CN216527538U - Centralized alarm device based on breeding internet of things - Google Patents

Centralized alarm device based on breeding internet of things Download PDF

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Publication number
CN216527538U
CN216527538U CN202123069132.4U CN202123069132U CN216527538U CN 216527538 U CN216527538 U CN 216527538U CN 202123069132 U CN202123069132 U CN 202123069132U CN 216527538 U CN216527538 U CN 216527538U
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alarm
information
circuit
internet
breeding
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陆杰
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GUANGZHOU HUANAN POULTRY EQUIPMENT CO LTD
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GUANGZHOU HUANAN POULTRY EQUIPMENT CO LTD
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Abstract

The utility model provides a centralized alarm device based on a breeding Internet of things, which comprises an equipment body, a breeding environment controller, an Internet of things gateway, a breeding network management platform and a user side, wherein the equipment body is connected with the breeding environment controller through a network; the aquaculture environment controller is configured to be connected with an Internet of things gateway; the Internet of things gateway and the user side are both configured to be connected with the breeding network management platform; the equipment body is configured to be connected with the culture environment controller and the culture network management platform; the equipment body comprises a shell and an alarm control circuit arranged in the shell, wherein the shell comprises a shell and a front panel, the shell is provided with a cavity for placing the alarm control circuit, and the front panel is configured to be connected with the shell so that the cavity forms a closed cavity; the front panel is provided with a display screen; the alarm control circuit is configured to be connected with the internet of things gateway. The intelligent alarm device has the advantages of simple structure, small size, intelligent alarm and the like.

