CN210327816U - Power grid facility safety monitoring system - Google Patents

Power grid facility safety monitoring system Download PDF

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Publication number
CN210327816U
CN210327816U CN201921810952.4U CN201921810952U CN210327816U CN 210327816 U CN210327816 U CN 210327816U CN 201921810952 U CN201921810952 U CN 201921810952U CN 210327816 U CN210327816 U CN 210327816U
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shell
controller
humidity
temperature sensor
detection module
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CN201921810952.4U
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亓亮
胡志冰
张亚鹏
杨开今
刘乐
吴刚
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Abstract

The utility model discloses a power grid facility safety monitoring system, which comprises a shell and a system, wherein a fan communicated with the width of the shell is arranged on the right side in the middle of the top of the shell, the fan is arranged on the shell through a bolt, a voltage detection end is arranged on the left side below the shell, a temperature sensor is arranged below the left side of the shell, a humidity sensor is arranged above the temperature sensor, a controller is fixed on the upper side of the left side inside the shell through a screw, and a storage device is arranged on the right side of the controller; this electric wire netting facility safety monitoring system detects temperature value through temperature sensor, be convenient for in time discover the interior overheated condition of electric wire netting facility, detect humidity through humidity transducer, be convenient for in time discover the condition of leaking, detect electric wire netting facility voltage through the voltage detection end, be convenient for in time discover the unstable condition of voltage, shoot real-time video through the camera, report to the police through speaker and alarm lamp, be convenient for in time remind the maintenance, control whole through the system.

