的空气取水灌溉系统。 The invention relates to the technical field of agricultural irrigation, in particular to a wireless network-based air water intake irrigation system.

背景技术 Background technique

为了解决日益严峻的环境问题,国家已不断的在各个荒漠地区种植上防护林,在种植上防护林后,林区的灌溉也成了一个比较棘手的问题,现有的灌溉过程中,其均需要人员现场参与,而由于荒漠地区的现场环境较为恶劣,其并不利于人员的长期值守,且取水也十分困难;因此荒漠地区的灌溉十分困难,是个农林业中的一个比较大的问题。 In order to solve the increasingly severe environmental problems, the country has continuously planted shelterbelts in various desert areas. After planting shelterbelts, the irrigation of forest areas has become a more difficult problem. In the existing irrigation process, it requires personnel On-site participation, and because the on-site environment in desert areas is relatively harsh, it is not conducive to long-term on-duty personnel, and it is also very difficult to obtain water; therefore, irrigation in desert areas is very difficult, which is a relatively large problem in agriculture and forestry.

发明内容 Contents of the invention

为克服上述缺陷,本发明的目的即在于提供一种基于无线网络的空气取水灌溉系统。 In order to overcome the above-mentioned defects, the object of the present invention is to provide a wireless network-based air water intake irrigation system.

本发明的目的是通过以下技术方案来实现的: The purpose of the present invention is achieved through the following technical solutions:

本发明是一种基于无线网络的空气取水灌溉系统,包括: The present invention is a wireless network-based air water intake irrigation system, comprising:

现场设备和远程监控中心,所述现场设备与远程监控中心之间通过无线网络进行连接; On-site equipment and a remote monitoring center, the on-site equipment and the remote monitoring center are connected through a wireless network;

所述现场设备包括: The field devices include:

空气取水器,所述空气取水器用于根据控制命令与从空气中采集水分; An air water extractor, which is used to collect moisture from the air according to control commands;

蓄水池,所述蓄水池与空气取水器连接,用于对该空气取水器所采集到的水分进行蓄集; A water storage tank, the water storage tank is connected to the air water collector, and is used to store the moisture collected by the air water collector;

灌溉喷淋器,所述灌溉喷淋器与该蓄水池相接,用于根据控制命令从蓄水池中取水进行喷淋灌溉; An irrigation sprinkler, the irrigation sprinkler is connected to the reservoir, and is used to take water from the reservoir for spray irrigation according to the control command;

温度传感器,所述温度传感器用于采集环境的温度信息; A temperature sensor, which is used to collect temperature information of the environment;

湿度传感器,所述湿度传感器设置于土壤中,用于采集土壤的湿度信息; Humidity sensor, described humidity sensor is arranged in soil, is used for collecting the humidity information of soil;

主控制器,所述主控制器分别与空气取水器、灌溉喷淋器、温度传感器、湿度传感器连接,其用于将接收到的温度信息和湿度信息存储至数据库中,并根据实时的温度信息、湿度信息和调取预设的条件信息,分别向空气取水器和灌溉喷淋器发送控制命令,同时将所发出的控制命令整理为日志数据后存储至数据库中; The main controller is connected to the air water collector, irrigation sprinkler, temperature sensor, and humidity sensor respectively, and it is used to store the received temperature information and humidity information in the database, and according to the real-time temperature information , Humidity information and retrieve preset condition information, send control commands to the air water dispenser and irrigation sprinkler respectively, and at the same time organize the issued control commands into log data and store them in the database;

数据库,所述数据库与所述主控制器连接,用于对温度信息、湿度信息、预设的条件信息和日志数据进行存储; a database, the database is connected to the main controller and is used to store temperature information, humidity information, preset condition information and log data;

无线收发器,所述无线收发器与所述主控制器连接,用于与所述远程监控中心进行通讯; A wireless transceiver, the wireless transceiver is connected to the main controller and used to communicate with the remote monitoring center;

所述远程监控中心与所述无线收发器连接,其用于通过主控制器调取数据库中的温度信息和/或湿度信息和/或预设的条件信息和/或日志数据;并根据选择对预设的条件信息进行修改,对主控制器的工作状态进行调整。 The remote monitoring center is connected with the wireless transceiver, which is used to retrieve the temperature information and/or humidity information and/or preset condition information and/or log data in the database through the main controller; and according to the selection The preset condition information is modified, and the working state of the main controller is adjusted.