Description

Centralized alarm device based on breeding internet of things
Technical Field
The utility model relates to the technical field of alarm devices, in particular to a centralized alarm device based on a breeding Internet of things.
Background
In the field of cultivation, the alarm system in the market at present mainly comprises audible and visual alarm, short message alarm and telephone alarm, most of alarms are limited to power failure alarm and environmental controller fault alarm, the alarm information sent to farmers is single relatively, when the livestock and poultry house breaks down, the farmers can go to the chicken house to process the whole control system in a relatively comprehensive manner due to the fact that the obtained alarm information is comprehensive, abnormal problems cannot be accurately and timely processed, environment changes of livestock and poultry can be possibly caused due to faults, and then the livestock and poultry growth state is abnormal or even dead. Meanwhile, in the prior art, most of breeding houses with short message and telephone alarm functions are single alarm modules, and each alarm module needs to be provided with an SIM card, which is a heavy burden for large-scale farms with dozens of or even dozens of breeding houses. In addition, the existing culture alarm device is large in size, can only be fixedly installed and is inconvenient to use.
Therefore, in order to solve the problems in the prior art, it is important to provide a centralized alarm device which has a small volume, is convenient to install, and can realize intelligent alarm.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a centralized alarm device based on a breeding Internet of things, which is small in size, convenient to install and capable of realizing intelligent alarm.
In order to achieve the purpose, the utility model adopts the following technical scheme:
a centralized alarm device based on a breeding Internet of things comprises an equipment body, a breeding environment controller, an Internet of things gateway, a breeding network management platform and a user side; the aquaculture environment controller is configured to be connected with an Internet of things gateway; the Internet of things gateway and the user side are both configured to be connected with the breeding network management platform; the equipment body is configured to be connected with the culture environment controller and the culture network management platform;
the equipment body comprises a shell and an alarm control circuit arranged in the shell, wherein the shell comprises a shell and a front panel, the shell is provided with a cavity for placing the alarm control circuit, and the front panel is configured to be connected with the shell so that the cavity forms a closed cavity; the front panel is provided with a display screen; the alarm control circuit is configured to be connected with the Internet of things gateway;
the alarm control circuit comprises a data acquisition sensor, an alarm circuit, an alarm setting module and an alarm information query module; the data acquisition sensor is used for acquiring environmental information and communication information of the environmental control equipment and transmitting the environmental information and the communication information to the culture environment controller; the breeding environment controller performs data interaction with a breeding network management platform through an Internet of things gateway; the alarm setting module is configured to set working periods of a plurality of alarm numbers and selected alarm information and transmit the working periods and the selected alarm information to the alarm circuit; the alarm circuit is configured to acquire the environmental information of the aquaculture network management platform through a communication module of the alarm circuit for judgment and control the on-off of the alarm; the alarm information query module is configured to receive query information and perform information feedback.
Specifically, the environment control device is: controlling specific operating devices of the environmental devices, for example: the small window control box adjusts the air inlet amount by controlling the opening of the small window and the air door, thereby realizing the adjustment of the air quality such as temperature, humidity, carbon dioxide and the like in the poultry house. Another example is: the light modulator realizes the regulation of poultry house illumination intensity through the regulation to the luminance brightness in the poultry house.
And the breeding environment controller is connected with the Internet of things gateway through RS232 serial port communication.
Preferably, the gateway of the internet of things comprises a network module of a GSM cellular mobile system, and the breeding environment controller uploads environmental information to the breeding network management platform through the network module of the GSM cellular mobile system.
And the bottom of the shell is provided with a groove, and the groove is provided with a plurality of connecting ends connected with the alarm control circuit.
Preferably, a wiring circuit connected with the connecting terminal is arranged near the connecting terminal, wherein the wiring circuit comprises an FPC wiring board, an audio wiring board, an lvds lcd wiring board, and a mipi lcd wiring board.
Preferably, the model of the FPC wiring board is FPC _30P _0P 5; the models of the audio frequency wiring board, the LVDSLCD wiring board and the MipiLCD wiring board are BTB50 PIN.
As described above, the environment information includes stall state information.
Preferably, the internet of things gateway and the breeding network management platform can be networked in a wired, wireless, GPRS network or GSM card manner.
Specifically, the user can freely set network connection, and can set a signal intensity indicator lamp for displaying the signal intensity. The equipment body can be moved and also can be fixedly arranged in the farm, and a plurality of pieces of equipment can be placed in the farm for simultaneous use. The alarm can be a buzzer, a warning light, a sound and the like;
preferably, the user terminal includes a PC terminal or a mobile terminal.
Specifically, when the user uses the centralized alarm device, the user applies for an account number of the breeding network management platform, allocates hurdles to be monitored, sets a network (a wired network, a wifi network or a 4G network and the like), prepares an SIM card to be placed in the equipment body, and can complete network connection of all parts.
Preferably, the environment information includes stall state information.
Preferably, the alarm control circuit is set to acquire stall state information at a time interval of 30 seconds, judge whether the stall state information is matched with preset alarm information, drive the audio module to perform voice broadcast if the stall state information is matched with the preset alarm information, and drive an output port of the alarm to be opened.
