WO2022228195A1 - 智能保温灯控制系统 - Google Patents

智能保温灯控制系统 Download PDF

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Publication number
WO2022228195A1
WO2022228195A1 PCT/CN2022/087543 CN2022087543W WO2022228195A1 WO 2022228195 A1 WO2022228195 A1 WO 2022228195A1 CN 2022087543 W CN2022087543 W CN 2022087543W WO 2022228195 A1 WO2022228195 A1 WO 2022228195A1
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WIPO (PCT)
Prior art keywords
heat preservation
intelligent
terminal
preservation lamp
control
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PCT/CN2022/087543
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English (en)
French (fr)
Inventor
吴迪
周杰
黄少协
李龙龙
段国华
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丰疆智能(深圳)有限公司
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Publication of WO2022228195A1 publication Critical patent/WO2022228195A1/zh

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    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/18Status alarms
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Definitions

  • the embodiments of the present application relate to a heat preservation control technology, for example, to an intelligent heat preservation lamp control system.
  • Insulation lamps and insulation boards are widely used in the field of animal husbandry insulation. With the development of scale, informatization and intelligence in the aquaculture industry, the traditional temperature regulation system with constant temperature control of the whole house has been unable to meet the needs of aquaculture.
  • the heat preservation lamp in the related art has only two power levels, and the temperature adjustment method is to rely on mechanical components to adjust the height, which cannot meet the accurate control of the heating/heat preservation temperature, wastes energy seriously and shortens the service life of the heat preservation lamp; the heat preservation lamp cannot Networking can only rely on manual on-site monitoring and judgment, which increases the cost of manual management and may lead to the introduction of bacteria to infect the cubs due to the entry of staff, and the temperature data cannot be effectively saved.
  • the present application provides an intelligent heat preservation lamp control system, which can realize intelligent control and remote management of the intelligent heat preservation lamp, reduce wiring, reduce personnel costs, and reduce the risk of germs being brought into a breeding plant.
  • An intelligent heat preservation lamp control system includes multiple control subsystems and servers; each control subsystem includes: an intelligent control terminal, a temperature sensor, an intelligent heat preservation lamp, and a management terminal; the intelligent control terminal and the management terminal respectively include Bluetooth module;
  • the temperature sensor is connected to the intelligent control terminal, and is configured to monitor the ambient temperature in real time and transmit the monitoring data to the intelligent control terminal;
  • the intelligent control terminal is electrically connected to the intelligent heat preservation lamp, the intelligent control terminal is connected to the management terminal through a Bluetooth module, and is configured to perform at least one of the following operations: transmitting the received monitoring data to the The management terminal saves, and calculates and generates the first control instruction corresponding to the monitoring data according to the calculation model; generates the corresponding first control instruction according to the second control instruction generated by the management terminal, and the intelligent control terminal generates the corresponding first control instruction according to the first control instruction.
  • a control command adjusts the working power of the intelligent heat preservation lamp;
  • each management terminal in multiple control subsystems is connected and wirelessly networked through the Bluetooth module, each management terminal is connected to the server, and each management terminal is set to perform data interaction, and perform the following operations: Generate a second control instruction according to the operation of the mobile terminal connected to each management terminal; upload the received monitoring data to the server, and receive the second control instruction generated by the server;
  • the server is configured to backup and save the monitoring data, and generate the second control instruction according to the operation of the WEB terminal or the mobile terminal connected to the server.
  • FIG. 1A is a schematic structural diagram of an intelligent heat preservation lamp control subsystem provided by an embodiment of the application
  • FIG. 1B is a schematic structural diagram of an intelligent heat preservation lamp control system provided by an embodiment of the application.
  • FIG. 2 is a schematic structural diagram of another intelligent heat preservation lamp control subsystem provided by an embodiment of the present application.
  • FIG. 3 is a schematic structural diagram of an intelligent heat preservation lamp according to an embodiment of the present application.
  • FIG. 1A is a schematic structural diagram of an intelligent heat preservation lamp control subsystem provided by an embodiment of the application
  • FIG. 1B is a schematic structural diagram of an intelligent heat preservation lamp control system provided by an embodiment of the application
  • FIG. 2 is provided by an embodiment of the application.
  • FIG. 3 is a schematic structural diagram of an intelligent heat preservation lamp provided by an embodiment of the application.