进一步,所述现场设备的数量为一个以上。 Further, the number of field devices is more than one.

进一步,所述现场设备中还包括:太阳能电池板,所述太阳能电池板为该现场设备中的所以器件进行供电。 Further, the field device further includes: a solar panel, and the solar panel supplies power to all devices in the field device.

进一步,所述无线网络为WIFI网络。 Further, the wireless network is a WIFI network.

进一步,所述温度传感器和湿度传感器均通过模数装换器与主控制器连接。 Further, both the temperature sensor and the humidity sensor are connected to the main controller through an analog-to-digital converter.

进一步,所述蓄水池中设有水位检测器,所述水位检测器与主控制器连接。 Further, a water level detector is provided in the water storage tank, and the water level detector is connected with the main controller.

进一步,所述远程监控中心中设有信息上载模块,所述信息上载模块与广域的互联网相连接。 Further, the remote monitoring center is provided with an information uploading module, and the information uploading module is connected to the wide-area Internet.

本发明通过空气取水器进行取水,并利用无线网络对灌溉系统进行监控,使得整个灌溉过程可以不需要人工现场参与,其特别适合于对各种偏僻的荒漠地区进行灌溉,使得灌溉过程简单化,智能化。 The present invention draws water through an air water extractor, and monitors the irrigation system through a wireless network, so that the entire irrigation process does not require manual on-site participation. It is especially suitable for irrigating various remote desert areas, and simplifies the irrigation process. intelligent.

附图说明 Description of drawings

为了易于说明,本发明由下述的较佳实施例及附图作详细描述。 For ease of illustration, the present invention is described in detail by the following preferred embodiments and accompanying drawings.

图1为本发明一个实施例的逻辑结构示意图; Fig. 1 is a schematic diagram of the logical structure of an embodiment of the present invention;

图2为本发明另一个实施例的逻辑结构示意图。 Fig. 2 is a schematic diagram of a logical structure of another embodiment of the present invention.

具体实施方式 detailed description

为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。 In order to make the object, technical solution and advantages of the present invention more clear, the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention.

请参阅图1至图2,本发明是一种基于无线网络的空气取水灌溉系统,其包括: Please refer to Fig. 1 to Fig. 2, the present invention is a kind of air water intake irrigation system based on wireless network, and it comprises:

现场设备100和远程监控中心200,所述现场设备100与远程监控中心200之间通过无线网络进行连接; The field device 100 and the remote monitoring center 200 are connected through a wireless network between the field device 100 and the remote monitoring center 200;

所述现场设备100包括: The field device 100 includes:

空气取水器101,所述空气取水器101用于根据控制命令与从空气中采集水分; An air water extractor 101, which is used to collect moisture from the air according to a control command;

蓄水池102,所述蓄水池102与空气取水器101连接,用于对该空气取水器101所采集到的水分进行蓄集; A water storage tank 102, the water storage tank 102 is connected to the air water collector 101, and is used to store the moisture collected by the air water collector 101;

灌溉喷淋器103,所述灌溉喷淋器103与该蓄水池102相接,用于根据控制命令从蓄水池102中取水进行喷淋灌溉; An irrigation sprinkler 103, the irrigation sprinkler 103 is connected to the reservoir 102, and is used to take water from the reservoir 102 for spray irrigation according to a control command;

温度传感器104,所述温度传感器104用于采集环境的温度信息; A temperature sensor 104, the temperature sensor 104 is used to collect temperature information of the environment;

湿度传感器105,所述湿度传感器105设置于土壤中,用于采集土壤的湿度信息; Humidity sensor 105, described humidity sensor 105 is arranged in soil, is used for collecting the humidity information of soil;

主控制器106,所述主控制器106分别与空气取水器101、灌溉喷淋器103、温度传感器104、湿度传感器105连接,其用于将接收到的温度信息和湿度信息存储至数据库中,并根据实时的温度信息、湿度信息和调取预设的条件信息,分别向空气取水器101和灌溉喷淋器103发送控制命令,同时将所发出的控制命令整理为日志数据后存储至数据库中;主控制器106根据温度信息、湿度信息、预设的条件信息中的环境信息和灌溉条件驱动灌溉喷淋器103开始或停止灌溉; The main controller 106, the main controller 106 is respectively connected with the air water collector 101, the irrigation sprinkler 103, the temperature sensor 104, and the humidity sensor 105, and it is used to store the received temperature information and humidity information into the database, And according to the real-time temperature information, humidity information and preset condition information, send control commands to the air water collector 101 and irrigation sprinkler 103 respectively, and at the same time organize the issued control commands into log data and store them in the database ; The main controller 106 drives the irrigation sprinkler 103 to start or stop irrigation according to the temperature information, humidity information, environmental information and irrigation conditions in the preset condition information;