Preferably, the periphery of the front panel protrudes outwards relative to the shell; the equipment body is also provided with an alarm eliminating button.
Specifically, the alarm control circuit can set a plurality of different alarm numbers, and can set corresponding alarm reminding numbers according to different working periods and working properties, so that the alarm has higher accuracy and timeliness, and unnecessary disturbance is avoided. The preset alarm information can comprise various alarm conditions such as high temperature, low temperature, power failure, phase loss, overload, offline, water shortage, water overflow, high static pressure, low static pressure, temperature and humidity sensors, charging trays, material lines, test, temperature difference, equipment trip, and the like. The following steps can be further provided: except that the first eight appointed alarm information can not be selectively shielded for important alarm information, other alarm information can be automatically selected to be shielded or not according to the requirement. For the hurdles in an off-line state, the centralized alarm device can automatically send out an alarm to users, and for some hurdles (vacant hurdles) which are not in use, the users can select shielding by themselves to avoid false alarm. The centralized alarm device can be set to acquire stall state information every 30 seconds, continuously acquire the stall state information, perform voice broadcasting or alarm in other modes if the alarm exists, and open an output port of the alarm (sound a horn); if the alarm continues, the alarm can be set to be broadcast once every 20 seconds, and if the total number of the alarms exceeds 3, the alarm content can be set as follows: the current total number of alarms is added with the first three higher-level alarms (important alarms take precedence). Meanwhile, the user can also turn off the tweeter through the alarm elimination button (if the alarm is changed or the alarm is given again, the tweeter can sound again). In addition, the user can inquire each alarm information of each hurdle in the online period through the alarm information inquiry module, and the user can know the alarm condition of each hurdle according to the historical record and make relevant adjustment.
Preferably, the display screen is a touch screen.
The alarm circuit comprises an AD conversion circuit, a voltage stabilizing circuit and a differential circuit receiving and transmitting circuit; the AD conversion circuit comprises an AD conversion chip and a control circuit, wherein the AD conversion chip is configured to convert an alternating current voltage into a 12V direct current voltage; the voltage stabilizing circuit comprises a switching regulator chip; the differential line transceiver circuit includes a differential line transceiver and a plurality of photo-couplers.
Preferably, the model of the AD conversion chip is LH25-13B 12; the type of the switching regulator chip is AOZ 1284; the type of the differential line transceiver is ADM485 ARZ.
Preferably, the periphery of the front panel protrudes outwards relative to the shell; the equipment body is also provided with an alarm eliminating button.
The utility model has the beneficial effects that:
the utility model provides a centralized alarm device based on a breeding Internet of things, wherein the volume of an equipment body is smaller, the arrangement mode of the equipment body can be mobile arrangement or fixed installation, and a plurality of pieces of equipment can be installed in one field for use; the gateway of the internet of things of each stall only needs to be provided with a data card or a wired network, and each equipment body only needs to be provided with one SIM card under the condition that the short message telephone alarm function is needed; the centralized alarm device can set alarm reminding numbers according to time intervals and working properties, so that the alarm is more accurate and timely, unnecessary disturbance is avoided, and the set alarm is more humanized. In addition, the environmental operation information in the house in the previous day can be pushed by setting time every day, such as the lowest temperature, the highest temperature, the average temperature, the humidity range, the temperature range outside the house, the air quality range, the energy consumption condition and the like. The intelligent alarm device has the advantages of simple structure, small size, intelligent alarm and the like.
Drawings
Fig. 1 is a schematic structural diagram of an apparatus body of the centralized alarm device provided by the present invention;
FIG. 2 is a schematic side view of the apparatus body of the centralized alarm device provided by the present invention;
FIG. 3 is a schematic view of a groove structure of an apparatus body of the centralized alarm device provided by the present invention;
FIG. 4 is a schematic diagram of a circuit structure of the centralized alarm device provided by the present invention;
FIG. 5 is a schematic circuit diagram of a centralized alarm device according to the present invention;
FIG. 6 is a schematic diagram of the FPC board circuit of the centralized alarm device provided by the present invention;
FIG. 7 is a schematic electrical diagram of the patch panels of the centralized alarm unit provided by the present invention;
FIG. 8 is a schematic diagram of a voltage stabilizing circuit of the alarm device according to the present invention;
FIG. 9 is a schematic diagram of an AD conversion circuit of the centralized alarm device according to the present invention;
fig. 10 is a schematic diagram of a differential circuit transceiver circuit of the centralized alarm device according to the present invention.
Detailed Description
The following further describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1 to 10, the embodiment provides a centralized alarm device based on a breeding internet of things, and the embodiment provides a centralized alarm device based on a breeding internet of things, which comprises an equipment body, a breeding environment controller, an internet of things gateway, a breeding network management platform and a user side; the aquaculture environment controller is configured to be connected with an Internet of things gateway; the Internet of things gateway and the user side are both configured to be connected with the breeding network management platform; the equipment body is configured to be connected with the culture environment controller and the culture network management platform;
the equipment body comprises a casing 1 and an alarm control circuit arranged in the casing 1, wherein the casing 1 comprises a shell 11 and a front panel 12, the shell 11 is provided with a cavity for placing the alarm control circuit, and the front panel 12 is configured to be connected with the shell 11 so as to form a closed cavity; the front panel 12 is provided with a display screen 121; the alarm control circuit is configured to be connected with the Internet of things gateway;
