CN211180640U - Factory building monitoring data analysis system - Google Patents

Factory building monitoring data analysis system Download PDF

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Publication number
CN211180640U
CN211180640U CN201921930824.3U CN201921930824U CN211180640U CN 211180640 U CN211180640 U CN 211180640U CN 201921930824 U CN201921930824 U CN 201921930824U CN 211180640 U CN211180640 U CN 211180640U
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information acquisition
communication
factory building
acquisition module
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CN201921930824.3U
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Inventor
桂洪洋
陈志忠
万军杰
赵强
高波
付保庆
郭浩杰
李典
王志
徐超
杨军峰
聂保春
蒋凯
桑万里
王晓柯
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Henan Mingshi Security Prevention Engineering Co ltd
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Henan Mingshi Security Prevention Engineering Co ltd
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Abstract

The utility model is suitable for a factory building control technical field provides a factory building control data analysis system, including backstage control analysis subsystem and distributed factory building control subsystem, distributed factory building control subsystem includes at least one factory building monitoring device, and factory building monitoring device includes three kinds of information acquisition module, is image information acquisition module, environmental information acquisition module and harmful gas information acquisition module respectively. Correspondingly, the display screen module among the backstage monitoring analysis subsystem includes three display screen, and each display screen and every type of information acquisition module one-to-one, each display screen display corresponds kind of data information, so, monitoring data just can not become chaotic at the backstage, and every kind of data shows in order, and then just can be fast when the analysis monitoring data carries out the analysis to various kinds of data information, just also can effectively monitor the factory building.