  • an intelligent heat preservation lamp control system includes a plurality of control subsystems 10 and a server 20 ; the control subsystem 10 includes: an intelligent control terminal 100 , a temperature sensor 200 , an intelligent heat preservation lamp 300 , and a management terminal 400 ; The intelligent control terminal 100 and the management terminal 400 respectively include a Bluetooth module 500;
  • the temperature sensor 200 is connected to the intelligent control terminal 100, and is configured to monitor the ambient temperature in real time and transmit the monitoring data to the intelligent control terminal 100;
  • the intelligent control terminal 100 is electrically connected to the intelligent heat preservation lamp 300 , and the intelligent control terminal 100 is connected to the management terminal 400 through a Bluetooth module 500 , and is configured to transmit the received monitoring data to the management terminal 400 save, and calculate and generate the first control instruction corresponding to the monitoring data according to the calculation model, and/or generate the corresponding first control instruction according to the second control instruction transmitted by the management terminal 400, the intelligent control terminal 100
  • the working power of the smart heat preservation lamp 300 is adjusted according to the first control instruction.
  • the management terminals 400 of the plurality of control subsystems 10 are connected and wirelessly networked through the Bluetooth module 500, set to data exchange, and generate a second control instruction according to the operation of the mobile terminal connected to it;
  • the management terminal 400 is also connected with the server 20, and is configured to upload the received monitoring data to the server 20, and receive the second control instruction of the server 20;
  • the server 20 is configured to backup and save the monitoring data, and generate the second control instruction according to the operation of the WEB terminal or the mobile terminal 30 connected thereto.
  • the second control instruction may be generated by the management terminal 400 or generated by the server 20 .
  • the user can operate the APP on the mobile terminal 30 connected to the management terminal 400, and the management terminal 400 generates the second control instruction, and sends the second control instruction to the intelligent control terminal 100, and the intelligent control terminal 100 according to the first control instruction.
  • the second control instruction generates a first control instruction, and the intelligent control terminal 100 adjusts the working power of the intelligent heat preservation lamp 300 according to the first control instruction.
  • the user operates on the input end of the server (the WEB end or the mobile terminal 30 connected to the server), and transmits the input command to the server 20 (when inputting the command to the mobile terminal, the input command can be sent through the APP on the mobile terminal 30).
  • the server 20 generates the second control command and sends the second control command to the management terminal 400 through the network, and the management terminal 400 sends the second control command to the intelligent control terminal 100, and the intelligent control terminal 100 sends the second control command to the intelligent control terminal 100.
  • the first control command is generated according to the second control command, and the intelligent control terminal 100 adjusts the working power of the smart heat preservation lamp 300 according to the first control command.
  • An intelligent heat preservation lamp control system provided in this embodiment includes a plurality of control subsystems 10 and a server 20.
  • Each control subsystem 10 controls the intelligent heat preservation lamps 300 in one or more pig houses; the plurality of intelligent heat preservation lamps 300 are distributed Set in the pig house, a temperature sensor 200 is set at preset distances to monitor the ambient temperature in the pig house in real time.
  • each smart heat preservation lamp 300 is provided with at least one high-precision temperature sensor 200 respectively.
  • the intelligent control terminal 100 and the management terminal 400 respectively include a Bluetooth module 500.
  • the intelligent control terminal 100 transmits the monitoring data of the ambient temperature to the management terminal 400 through the Bluetooth module 500, and the management terminal 400 saves the data, and realizes the data transmission by wireless. Eliminate the hassle of networking wiring.
  • the intelligent control terminal 100 includes an intelligent computing processor and stores a calculation model.
  • the intelligent control terminal 100 inputs the received monitoring data into the calculation model to calculate and generate a corresponding first control command, so as to automatically adjust the power of the intelligent heat preservation lamp 300 .
  • the calculation model includes the environmental temperature control curve model and the set environmental temperature value; the environmental temperature control curve model is constructed according to the different growth stages of piglets and the optimal growth environment temperature, and the set environmental temperature value is manually set by the user.
  • the intelligent control terminal 100 includes a thyristor voltage regulating circuit, which is configured to adjust the working voltage of the intelligent heat preservation lamp 300 according to the first control instruction to adjust the working power of the intelligent heat preservation lamp.
  • the automatic control of the ambient temperature required by piglets at different growth stages is realized through the calculation model, the frequent switching of the heat preservation lamp and the need to manually adjust the height of the heat preservation lamp are avoided, and the long-term heat preservation is avoided through power adjustment.
  • the lamp works at full power, prolonging the service life of the heat preservation lamp, reducing labor costs, height adjustment mechanical parts costs and power consumption.
  • the intelligent heat preservation lamp can also realize individual adjustment according to the user's operation;
  • the management terminal 400 is also connected to the server 20, and the input end of the server includes the WEB terminal and/or the mobile terminal 30 connected to it, and the management terminal 400 received by the server
  • the monitoring data transmitted by the terminal 400 is backed up and saved. After the user understands the current temperature of the pig house through the monitoring data, he operates the WEB terminal and the mobile terminal 30 to generate a second control command, and the management terminal 400 receives the second control command and generates a second control command.