the alarm control circuit comprises a data acquisition sensor, an alarm circuit, an alarm setting module and an alarm information query module; the data acquisition sensor is used for acquiring environmental information and communication information of the environmental control equipment and transmitting the environmental information and the communication information to the culture environment controller; the breeding environment controller performs data interaction with a breeding network management platform through an Internet of things gateway; the alarm setting module is configured to set working periods of a plurality of alarm numbers and selected alarm information and transmit the working periods and the selected alarm information to the alarm circuit; the alarm circuit is configured to acquire the environmental information of the aquaculture network management platform through a communication module of the alarm circuit for judgment and control the on-off of the alarm; the alarm information query module is configured to receive query information and perform information feedback.
In this embodiment, the aquaculture environment controller is connected with the internet of things gateway through RS232 serial port communication.
In this embodiment, the internet of things gateway includes a GSM cellular mobile system network module, and the breeding environment controller uploads environmental information to the breeding network management platform through the GSM cellular mobile system network module.
In this embodiment, the bottom of the housing 11 is provided with a groove 111, and the groove 111 is provided with a plurality of connection terminals 112 (i.e. interfaces) connected to the alarm control circuit; and a wiring circuit connected with the connecting end is arranged near the connecting end, wherein the wiring circuit comprises an FPC wiring board, an audio wiring board, an LVDSLCD wiring board and a Mipi LCD wiring board, as shown in the attached figures 6-7.
In the present embodiment, the model of the FPC wiring board is FPC _30P _0P 5; the audio patch board, the LVDSLCD patch board and the MipiLCD patch board are all BTB50 PIN.
In this embodiment, the environment information includes stall state information.
In this embodiment, the internet of things gateway and the aquaculture network management platform may be networked in a wired, wireless, GPRS network, or GSM card manner. The user can freely set network connection, and can set a signal intensity indicator lamp for displaying the signal intensity. The equipment body can be moved and also can be fixedly arranged in the farm, and a plurality of pieces of equipment can be placed in the farm for simultaneous use. The alarm can be a buzzer, a warning light, a sound and the like;
in this embodiment, the ue includes a PC side or a mobile side. When the user uses the centralized alarm device, the user firstly applies for an account number of the breeding network management platform, allocates hurdles needing monitoring, sets a network (a wired network, a wifi network or a 4G network and the like), prepares an SIM card to be placed in the equipment body, and can complete network connection of all parts.
In this embodiment, the environment information includes stall state information; alarm control circuit sets up to use 30 seconds to obtain stall state information as time interval, judges that stall state information whether with preset alarm information phase-match, if match then drive audio module and carry out voice broadcast to the output port of drive alarm opens.
In this embodiment, the periphery of the front panel 12 protrudes outward relative to the housing 11; the equipment body is also provided with an alarm eliminating button.
Specifically, the alarm control circuit can set a plurality of different alarm numbers, and can set corresponding alarm reminding numbers according to different working periods and working properties, so that the alarm has higher accuracy and timeliness, and unnecessary disturbance is avoided. The preset alarm information can comprise various alarm conditions such as high temperature, low temperature, power failure, phase loss, overload, offline, water shortage, water overflow, high static pressure, low static pressure, temperature and humidity sensors, charging trays, material lines, test, temperature difference, equipment trip, and the like. The following steps can be further provided: except that the first eight appointed alarm information can not be selectively shielded for important alarm information, other alarm information can be automatically selected to be shielded or not according to the requirement. For the hurdles in an off-line state, the centralized alarm device can automatically send out an alarm to users, and for some hurdles (vacant hurdles) which are not in use, the users can select shielding by themselves to avoid false alarm. The centralized alarm device can be set to acquire stall state information every 30 seconds, continuously acquire the stall state information, perform voice broadcasting or alarm in other modes if the alarm exists, and open an output port of the alarm (sound a horn); if the alarm continues, the alarm can be set to be broadcast once every 20 seconds, and if the total number of the alarms exceeds 3, the alarm content can be set as follows: the current total number of alarms is added with the first three higher-level alarms (important alarms take precedence). Meanwhile, the user can also turn off the tweeter through the alarm elimination button (if the alarm is changed or the alarm is given again, the tweeter can sound again). In addition, the user can inquire each alarm information of each hurdle in the online period through the alarm information inquiry module, and the user can know the alarm condition of each hurdle according to the historical record and make relevant adjustment.
In the present embodiment, the display screen 121 is configured as a touch screen.
In this embodiment, the alarm circuit includes an AD conversion circuit, a voltage stabilizing circuit, and a differential line transceiver circuit; the AD conversion circuit comprises an AD conversion chip and a control circuit, wherein the AD conversion chip is configured to convert an alternating current voltage into a 12V direct current voltage; the voltage stabilizing circuit comprises a switching regulator chip; the differential line transceiving circuit comprises a differential line transceiver and three photoelectric couplers. The model of the AD conversion chip is LH25-13B 12; the type of the switching regulator chip is AOZ 1284; the type of the differential line transceiver is ADM485 ARZ.
Variations and modifications to the above-described embodiments may occur to those skilled in the art, which fall within the scope and spirit of the above description. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should fall within the protection scope of the claims of the present invention. Furthermore, although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.