数据库107,所述数据库107与所述主控制器106连接,用于对温度信息、湿度信息、预设的条件信息和日志数据进行存储; A database 107, which is connected to the main controller 106 and is used to store temperature information, humidity information, preset condition information and log data;

无线收发器108,所述无线收发器108与所述主控制器106连接,用于与所述远程监控中心200进行通讯; A wireless transceiver 108, the wireless transceiver 108 is connected to the main controller 106 for communicating with the remote monitoring center 200;

所述远程监控中心200与所述无线收发器连接,其用于通过主控制器106调取数据库107中的温度信息和/或湿度信息和/或预设的条件信息和/或日志数据;并根据选择对预设的条件信息进行修改,对主控制器106的工作状态进行调整。远程监控中心200可随时对数据库107中所有数据进行调取,以了解该灌溉区域的具体情况,以及现场设备的工作情况;并可以根据需要,控制任意一个现场设备开始或停止灌溉。 The remote monitoring center 200 is connected to the wireless transceiver, and it is used to retrieve temperature information and/or humidity information and/or preset condition information and/or log data in the database 107 through the main controller 106; and According to the selection, the preset condition information is modified, and the working state of the main controller 106 is adjusted. The remote monitoring center 200 can retrieve all the data in the database 107 at any time to understand the specific conditions of the irrigation area and the working conditions of the field devices; and can control any field device to start or stop irrigation according to needs.

进一步,所述现场设备100的数量为一个以上;远程监控中心200可同时对多个现场设备100进行检测与控制,使其能同时对多个灌溉区域进行检测与控制。 Further, the number of field devices 100 is more than one; the remote monitoring center 200 can detect and control multiple field devices 100 at the same time, so that it can detect and control multiple irrigation areas at the same time.

进一步,所述现场设备100中还包括:太阳能电池板109,所述太阳能电池板109为该现场设备100中的所以器件进行供电;其无需铺设线缆,使得本发明的初始设置更为方便。 Further, the field device 100 also includes: a solar battery panel 109, which supplies power to all devices in the field device 100; it does not need to lay cables, which makes the initial setting of the present invention more convenient.

进一步,所述无线网络为WIFI网络。 Further, the wireless network is a WIFI network.

进一步,所述温度传感器104和湿度传感器105均通过模数装换器与主控制器106连接。 Further, both the temperature sensor 104 and the humidity sensor 105 are connected to the main controller 106 through an analog-to-digital converter.

进一步,所述蓄水池102中设有水位检测器110,所述水位检测器110与主控制器106连接,当蓄水池102中的水位下降到最小警报值时,产生开始取水信号,主控制器将根据该开始取水信号控制空气取水器101进行取水,当蓄水池102中的水位上升到最大警报值时,产生停止取水信号,主控制器将根据该停止取水信号控制空气取水器101停止取水。 Further, a water level detector 110 is provided in the storage tank 102, and the water level detector 110 is connected with the main controller 106. When the water level in the storage tank 102 drops to a minimum alarm value, a signal to start water intake is generated, and the main controller The controller will control the air water fetcher 101 to take water according to the start water fetching signal, and when the water level in the reservoir 102 rises to the maximum alarm value, a signal to stop water fetching will be generated, and the main controller will control the air water fetcher 101 according to the stop water fetching signal Stop fetching water.

进一步,所述远程监控中心200中设有信息上载模块,所述信息上载模块与广域的互联网相连接;其使得其他用户也可以通过互联网,得到各个灌溉区域的具体灌溉数据;便于用户的使用。 Further, the remote monitoring center 200 is provided with an information upload module, and the information upload module is connected to the wide-area Internet; it enables other users to obtain specific irrigation data of each irrigation area through the Internet; it is convenient for users to use .