  • a corresponding first control instruction is generated and transmitted to the intelligent control terminal 100, and the intelligent control terminal 100 adjusts the power of the intelligent heat preservation lamp 300 according to the user operation.
  • the management terminals 400 of the multiple control subsystems 10 are connected through the Bluetooth module 500 and wirelessly networked to form the intelligent heat preservation lamp control system 1 , and the multiple management terminals 400 are set to perform data exchange. It is also set to generate a second control instruction according to the user operation of the mobile terminal 30 connected to any management terminal 400 in the networking, and then generate a corresponding first control instruction according to the second control instruction and transmit it to the intelligent control terminal 100 for the intelligent heat preservation lamp. 300 for control.
  • the mobile terminal 30 When the management terminals 400 of the multiple control subsystems 10 successfully form a wireless network, the mobile terminal 30 is automatically searched for and connected to. When the mobile terminal 30 held by the user is connected to any management terminal 400, other management terminals in the network can be managed.
  • the terminal 400 operates to control the smart heat preservation lamps 300 in the multiple subsystems 10 . It can eliminate the need to manually enter the pig farm for temperature management, save the cost of manual management, reduce the number of personnel entering the pig farm, avoid the impact of personnel carrying germs into the pig farm on piglets, improve the safety of piglet growth, and reduce germs. Being brought into the pig farm brings hidden dangers to piglets.
  • the present application adopts the integrated design of the intelligent controller and the intelligent heat preservation lamp, and applies the Bluetooth module in the intelligent controller to perform data communication with the management terminal, server and mobile terminal, so as to avoid the difficulty of accurate control of the temperature of the heat preservation lamp and waste of electric energy, and the heat preservation lamp and In the case of high labor cost and equipment wiring cost caused by environmental data recording and transmission, realize intelligent control of intelligent heat preservation lamp, convenient data transmission, reduce wiring and reduce personnel cost, realize remote management and reduce the introduction of germs to the environment. Risks to the farm.
  • the server 20 is further configured to generate user management information according to the user's input on the WEB terminal and/or the mobile terminal 30, and transmit it to the management terminal 400; the management terminal 400 further includes input
  • the device 410 is configured to receive the user's operation and generate user management information correspondingly.
  • the user can input the date of birth of piglets in each column and the number of piglets on the WEB terminal and/or the mobile terminal 30, input the environmental temperature control curve model, the temperature data model required for animal growth and the set environmental temperature value and other information to generate user management. information, the user can also directly perform an input operation through the input device 410 of the management terminal 400 to generate corresponding user management information.
  • the user management information is stored in the server 20 and the management terminal 400 for the intelligent control terminal 100 to call.
  • the input device 410 may be an input method such as a touch screen, physical keys, or touch keys.
  • the intelligent control terminal 100, the temperature sensor 200 and the intelligent heat preservation lamp 300 respectively include a plurality of them; each intelligent heat preservation lamp 300 is respectively connected to at least one of the temperature sensor 200 and one of the intelligent control terminal 100.
  • Each smart heat preservation lamp 300 is connected to at least one of the temperature sensors 200. As shown in FIG. 3, the smart heat preservation lamp 300 is connected to one temperature sensor 200. In an alternative embodiment, the smart heat preservation lamp 300 is connected to a plurality of temperature sensors 200, which can effectively Monitoring the ambient temperature; each intelligent heat preservation lamp 300 interacts with the management terminal 400, the server 20 and the user through the intelligent control terminal 100, so that the user can remotely understand the status of each intelligent heat preservation lamp 300 and multiple ambient temperatures, and take effective measures. Temperature regulation; enables users to remotely control each intelligent heat preservation lamp, so as to achieve precise control of the ambient temperature.
  • the intelligent control terminal 100 further includes a monitoring chip 110 , which is configured to obtain the working status information of each intelligent heat preservation lamp 300 and upload it to the management terminal 400 ; the intelligent control terminal 100 It is also set to acquire and save the user management information from the management terminal 400 .
  • the monitoring chip monitors the working state of the intelligent heat preservation lamp 300 in real time, and uploads the working state information to the management terminal 400 for storage. At the same time, according to the monitored working state, a historical data file is generated and saved, which is convenient for later data traceability.
  • the management terminal 400 can store the intelligent heat preservation lamp
  • the working status information of 300 is uploaded to the server 20 for backup and storage; the intelligent control terminal 100 can also obtain and save user management information from the management terminal 400 , which is convenient for the intelligent control terminal 100 to call.
  • the management terminal 400 can automatically acquire the monitoring data of the intelligent control terminal and the working status information of the intelligent heat preservation lamp 300, and according to the information stored in the management terminal 400 Program and temperature setting data intelligently control multiple connected intelligent control terminals, and realize intelligent regulation of the temperature of one or more pig houses to meet the optimal growth requirements of piglets.