Claims (10)

1. A centralized alarm device based on a breeding Internet of things comprises an equipment body, a breeding environment controller, an Internet of things gateway, a breeding network management platform and a user side; the method is characterized in that:
the aquaculture environment controller is configured to be connected with an Internet of things gateway; the Internet of things gateway and the user side are both configured to be connected with the breeding network management platform; the equipment body is configured to be connected with the culture environment controller and the culture network management platform;
the equipment body comprises a shell and an alarm control circuit arranged in the shell, wherein the shell comprises a shell and a front panel, the shell is provided with a cavity for placing the alarm control circuit, and the front panel is configured to be connected with the shell so that the cavity forms a closed cavity; the front panel is provided with a display screen; the alarm control circuit is configured to be connected with the Internet of things gateway;
the alarm control circuit comprises a data acquisition sensor, an alarm circuit, an alarm setting module and an alarm information query module; the data acquisition sensor is used for acquiring environmental information and communication information of the environmental control equipment and transmitting the environmental information and the communication information to the culture environment controller; the breeding environment controller performs data interaction with a breeding network management platform through an Internet of things gateway; the alarm setting module is configured to set working periods of a plurality of alarm numbers and selected alarm information and transmit the working periods and the selected alarm information to the alarm circuit; the alarm circuit is configured to acquire the environmental information of the aquaculture network management platform through a communication module of the alarm circuit for judgment and control the on-off of the alarm; the alarm information query module is configured to receive query information and perform information feedback.
2. The centralized alarm device of claim 1, wherein: the breeding environment controller is connected with the Internet of things gateway through RS232 serial port communication.
3. The centralized alarm device of claim 1, wherein: the Internet of things gateway comprises a GSM cellular mobile system network module, and the breeding environment controller uploads environmental information to the breeding network management platform through the GSM cellular mobile system network module.
4. The centralized alarm device of claim 1, wherein: the bottom of the shell is provided with a groove, and the groove is provided with a plurality of connecting ends connected with the alarm control circuit.
5. The centralized warning device of claim 4, wherein: and a wiring circuit connected with the connecting end is arranged near the connecting end, wherein the wiring circuit comprises an FPC wiring board, an audio wiring board, an LVDSLCD wiring board and a MipidLCD wiring board.
6. The centralized alarm device of claim 1, wherein: the environment information includes stall status information.
7. The centralized warning device of claim 6, wherein: alarm control circuit sets up to use 30 seconds to obtain stall state information as time interval, judges that stall state information whether with preset alarm information phase-match, if match then drive audio module and carry out voice broadcast to the output port of drive alarm opens.
8. The centralized alarm device of claim 1, wherein: the alarm circuit comprises an AD conversion circuit, a voltage stabilizing circuit and a differential circuit receiving and transmitting circuit; the AD conversion circuit comprises an AD conversion chip and a voltage conversion circuit, wherein the AD conversion chip is configured to be used for converting alternating current voltage into 12V direct current voltage; the voltage stabilizing circuit comprises a switching regulator chip; the differential line transceiving circuit includes a differential line transceiver and a plurality of photo couplers.
9. The centralized warning device of claim 8, wherein: the model of the AD conversion chip is LH25-13B 12; the type of the switching regulator chip is AOZ 1284; the type of the differential line transceiver is ADM485 ARZ.
10. The centralized alarm device of claim 1, wherein: the periphery of the front panel protrudes outwards relative to the shell; the equipment body is also provided with an alarm elimination button.
CN202123069132.4U 2021-12-08 2021-12-08 Centralized alarm device based on breeding internet of things Active CN216527538U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123069132.4U CN216527538U (en) 2021-12-08 2021-12-08 Centralized alarm device based on breeding internet of things

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123069132.4U CN216527538U (en) 2021-12-08 2021-12-08 Centralized alarm device based on breeding internet of things

Publications (1)

Publication Number Publication Date
CN216527538U true CN216527538U (en) 2022-05-13

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Application Number Title Priority Date Filing Date
CN202123069132.4U Active CN216527538U (en) 2021-12-08 2021-12-08 Centralized alarm device based on breeding internet of things

Country Status (1)

Country Link
CN (1) CN216527538U (en)

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