本发明的主要工作过程为: Main working process of the present invention is:

1.温度/湿度传感器分别收集温/湿度信息,水位检测器收集蓄水池的水位信息,并将其分别传送至主控制器, 1. The temperature/humidity sensor collects temperature/humidity information respectively, and the water level detector collects the water level information of the reservoir, and sends them to the main controller respectively,

2.主控制器调取数据库中的条件信息,与实时的温/湿度信息进行整合处理,判断是否需要调整灌溉喷淋器的工作状态;根据水位信息判断是否需要调整空气取水器的工作状态;同时对所有接收到的信息存储至数据库中; 2. The main controller calls the condition information in the database, integrates it with the real-time temperature/humidity information, and judges whether it is necessary to adjust the working state of the irrigation sprinkler; judges whether it is necessary to adjust the working state of the air water dispenser according to the water level information; All received information is stored in the database;

3.根据判断结果,灌溉喷淋器/空气取水器开启或关闭,并根据灌溉喷淋器/空气取水器的工作状态生成日志数据; 3. According to the judgment result, the irrigation sprinkler/air water dispenser is turned on or off, and log data is generated according to the working status of the irrigation sprinkler/air water dispenser;

4.将数据库中的数据发送至远程监控中心,以实施对现场设备的实时监控; 4. Send the data in the database to the remote monitoring center to implement real-time monitoring of on-site equipment;

5.远程监控中心将数据传至互联网实现广域的信息联网。 5. The remote monitoring center transmits data to the Internet to realize wide-area information networking.

以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。 The above descriptions are only preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the protection of the present invention. within range.

Claims (7)

1. the air water-intaking irrigation system based on wireless network, it is characterised in that including:
Field apparatus and remote monitoring center, be attached by wireless network between described field apparatus and remote monitoring center;
Described field apparatus includes:
Device for fetching water from air, described device for fetching water from air is for according to control command and collection moisture from air;
Cistern, described cistern is connected with device for fetching water from air, carries out accumulation for the moisture that this device for fetching water from air is collected;
Irrigating spray thrower, described irrigation spray thrower connects with this cistern, carries out spray irrigation for fetching water from cistern according to control command;
Temperature sensor, described temperature sensor is for gathering the temperature information of environment;
Humidity sensor, described humidity sensor is arranged in soil, for gathering the humidity information of soil;
Master controller, described master controller is connected with device for fetching water from air, irrigation spray thrower, temperature sensor, humidity sensor respectively, it is for storing the temperature information received and humidity information to data base, and according to real-time temperature information, humidity information with transfer default conditional information, respectively to device for fetching water from air and irrigation spray thrower transmitting control commands, the control command sent is arranged simultaneously and store to data base for after daily record data;
Data base, described data base is connected with described master controller, for temperature information, humidity information, default conditional information and daily record data are stored;
Wireless transceiver, described wireless transceiver is connected with described master controller, for carrying out communication with described remote monitoring center;
Described remote monitoring center is connected with described wireless transceiver, and it is for by the temperature information in master controller called data storehouse and/or humidity information and/or default conditional information and/or daily record data; And according to selecting default conditional information is modified, the duty of master controller is adjusted.
2. the air water-intaking irrigation system based on wireless network according to claim 1, it is characterised in that the quantity of described field apparatus is more than one.
3. the air water-intaking irrigation system based on wireless network according to claim 2, it is characterised in that also include in described field apparatus: solar panel, described solar panel is in this field apparatus so device is powered.
4. the air water-intaking irrigation system based on wireless network according to claim 3, it is characterised in that described wireless network is WIFI network.
5. the air water-intaking irrigation system based on wireless network according to claim 4, it is characterised in that described temperature sensor and humidity sensor fill parallel operation each through modulus and be connected with master controller.
6. the air water-intaking irrigation system based on wireless network according to claim 5, it is characterised in that being provided with level switch in described cistern, described level switch is connected with master controller.
7. the air water-intaking irrigation system based on wireless network according to claim 6, it is characterised in that being provided with uploaded information module in described remote monitoring center, described uploaded information module is connected with the Internet of wide area.
CN201510962870.1A 2015-12-21 2015-12-21 Air water taking irrigation system based on wireless network Pending CN105613211A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106168786A (en) * 2016-07-29 2016-11-30 宁波维蒙圣菲农业机械有限公司 A kind of method of long-range control monitoring irrigation sprinkler work
CN108235928A (en) * 2016-12-26 2018-07-03 天津优爱创科技有限公司 A kind of flow watering device controls host
CN109138051A (en) * 2018-09-10 2019-01-04 肖丹宁 A kind of stony desertification comprehensive treatment system based on information intelligent