  • the intelligent control terminal 100 is further configured to generate an alarm instruction according to the monitoring data and the working state and transmit it to the management terminal 400 .
  • the management terminal 400 further includes a display module 420, which is configured to display the monitoring data, the working status information, the user management information, and the alarm information corresponding to the alarm instruction; In order to transmit the alarm information to the server 20 .
  • a display module 420 which is configured to display the monitoring data, the working status information, the user management information, and the alarm information corresponding to the alarm instruction; In order to transmit the alarm information to the server 20 .
  • the management terminal 400 may be a terminal device provided with a display module 420 in the pig house management room.
  • the intelligent control terminal 100 intelligently adjusts it. is still higher or lower than the preset value, at this time, it can be determined that the intelligent heat preservation lamp 300 and/or the intelligent control terminal 100 is faulty, an alarm command is generated, and a warning message is reminded in the management terminal 400; when the working state of the intelligent heat preservation lamp 300 When an abnormality occurs, an alarm instruction is generated, and the management terminal 400 performs a warning information reminder; for example, the management terminal 400 transmits the alarm information corresponding to the alarm instruction to the server 20, and the server can transmit it to the user's mobile terminal 30 through the wireless network for reminder, forming a
  • the management terminal 400 of the wireless networking can also directly send the alarm information wirelessly to the mobile terminal 30 connected in the networking for reminder; the user is reminded through the warning information to use manual operation on the input device 410 to realize temperature adjustment
  • the display module 420 of the management terminal 400 can also display monitoring data, working status information and user management information, so that the user can understand the situation in the pig house without entering the pig house; maintenance in a timely manner.
  • the intelligent control terminal 100 further includes at least one indicator light 120 and an alarm (not shown), and the indicator light 120 is configured to display the working status information of the smart heat preservation lamp 300;
  • the alarms described above are set to alert.
  • the object to be operated can be quickly found according to the color of the indicator light 120 and the alarm sound of the alarm, so as to improve the efficiency of trouble shooting and maintenance for the user and reduce the infection of piglets. risk of germs.
  • the smart heat preservation lamp 300 includes a smart heat preservation lamp body 310 , a waterproof connector 320 , a connecting wire 330 , a switch 340 and a power plug 350 ;
  • the waterproof connector 320 is connected to the main body 310 of the intelligent heat preservation lamp and the connecting wire 330 , the power plug 350 is connected to an external power source, and the switch 340 is set to manually turn on and off the intelligent heat preservation lamp 300 .
  • the temperature sensor 200 and the main body 310 of the intelligent heat preservation lamp are respectively connected to the intelligent control terminal 100, and the diameter of the lampshade on the head of the main body 310 of the intelligent heat preservation lamp is 300 mm, so that the heat radiation range of the intelligent heat preservation lamp 300 is large; the waterproof connector 320 The distance from the rear of the main body 310 of the smart heat preservation lamp is 500mm; the distance from the waterproof connector 320 to the power plug 350 is 150mm, and the switch 340 is arranged on the connecting wire 330 between the waterproof connector 320 and the power plug 350; The power plug 350 is connected with the main body 310 of the intelligent heat preservation lamp at the lower part, and the switch 340 and the power plug 350 are set higher from the ground to avoid circuit short circuit when the humidity of the pig house is high.