Description

Power grid facility safety monitoring system
Technical Field
The utility model relates to an electric wire netting technical field specifically is an electric wire netting facility safety monitoring system.
Background
The whole formed by the substation and the transmission and distribution lines of various voltages in the power system is called a power grid, which is called a power grid for short. The system comprises three units of power transformation, power transmission and power distribution. The task of the power grid is to deliver and distribute electrical energy, changing the voltage;
in the process of the power grid operation, facilities in the power grid often have problems, the facilities are damaged due to overhigh humidity in the equipment, the operation cannot be carried out, or the temperature in the facilities is overhigh, the working efficiency is reduced, the voltage in the equipment is overhigh, the damage in the facilities is caused, and the like, which can cause great damage to the power grid operation;
in the life, electricity becomes one of the important energy sources at the present stage, the instability of the electricity can cause problems in life for many families, but the existing power grid system rarely has a device for monitoring the problems, and a system for monitoring the safety of the power grid is further needed.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a power grid facility safety monitoring system has the advantage of temperature detection, controller control, internet access, automatic alarm, system control, has solved the problem among the prior art.
In order to achieve the above object, the utility model provides a following technical scheme: a safety monitoring system for power grid facilities comprises a shell and a system, wherein a fan communicated with the width of the shell is arranged on the right side in the middle of the top of the shell, the fan is installed on the shell through bolts, a voltage detection end is arranged on the left side of the lower portion of the shell, a temperature sensor is arranged below the left side of the shell, a humidity sensor is arranged above the temperature sensor, a loudspeaker is installed above the right side of the shell through embedding, a power supply interface is fixed at the bottom of the front of the right side of the shell through screws, a camera is installed on the left side of the upper front of the shell through embedding, a control switch is arranged on the right side of the camera and fixed on the shell through screws, an alarm lamp is fixed above the left side of the back of the shell through screws, a display is installed in the middle of the back, the display is flush with the back of the shell, a controller is fixed above the left side inside the shell through screws, a storage device is arranged on the right side of the controller and fixed on the inner wall of the shell through screws, a network interface is arranged above the storage device and fixed on the inner wall of the shell through screws, a storage battery is arranged below the storage device, the storage battery is fixed on the inner wall of the shell through screws, and a partition plate is arranged above the storage battery;
the system comprises a cloud end, a server, an alarm module, a network interface, a controller, a temperature detection module, a humidity detection module, a voltage detection module, a video monitoring module, an alarm lamp and a loudspeaker, wherein the server is respectively connected with the cloud end, the network interface and the alarm module through a network and a cable, the network interface is connected with the controller through a cable, and the controller is respectively connected with the temperature detection module, the humidity detection module, the voltage detection module, the video monitoring module, the alarm lamp and the loudspeaker through cables;
the temperature detection module detects a temperature value in the power grid by adopting a temperature sensor group and transmits the detected temperature value to the controller;
the humidity detection module detects the humidity value of the power grid facility by adopting a humidity sensor group and transmits the detected humidity value to the controller;
the voltage detection module detects a voltage value in the power grid facility by adopting a voltage detection end and transmits the detected voltage value to the controller;
the video monitoring module adopts a camera to shoot real-time videos in the power grid facility and transmits the detected videos to the controller.
Preferably, the alarm module adopts a network to alarm, and transmits the alarm information to the mobile phone end through the cloud end.
Preferably, the temperature sensor has the following types: type, the humidity transducer model is: HS12P, the camera model is: YCA-ZL183S, the storage model is: JS28F640P33T 85.
Preferably, power source passes through the cable connection power, the battery passes through cable connection power source, the battery passes through cable connection control switch, temperature sensor, camera, humidity transducer, voltage detection end, display, accumulator, controller and network interface are connected respectively to control switch through the cable, temperature sensor, speaker, fan, camera, humidity transducer, voltage detection end, network interface, accumulator and display are connected respectively to the controller through the cable.
Compared with the prior art, the beneficial effects of the utility model are as follows: this electric wire netting facility safety monitoring system passes through temperature sensor and detects temperature value, the overheated condition in the electric wire netting facility of being convenient for in time discover, detect humidity through humidity transducer, the condition of leaking is convenient for in time discover, detect electric wire netting facility voltage through the voltage detection end, the unstable condition of voltage of being convenient for in time discover, shoot real-time video through the camera, report to the police through speaker and alarm lamp, be convenient for in time remind the maintenance, control whole through the system.
Drawings
Fig. 1 is the utility model relates to a power grid facility safety monitoring system's overall structure schematic diagram.
Fig. 2 is the utility model relates to an electric wire netting facility safety monitoring system's internal structure schematic diagram.
Fig. 3 is a rear view schematic diagram of the utility model relates to a power grid facility safety monitoring system.
Fig. 4 is a system schematic diagram of the utility model relates to a power grid facility safety monitoring system.