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101100866A (en) * 2007-07-23 2008-01-09 姚福来 Device for extracting water in air by solar energy
CN101120646A (en) * 2006-08-09 2008-02-13 姚福来 Irrigation device for desert plant obtaining water from air
CN101258827A (en) * 2008-04-23 2008-09-10 昆明理工大学 Community greening and water-saving automatic irrigation device
CN101692783A (en) * 2009-09-25 2010-04-14 李茂程 Large-scale water-saving irrigation network with solar photovoltaic driving and GPRS wireless communication monitoring
CN101953287A (en) * 2010-08-25 2011-01-26 中国农业大学 Multi-data based crop water demand detection system and method
CN102550373A (en) * 2011-12-16 2012-07-11 西安瑞特快速制造工程研究有限公司 Intelligent irrigation control system and method based on short message service
US20130018509A1 (en) * 2011-07-13 2013-01-17 Lindsay Corporation Control system for stopping or reversing movement of an irrigation system
CN103699061A (en) * 2013-11-15 2014-04-02 柴俊沙 Intelligent irrigation equipment based on wireless sensor network
CN104186284A (en) * 2014-08-26 2014-12-10 四川亿信信用评估有限公司 Irrigation system remotely controlled by short messages of mobile phone
CN204069990U (en) * 2014-09-23 2015-01-07 刘以辉 Based on the crop irrigation equipment of RFID
CN204733707U (en) * 2015-06-03 2015-11-04 广东千森园林科技股份有限公司 Gardens automatic spraying system
CN204742093U (en) * 2015-07-01 2015-11-11 塔城市顺鑫综合专业合作社 Full -automatic irrigation system
CN105075807A (en) * 2014-05-13 2015-11-25 天津市安正利网络工程科技有限公司 Intelligent irrigation system based on Internet of Things

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101120646A (en) * 2006-08-09 2008-02-13 姚福来 Irrigation device for desert plant obtaining water from air
CN101100866A (en) * 2007-07-23 2008-01-09 姚福来 Device for extracting water in air by solar energy
CN101258827A (en) * 2008-04-23 2008-09-10 昆明理工大学 Community greening and water-saving automatic irrigation device
CN101692783A (en) * 2009-09-25 2010-04-14 李茂程 Large-scale water-saving irrigation network with solar photovoltaic driving and GPRS wireless communication monitoring
CN101953287A (en) * 2010-08-25 2011-01-26 中国农业大学 Multi-data based crop water demand detection system and method
US20130018509A1 (en) * 2011-07-13 2013-01-17 Lindsay Corporation Control system for stopping or reversing movement of an irrigation system
CN102550373A (en) * 2011-12-16 2012-07-11 西安瑞特快速制造工程研究有限公司 Intelligent irrigation control system and method based on short message service
CN103699061A (en) * 2013-11-15 2014-04-02 柴俊沙 Intelligent irrigation equipment based on wireless sensor network
CN105075807A (en) * 2014-05-13 2015-11-25 天津市安正利网络工程科技有限公司 Intelligent irrigation system based on Internet of Things
CN104186284A (en) * 2014-08-26 2014-12-10 四川亿信信用评估有限公司 Irrigation system remotely controlled by short messages of mobile phone
CN204069990U (en) * 2014-09-23 2015-01-07 刘以辉 Based on the crop irrigation equipment of RFID
CN204733707U (en) * 2015-06-03 2015-11-04 广东千森园林科技股份有限公司 Gardens automatic spraying system
CN204742093U (en) * 2015-07-01 2015-11-11 塔城市顺鑫综合专业合作社 Full -automatic irrigation system

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
LEEBLE: "从空中取水的灌溉器", 《设计》 *
曹广才等: "《北方旱田禾本科主要作物节水种植》", 30 September 2006, 气象出版社 *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106168786A (en) * 2016-07-29 2016-11-30 宁波维蒙圣菲农业机械有限公司 A kind of method of long-range control monitoring irrigation sprinkler work
CN108235928A (en) * 2016-12-26 2018-07-03 天津优爱创科技有限公司 A kind of flow watering device controls host
CN109138051A (en) * 2018-09-10 2019-01-04 肖丹宁 A kind of stony desertification comprehensive treatment system based on information intelligent

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