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  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
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Abstract

一种智能保温灯控制系统,系统包括多个控制子系统(10)和服务器(20),每个控制子系统(10)包括:智能控制终端(100)、温度传感器(200)、智能保温灯(300)、管理终端(400)和服务器(20);智能控制终端(100)和管理终端(400)分别包括蓝牙模块(500);温度传感器(200)与智能控制终端(100)连接,智能控制终端(100)与智能保温灯(300)电连接,智能控制终端(100)与管理终端(400)通过蓝牙模块(500)连接,管理终端(400)还与服务器(20)连接,服务器(20)设置为将监测数据备份保存,根据WEB端或与服务器(20)连接的移动终端(30)的操作生成第二控制指令。

Description

智能保温灯控制系统
本申请要求在2021年4月30日提交中国专利局、申请号为2021209371981的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请实施例涉及保温控制技术,例如涉及一种智能保温灯控制系统。
背景技术
保温灯、保温板广泛应用于畜牧保温领域。随着养殖行业规模化、信息化、智能化的发展,传统的整屋恒温控制的调温系统已经无法满足养殖需求。
相关技术中的保温灯仅有两档功率,且调整温度方式为依靠机械部件调整高度,不能满足对加温/保温温度的准确控制,对电能浪费严重且缩短保温灯的使用寿命;保温灯不能联网,只能依靠人工现场监测判断,增加人工管理成本同时可能由工作人员的进入导致带入病菌感染幼崽,并且无法有效保存温度数据。
发明内容
本申请提供一种智能保温灯控制系统,可以实现智能保温灯的智能化控制和远程管理、减少布线,降低人员成本以及降低病菌被带入到养殖厂的风险。
本申请采用以下技术方案:
一种智能保温灯控制系统,包括多个控制子系统和服务器;每个控制子系统包括:智能控制终端、温度传感器、智能保温灯、管理终端;所述智能控制终端和所述管理终端分别包括蓝牙模块;
所述温度传感器与所述智能控制终端连接,设置为对环境温度进行实时监测并将监测数据传输至所述智能控制终端;
所述智能控制终端与所述智能保温灯电连接,所述智能控制终端与所述管理终端通过蓝牙模块连接,设置为执行以下至少之一的操作:将接收的所述监测数据传输至所述管理终端进行保存,并根据计算模型计算生成所述监测数据对应的第一控制指令;根据所述管理终端生成的第二控制指令生成相应的第一控制指令,所述智能控制终端根据所述第一控制指令调节所述智能保温灯的工作功率;
多个控制子系统中的多个管理终端通过所述蓝牙模块连接并无线组网,每个管理终端与所述服务器连接,所述每个管理终端设置为进行数据交互,,并执行以下操作:根据与每个管理终端连接的移动终端的操作生成第二控制指令;将接收的所述监测数据上传至所述服务器,接收所述服务器生成的第二控制指令;
所述服务器设置为将所述监测数据备份保存,根据WEB端或与所述服务器连接的移动终端的操作生成所述第二控制指令。
附图说明
图1A为本申请实施例提供的一种智能保温灯控制子系统的结构示意图;
图1B为本申请实施例提供的一种智能保温灯控制系统的结构示意图,
图2为本申请实施例提供的另一种智能保温灯控制子系统的结构示意图;
图3为本申请实施例提供的一种智能保温灯的结构示意图。
具体实施方式
下面结合附图和实施例对本申请作进一步的详细说明。可以理解的是,此处所描述的具体实施例仅仅用于解释本申请,而非对本申请的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本申请相关的部分而非全部结构。
实施例
图1A为本申请实施例提供的一种智能保温灯控制子系统的结构示意图,图1B为本申请实施例提供的一种智能保温灯控制系统的结构示意图,图2为本申请实施例提供的另一种智能保温灯控制子系统的结构示意图;图3为本申请实施例提供的一种智能保温灯的结构示意图。
如图1A所示,一种智能保温灯控制系统,包括多个控制子系统10和服务器20;所述控制子系统10包括:智能控制终端100、温度传感器200、智能保温灯300、管理终端400;所述智能控制终端100和所述管理终端400分别包括蓝牙模块500;
所述温度传感器200与所述智能控制终端100连接,设置为对环境温度进行实时监测并将监测数据传输至所述智能控制终端100;
所述智能控制终端100与所述智能保温灯300电连接,所述智能控制终端100与所述管理终端400通过蓝牙模块500连接,设置为将接收的所述监测数据传输至所述管理终端400进行保存,并根据计算模型计算生成所述监测数据对应的第一控制指令,和/或,根据所述管理终端400传输的第二控制指令生成相应的第一控制指令,所述智能控制终端100根据所述第一控制指令调节所述智能保温灯300的工作功率。
如图1B所示,多个控制子系统10的管理终端400通过所述蓝牙模块500连接并无线组网,设置为数据交互,以及根据与之连接的移动终端的操作生成第二控制指令;所述管理终端400还与所述服务器20连接,设置为将接收的所述监测数据上传至所述服务器20,接收所述服务器20的第二控制指令;