The figures are labeled as follows: the device comprises a shell 1, a loudspeaker 2, a control switch 3, a fan 4, a camera 5, a humidity sensor 6, a temperature sensor 7, a voltage detection end 8, a power interface 9, a controller 10, a network interface 11, a storage 12, a storage battery 13, a display 14 and an alarm lamp 15.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, rather than all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the protection scope of the present invention based on the embodiments of the present invention.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Referring to fig. 1-4, a power grid facility safety monitoring system comprises a shell 1 and a system, wherein a fan 4 communicated with the width of the shell 1 is arranged on the right side in the middle of the top of the shell 1, the fan 4 is installed on the shell 1 through a bolt, a voltage detection end 8 is arranged on the left side below the shell 1, a temperature sensor 7 is arranged below the left side of the shell 1, and the type of the temperature sensor 7 is as follows: type, 7 tops of temperature sensor are equipped with humidity transducer 6, and 6 models of humidity transducer are: HS12P, speaker 2 is installed through the embedding in the upper right side of shell 1, and there is power source 9 shell 1 right side the place ahead bottom through the fix with screw, and camera 5 is installed through the embedding in the upper left side in the front of shell 1, and the 5 models of camera are: YCA-ZL183S, 5 right sides of camera are equipped with control switch 3, control switch 3 passes through the fix with screw on shell 1, 1 back left side top of shell has alarm lamp 15 through the fix with screw, 1 back middle display 14 of installing through the embedding, display 14 passes through the fix with screw on shell 1, display 14 flushes at the back with shell 1, 1 inside left side top of shell has controller 10 through the fix with screw, 10 right sides of controller are equipped with accumulator 12, accumulator 12 passes through the fix with screw at 1 inner wall of shell, the 12 models of accumulator are: JS28F640P33T85, a network interface 11 is arranged above a storage 12, the network interface 11 is fixed on the inner wall of a shell 1 through screws, a storage battery 13 is arranged below the storage 12, the storage battery 13 is fixed on the inner wall of the shell 1 through screws, a partition board is arranged above the storage battery 13, a power supply is connected with the power supply through a cable, the storage battery 13 is connected with the power supply 9 through a cable, the storage battery 13 is connected with a control switch 3 through a cable, the control switch 3 is respectively connected with a temperature sensor 7, a camera 5, a humidity sensor 6, a voltage detection end 8, a display 14, the storage 12, a controller 10 and the network interface 11 through cables, and the controller 10 is respectively connected with the temperature sensor 7, a loudspeaker 2, a fan 4, the camera 5, the humidity sensor 6, the temperature sensor 7, the voltage detection end 8, the network interface 11;
the system comprises a cloud end, a server, an alarm module, a network interface 11, a controller 10, a temperature detection module, a humidity detection module, a voltage detection module, a video monitoring module, an alarm lamp 15 and a loudspeaker 2, wherein the server is respectively connected with the cloud end, the network interface 11 and the alarm module through a network and a cable, the network interface 11 is connected with the controller 10 through the cable, the controller 10 is respectively connected with the temperature detection module, the humidity detection module, the voltage detection module, the video monitoring module, the alarm lamp 15 and the loudspeaker 2 through the cable, the alarm module alarms by adopting the network, and alarm information is transmitted to a mobile phone end through the cloud end;
the temperature detection module detects the temperature value in the power grid by adopting the temperature sensor 7 groups and transmits the detected temperature value to the controller 10;
the humidity detection module detects the humidity value of the power grid facility by adopting the humidity sensor 6 group and transmits the detected humidity value to the controller 10;
the voltage detection module detects a voltage value in the power grid facility by adopting a voltage detection end 8 and transmits the detected voltage value to the controller 10;
the video monitoring module adopts the camera 5 to shoot real-time videos in the power grid facility and transmits the detected videos to the controller 10.
The working principle is as follows: the utility model relates to a power grid facility safety monitoring system, power source 9 connects the power through the cable, battery 13 begins to store the electric quantity, place temperature sensor 7 and humidity transducer 6 near the power grid facility, insert voltage detection end 8 in the facility power department, open control switch 3, the device is internal to be circular telegram, fan 4 begins to dispel the heat, set up the model of power grid facility in controller 10, temperature sensor 7 transmits the temperature value to controller 10, humidity transducer 6 transmits the humidity value that detects to controller 10, voltage detection end 8 transmits the voltage value that detects to controller 10, controller 10 connects the system through network interface 11 at this moment, the server in the system searches the value of this facility from the high in the clouds according to the model of power grid facility, and transmit the numerical value that searches to controller 10 through network interface 11, at the moment, the controller 10 monitors the power grid facility according to the searched value, the camera 5 shoots the video and transmits the shot video to the controller 10, the controller 10 transmits the detected temperature, humidity, voltage and real-time video to the storage 12 and the display 14, the display 14 displays the real-time value and the video, the storage 12 stores data, when the data is needed to be checked, the data is led out through a data line, when the temperature value is overhigh, the controller 10 opens the loudspeaker 2 and the alarm lamp 15 through a cable to perform sound and light alarm, the controller 10 transmits the alarm information to the server through the network interface 11, the server transmits the alarm information to a mobile phone end through an alarm module to inform a person to maintain, when the temperature is reduced to the searched temperature, the controller 10 automatically closes the loudspeaker 2 and the alarm lamp 15, and when the voltage and the humidity are overhigh, the working process of the system is consistent with the working process of overhigh temperature, when power is cut off, the storage battery 13 continues to supply power for the device, and when the device needs to be closed, the control switch 3 is closed.
Having shown and described the basic principles and principal features of the invention and advantages thereof, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof; the present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein, and any reference signs in the claims are not intended to be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (4)