所述服务器20设置为将所述监测数据备份保存,根据WEB端或与之连接的移动终端30的操作生成所述第二控制指令。
其中,第二控制指令可由管理终端400生成,或者由服务器20生成。
用户可以在管理终端400连接的移动终端30上的APP进行操作,由管理终端400生成第二控制指令,并将第二控制指令下发至智能控制终端100,由所述智能控制终端100根据第二控制指令生成第一控制指令,智能控制终端100根据第一控制指令对智能保温灯300的工作功率进行调节。
用户通过在服务器的输入端(WEB端或与服务器连接的移动终端30)进行操作,将输入的指令传输给服务器20(在对移动终端输入指令时,可以通过移动终端30上的APP将输入指令传输给服务器),服务器20生成第二控制指令并通过网络将第二控制指令下发至管理 终端400,管理终端400将第二控制指令下发至智能控制终端100,由所述智能控制终端100根据第二控制指令生成第一控制指令,智能控制终端100根据第一控制指令对智能保温灯300的工作功率进行调节。
在畜牧业中,保温灯常用于牧场的猪舍,设置为调节小猪仔和待产母猪所处的环境温度,使之在最有利于生长和生产的环境温度。本实施例提供的一种智能保温灯控制系统,包括多个控制子系统10和服务器20,每个控制子系统10控制一间或多间猪舍的智能保温灯300;多盏智能保温灯300分布设置在猪舍内,每隔预设距离设置一个温度传感器200对猪舍内的环境温度进行实时监测,示例性的,每盏智能保温灯300分别带有至少一个高精度的温度传感器200。智能控制终端100和管理终端400分别包括蓝牙模块500,智能控制终端100将环境温度的监测数据通过蓝牙模块500传输至管理终端400,管理终端400将数据进行保存,通过无线方式实现数据传输,可以免去联网布线的麻烦。智能控制终端100包括智能运算处理器,存储计算模型,智能控制终端100将接收的监测数据输入计算模型计算生成对应的第一控制指令,从而对智能保温灯300进行自动功率调节。其中,计算模型包括环境温度控制曲线模型和设定的环境温度值;环境温度控制曲线模型根据猪仔不同生长阶段和最佳生长环境温度构建而成,设定的环境温度值由用户通过手动设定。例如,智能控制终端100包括可控硅调压电路,设置为根据第一控制指令调整智能保温灯300的工作电压从而调整智能保温灯的工作功率。通过计算模型实现对不同生长阶段的猪仔所需环境温度的自动控制,避免对保温灯的频繁开关以及需要依靠人工对保温灯的高度进行频繁调整的情况,并且通过功率调节避免长时间使保温灯处于满功率工作状态,延长了保温灯的使用寿命,降低了人工成本、高度调整机械部件成本和电能消耗。
除了智能控制外,智能保温灯还可以根据用户的操作实现个性化调节;管理终端400还与服务器20连接,服务器的输入端包括WEB端和/或与之连接的移动终端30,服务器接收的管理终端400传输的监测数据并进行备份保存,用户在通过监测数据了解到猪舍现在的温度后,通过WEB端和移动终端30进行操作,生成第二控制指令,管理终端400接收第二控制指令并生成相应的第一控制指令传输至智能控制终端100,智能控制终端100根据用户操作调整智能保温灯300的功率。使得用户通过手持的移动终端上的APP即可远程对猪舍的环境温度进行监控,对的智能保温灯进行控制和管理。例如,如图1B所示,多个控制子系统10的管理终端400通过所述蓝牙模块500连接并无线组网形成智能保温灯控制系统1,设置为多个管理终端400之间进行数据交互,还设置为根据与组网中任一管理终端400连接的移动终端30的用户操作生成第二控制指令,再根据第二控制指令生成相应的第一控制指令传输至智能控制终端100对智能保温灯300进行控制。当多个控制子系统10的管理终端400无线组网成功后,自动寻找并连接移动终端30,当用户手持的移动终端30连接至任一管理终端400时,可对组网内的其它的管理终端400进行操作,从而控制多个子系统10中的智能保温灯300。可免去人工进入猪场进行温度管理,节约了人工管理成本,减少人员进入猪场的次数,避免了人员携带病菌进入猪场对猪仔的影响,提高了猪仔生长的安全性,减少病菌被带入到猪场给猪仔带来的患病隐患。
本申请通过智能控制器与智能保温灯的一体化设计,以及在智能控制器中应用蓝牙模块与管理终端、服务器和移动终端进行数据通信,避免保温灯温度难以准确控制,浪费电能,保温灯及环境的数据记载和传输导致的人工成本和设备布线成本较高的情况,实现智能保温 灯的智能化控制、便捷的数据传输、减少布线和降低人员成本,实现远程管理并降低病菌被带入到养殖厂的风险。
在上述实施例的基础上,所述服务器20还设置为根据用户在WEB端和/或移动终端30的输入生成用户管理信息,并传输至所述管理终端400;所述管理终端400还包括输入装置410,设置为接收用户的操作,并对应生成用户管理信息。
用户可在WEB端和/或移动终端30输入每栏猪仔的出生日期,猪仔数量,输入环境温度控制曲线模型、动物生长所需温度数据模型和设定环境温度值等信息,生成用户管理信息,用户也可通过管理终端400的输入装置410直接进行输入操作生成对应的用户管理信息,用户管理信息保存在服务器20和管理终端400中,供智能控制终端100调用。其中,输入装置410可以为触摸屏、物理按键或触摸按键等输入方式。
例如,所述智能控制终端100、所述温度传感器200和所述智能保温灯300分别包含多个;每盏所述智能保温灯300分别连接至少一个所述温度传感器200和一个所述智能控制终端100。
每盏智能保温灯300连接至少一个所述温度传感器200,如图3所示,智能保温灯300连接一个温度传感器200,在替代实施例中,智能保温灯300连接多个温度传感器200,能够有效监测环境温度;每盏智能保温灯300通过智能控制终端100与管理终端400、服务器20和用户进行数据交互,实现用户远程了解每一盏智能保温灯300的状态及多个环境温度,采取有效的温度调控;实现用户远程对每一盏智能保温灯进行控制,从而达到对环境温度的精准控制。
如图2所示,例如,所述智能控制终端100还包括监测芯片110,设置为获取每盏所述智能保温灯300的工作状态信息并上传至所述管理终端400;所述智能控制终端100还设置为从所述管理终端400获取并保存所述用户管理信息。
监测芯片实时监控智能保温灯300的工作状态,并将工作状态信息并上传至管理终端400保存,同时根据监测的工作状态生成历史数据文件保存,便于后期数据追溯,管理终端400可将智能保温灯300的工作状态信息上传至服务器20进行备份保存;智能控制终端100还可从管理终端400获取并保存用户管理信息,便于智能控制终端100调用。例如,在控制子系统10与移动终端30和服务器20连接或未连接时,管理终端400可自动获取智能控制终端的监测数据和智能保温灯300的工作状态信息,并根据管理终端400中存储的程序和温度设置数据对连接的多个智能控制终端进行智能控制,实现智能调控一个或多个猪舍的温度符合猪仔最佳生长需求。
例如,智能控制终端100还设置为根据所述监测数据和所述工作状态生成报警指令并传输至所述管理终端400。
如图2所示,例如,所述管理终端400还包括显示模块420,设置为展示所述监测数据、所述工作状态信息、所述用户管理信息和所述报警指令对应的报警信息;还设置为将所述报警信息传输至所述服务器20。
示例性的,管理终端400可以为设置在猪舍管理室带有显示模块420的终端设备,当猪舍的监测到的环境温度高于或低于预设值,并且经过智能控制终端100智能调节后仍然高于或低于预设值,此时可以判定智能保温灯300和/或智能控制终端100存在故障,生成报警指令,在管理终端400进行警示信息提醒;当智能保温灯300的工作状态出现异常时,生成 报警指令,在管理终端400进行警示信息提醒;例如,管理终端400将报警指令对应的报警信息传输至服务器20,服务器可通过无线网络传输至用户的移动终端30进行提醒,形成无线组网的管理终端400还能通过无线直接将报警信息发送至连接在组网内的移动终端30进行提醒;通过警示信息提醒用户在输入装置410上采用手动操作实现温度调节,当手动调节仍然无法生效时,继续提醒用户及时对智能保温灯300和/或智能控制终端100进行排障,保证猪仔所处的环境温度在合适范围内。例如,管理终端400的显示模块420还可以展示监测数据、工作状态信息和用户管理信息,便于用户不用进入猪舍就能了解猪舍内的情况;同时根据每盏智能保温灯300的工作状态显示及时进行维护。
如图3所示,例如,所述智能控制终端100还包括至少一个指示灯120和报警器(未示出),所述指示灯120设置为显示所述智能保温灯300的工作状态信息;所述报警器设置为进行报警提示。
在用户进入猪舍对智能保温灯300进行排障和维护时,根据指示灯120的颜色和报警器发出的报警声迅速找出待操作对象,提高用户排障和维护的效率,降低猪仔感染病菌的风险。
如图3所示,例如,所述智能保温灯300包括智能保温灯主体310、防水连接器320、连接线330、开关340及电源插头350;
所述防水连接器320连接所述智能保温灯主体310和所述连接线330,所述电源插头350与外部电源连接,所述开关340设置为手动启闭所述智能保温灯300。
示例性的,温度传感器200与智能保温灯主体310分别连接于智能控制终端100,智能保温灯主体310头部的灯罩直径为300mm,使得智能保温灯300的热量辐射范围较大;防水连接器320距离智能保温灯主体310尾部为500mm;防水连接器320距离电源插头350距离为150mm,开关340设置于防水连接器320和电源插头350之间的连接线330上;防水连接器320将开关340及电源插头350与下部的智能保温灯主体310连接起来,且开关340及电源插头350设置距离地面较高,避免在猪舍湿度较大时引起电路短路。

Claims (10)

  1. 一种智能保温灯控制系统,包括多个控制子系统和服务器;每个控制子系统包括:智能控制终端、温度传感器、智能保温灯、管理终端;所述智能控制终端和所述管理终端分别包括蓝牙模块;
    所述温度传感器与所述智能控制终端连接,设置为对环境温度进行实时监测并将监测数据传输至所述智能控制终端;
    所述智能控制终端与所述智能保温灯电连接,所述智能控制终端与所述管理终端通过所述蓝牙模块连接,设置为执行以下至少之一的操作:将接收的所述监测数据传输至所述管理终端进行保存,并根据计算模型计算生成所述监测数据对应的第一控制指令;根据所述管理终端生成的第二控制指令生成相应的第一控制指令,所述智能控制终端根据所述第一控制指令调节所述智能保温灯的工作功率;