1. A power grid facility safety monitoring system which characterized in that: the intelligent alarm device comprises a shell (1) and a system, wherein a fan (4) communicated with the width of the shell (1) is arranged on the right side in the middle of the top of the shell (1), the fan (4) is installed on the shell (1) through a bolt, a voltage detection end (8) is arranged on the left side of the lower portion of the shell (1), a temperature sensor (7) is arranged below the left side of the shell (1), a humidity sensor (6) is arranged above the temperature sensor (7), a loudspeaker (2) is installed above the right side of the shell (1) through embedding, a power supply interface (9) is fixed at the bottom of the front right side of the shell (1) through a screw, a camera (5) is installed on the left side of the front upper portion of the shell (1) through embedding, a control switch (3) is arranged on the right side of the camera (5), the control switch (3) is fixed on the shell (1) through a screw, an, the display (14) is installed in the middle of the rear face of the shell (1) in an embedded mode, the display (14) is fixed to the shell (1) through screws, the display (14) is flush with the rear face of the shell (1), a controller (10) is fixed to the upper portion of the left side inside the shell (1) through screws, a storage device (12) is arranged on the right side of the controller (10), the storage device (12) is fixed to the inner wall of the shell (1) through screws, a network interface (11) is arranged above the storage device (12), the network interface (11) is fixed to the inner wall of the shell (1) through screws, a storage battery (13) is arranged below the storage device (12), the storage battery (13) is fixed to the inner wall of the shell (1) through screws, and a partition plate is;
the system comprises a cloud, a server, an alarm module, a network interface (11), a controller (10), a temperature detection module, a humidity detection module, a voltage detection module, a video monitoring module, an alarm lamp (15) and a loudspeaker (2), wherein the server is respectively connected with the cloud, the network interface (11) and the alarm module through a network and a cable, the network interface (11) is connected with the controller (10) through the cable, and the controller (10) is respectively connected with the temperature detection module, the humidity detection module, the voltage detection module, the video monitoring module, the alarm lamp (15) and the loudspeaker (2) through the cable;
the temperature detection module detects a temperature value in the power grid by adopting a temperature sensor (7) group and transmits the detected temperature value to the controller (10);
the humidity detection module detects the humidity value of the power grid facility by adopting a humidity sensor (6) group and transmits the detected humidity value to the controller (10);
the voltage detection module detects a voltage value in a power grid facility by adopting a voltage detection end (8) and transmits the detected voltage value to the controller (10);
the video monitoring module adopts a camera (5) to shoot real-time videos in the power grid facility and transmits the detected videos to the controller (10).
2. The grid infrastructure safety monitoring system of claim 1, wherein: the alarm module adopts a network to alarm and transmits alarm information to the mobile phone end through the cloud.
3. The grid infrastructure safety monitoring system of claim 1, wherein: the type of the temperature sensor (7) is as follows: type, humidity transducer (6) model is: HS12P, the camera (5) model is: YCA-ZL183S, said reservoir (12) being of the type: JS28F640P33T 85.
4. The grid infrastructure safety monitoring system of claim 1, wherein: power source (9) are through cable junction power source, battery (13) are through cable junction power source (9), battery (13) are through cable connection control switch (3), control switch (3) are connected temperature sensor (7), camera (5), humidity transducer (6), voltage detection end (8), display (14), accumulator (12), controller (10) and network interface (11) respectively through the cable, temperature sensor (7), speaker (2), fan (4), camera (5), humidity transducer (6), voltage detection end (8), network interface (11), accumulator (12) and display (14) are connected respectively through the cable in controller (10).
CN201921810952.4U 2019-10-26 2019-10-26 Power grid facility safety monitoring system Active CN210327816U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921810952.4U CN210327816U (en) 2019-10-26 2019-10-26 Power grid facility safety monitoring system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921810952.4U CN210327816U (en) 2019-10-26 2019-10-26 Power grid facility safety monitoring system

Publications (1)

Publication Number Publication Date
CN210327816U true CN210327816U (en) 2020-04-14

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Application Number Title Priority Date Filing Date
CN201921810952.4U Active CN210327816U (en) 2019-10-26 2019-10-26 Power grid facility safety monitoring system

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CN (1) CN210327816U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113225528A (en) * 2021-04-16 2021-08-06 湖南省京湘电力开发有限公司 Electric power construction safety management system based on electric power thing networking

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113225528A (en) * 2021-04-16 2021-08-06 湖南省京湘电力开发有限公司 Electric power construction safety management system based on electric power thing networking

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