    多个控制子系统中的多个管理终端通过所述蓝牙模块连接并无线组网,每个管理终端与所述服务器连接,所述每个管理终端设置为进行数据交互,并执行以下操作:根据与所述每个管理终端连接的移动终端的操作生成所述第二控制指令;将接收的所述监测数据上传至所述服务器,接收所述服务器生成的所述第二控制指令;
    所述服务器设置为将所述监测数据备份保存,根据WEB端或与所述服务器连接的移动终端的操作生成所述第二控制指令。
  2. 根据权利要求1所述的智能保温灯控制系统,其中,所述服务器还设置为根据用户在网络WEB端和所述移动终端中至少之一的输入操作,生成用户管理信息,并传输至所述每个管理终端;
    其中,所述每个管理终端还包括输入装置,设置为接收用户的操作,并生成所述用户管理信息。
  3. 根据权利要求1所述的智能保温灯控制系统,其中,所述计算模型包括环境温度控制曲线模型和设定的环境温度值。
  4. 根据权利要求1所述的智能保温灯控制系统,其中,所述智能控制终端、所述温度传感器和所述智能保温灯分别包含多个;每个智能保温灯分别连接至少一个温度传感器和一个智能控制终端。
  5. 根据权利要求2所述的智能保温灯控制系统,其中,所述智能控制终端还包括监测芯片,设置为获取所述每个智能保温灯的工作状态信息并上传至对应的管理终端;所述智能控制终端还设置为从所述对应的管理终端获取并保存所述用户管理信息。
  6. 根据权利要求5所述的智能保温灯控制系统,其中,智能控制终端还设置为根据所述监测数据和所述工作状态生成报警指令并传输至所述对应的管理终端。
  7. 根据权利要求6所述的智能保温灯控制系统,其中,所述管理终端还包括显示模块,设置为展示所述监测数据、所述工作状态信息、所述用户管理信息和所述报警指令对应的报警信息;还设置为将所述报警信息传输至所述服务器。
  8. 根据权利要求1所述的智能保温灯控制系统,其中,所述智能控制终端还包括至少一个指示灯和报警器;
    所述指示灯设置为显示所述智能保温灯的工作状态信息;所述报警器设置为进行报警提示。
  9. 根据权利要求1所述的智能保温灯控制系统,其中,所述智能控制终端包括可控硅 调压电路,设置为根据所述第一控制指令调整所述智能保温灯的工作电压以调整所述智能保温灯的工作功率。
  10. 根据权利要求1所述的智能保温灯控制系统,其中,所述智能保温灯包括智能保温灯主体、防水连接器、连接线、开关及电源插头;
    所述防水连接器连接所述智能保温灯主体和所述连接线,所述电源插头与外部电源连接,所述开关设置为手动启闭所述智能保温灯。
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Publication number Priority date Publication date Assignee Title
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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109828544A (zh) * 2019-02-15 2019-05-31 广州视声智能科技有限公司 一种基于蓝牙mesh的智能家居控制系统及其配置方法
CN210782439U (zh) * 2019-08-28 2020-06-19 青岛大牧人机械股份有限公司 应用于复杂养殖环境的加热控制网络
WO2020127467A1 (en) * 2018-12-18 2020-06-25 Soundtalks Nv Method for intelligent monitoring of one or more commercial sites for livestock animals
CN112201026A (zh) * 2020-09-29 2021-01-08 大牧人机械(胶州)有限公司 一种基于无线传输的仔猪生长保温控制方法及系统
CN214851858U (zh) * 2021-04-30 2021-11-23 丰疆智能(深圳)有限公司 一种智能保温灯控制系统

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020127467A1 (en) * 2018-12-18 2020-06-25 Soundtalks Nv Method for intelligent monitoring of one or more commercial sites for livestock animals
CN109828544A (zh) * 2019-02-15 2019-05-31 广州视声智能科技有限公司 一种基于蓝牙mesh的智能家居控制系统及其配置方法
CN210782439U (zh) * 2019-08-28 2020-06-19 青岛大牧人机械股份有限公司 应用于复杂养殖环境的加热控制网络
CN112201026A (zh) * 2020-09-29 2021-01-08 大牧人机械(胶州)有限公司 一种基于无线传输的仔猪生长保温控制方法及系统
CN214851858U (zh) * 2021-04-30 2021-11-23 丰疆智能(深圳)有限公司 一种智能保温灯控制系统

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