Description

Factory building monitoring data analysis system
Technical Field
The utility model belongs to the technical field of the factory building control, especially, relate to a factory building control data analysis system.
Background
The factory building is a partition-free house, and is mostly found in the industries of light industry, electronics, instruments, communication, medicine and the like. The factory building is the place that is used for producing, because the complicacy of factory building production environment has various potential safety hazards, so people need obey various safety standards in factory building working process, and the various safety guarantee and supervisory equipment need be installed to the factory building to prevent the incident, guarantee personnel and the safety of equipment. However, the existing monitoring equipment can only perform simple monitoring, the types of monitoring data are many, the data are disordered, and after the monitoring data are sent to background personnel, the background personnel cannot analyze the monitoring data in order, the monitoring data cannot be analyzed quickly, and then the factory building cannot be effectively monitored.
SUMMERY OF THE UTILITY MODEL
The utility model provides a factory building control data analytic system for solve the backstage personnel and can't carry out effective analysis to the control data, lead to the unable problem of effectively monitoring to the factory building.
The utility model provides a plant monitoring data analysis system, which comprises a background monitoring analysis subsystem and a distributed plant monitoring subsystem,
distributed factory building control subsystem includes at least one factory building monitoring device, factory building monitoring device includes:
the image information acquisition module comprises a visible light imaging unit and an infrared light imaging unit;
the environment information acquisition module comprises a temperature sensor, an air humidity sensor, a wind speed sensor, an atmospheric pressure sensor, a smoke concentration sensor and an air pH value sensor;
the harmful gas information acquisition module comprises a carbon monoxide concentration sensor, a carbon dioxide concentration sensor, an ammonia gas concentration sensor, a hydrogen sulfide concentration sensor, a methane concentration sensor and a formaldehyde concentration sensor;
a first control module; and
a first communication module;
the signal output ends of the image information acquisition module, the environment information acquisition module and the harmful gas information acquisition module are connected with the first control module, and the communication end of the first control module is connected with the first communication module;
the background monitoring and analyzing subsystem comprises:
the display screen module comprises a first display screen for displaying the data information acquired by the image information acquisition module, a second display screen for displaying the data information acquired by the environment information acquisition module and a third display screen for displaying the data information acquired by the harmful gas information acquisition module;
a second control module;
a second communication module; and
a storage module;
the signal output end of the second control module is connected with the display screen module and the storage module, and the communication end of the second control module is connected with the second communication module;
the first communication module is in communication connection with the second communication module.
Optionally, the plant monitoring data analysis system further includes a mobile terminal, and the mobile terminal is in communication connection with the second communication module.
Optionally, the storage module is a solid state disk.
Optionally, the first communication module and the second communication module are both ZigBee communication modules, and the first communication module and the second communication module are in communication connection through a ZigBee communication network.
Optionally, the plant monitoring device further comprises an illuminating lamp, and the signal output end of the first control module is connected with the illuminating lamp.
Optionally, the background monitoring and analyzing subsystem further includes a printing module, and a signal output end of the second control module is connected to the printing module.
The utility model has the advantages that: the plant monitoring device comprises three types of information acquisition modules, namely an image information acquisition module, an environment information acquisition module and a harmful gas information acquisition module, wherein each type of information acquisition module is used for acquiring one type of data information; backstage control analysis subsystem includes three display screen, first display screen is used for showing the data message that image information collection module gathered, the second display screen is used for showing the data message that environmental information collection module gathered, the third display screen is used for showing the data message that harmful gas information collection module gathered, therefore, each display screen and every type of information collection module one-to-one, each display screen shows the data message that corresponds kind, so, monitoring data just can not become chaotic at the backstage, show through the display that corresponds, can show in order, and then just can be fast when analysis monitoring data analyzes various kinds of data message and carry out the analysis, just also can effectively monitor the factory building.
Drawings
Fig. 1 is a schematic structural diagram of a plant monitoring data analysis system.
Detailed Description
The embodiment provides a plant monitoring data analysis system, which comprises a background monitoring analysis subsystem and a distributed plant monitoring subsystem. The distributed plant monitoring subsystem includes at least one plant monitoring device, and the plant monitoring devices are arranged according to actual needs, such as the area size of a plant.
The plant monitoring device comprises an image information acquisition module, an environment information acquisition module, a harmful gas information acquisition module, a first control module, a first communication module and an illuminating lamp. The signal output ends of the image information acquisition module, the environment information acquisition module and the harmful gas information acquisition module are connected with the first control module, the communication end of the first control module is connected with the first communication module, and the signal output end of the first control module is connected with the illuminating lamp.
As shown in fig. 1, the image information collecting module includes a visible light imaging unit and an infrared light imaging unit, wherein the visible light imaging unit is a conventional camera, such as a telling ball camera, and is used for collecting video information in a factory building; the infrared imaging unit is an infrared camera and is used for detecting infrared image information in the plant.
The environment information acquisition module comprises a temperature sensor, an air humidity sensor, a wind speed sensor, an atmospheric pressure sensor, a smoke concentration sensor and an air pH value sensor. The temperature sensor is used for detecting the temperature in the plant and can be conventional temperature detection equipment; the air humidity sensor is used for detecting the air humidity in the plant and can be conventional air humidity detection equipment; the wind speed sensor is used for detecting the wind speed in the plant and can be conventional wind speed detection equipment; the atmospheric pressure sensor is used for detecting atmospheric pressure in the plant and can be conventional atmospheric pressure detection equipment; the smoke concentration sensor is used for detecting the smoke concentration in the factory building and can be conventional smoke concentration detection equipment; the air pH value sensor is used for detecting the air pH value in the plant and can be a conventional air pH value detector.
The harmful gas information acquisition module comprises a carbon monoxide concentration sensor, a carbon dioxide concentration sensor, an ammonia gas concentration sensor, a hydrogen sulfide concentration sensor, a methane concentration sensor and a formaldehyde concentration sensor. The carbon monoxide concentration sensor is used for detecting the concentration of carbon monoxide gas in a factory building, and can be a conventional carbon monoxide gas detection device; the carbon dioxide concentration sensor is used for detecting the concentration of carbon dioxide in the plant and can be conventional carbon dioxide detection equipment; the ammonia concentration sensor is used for detecting the ammonia concentration in the plant and can be conventional ammonia detection equipment; the hydrogen sulfide concentration sensor is used for detecting the concentration of hydrogen sulfide gas in the plant and can be a conventional hydrogen sulfide gas detection device; the methane concentration sensor is used for detecting the concentration of methane in the plant and can be conventional methane detection equipment; the formaldehyde concentration sensor is used for detecting the concentration of formaldehyde in a factory building and can be conventional formaldehyde detection equipment.
The first control module may be a conventional control chip, such as a single chip microcomputer.
The first communication module may be a wired communication module or a wireless communication module, and in this embodiment, the first communication module is a ZigBee communication module.
The illuminating lamp is used for illumination and can be a conventional illuminating device, and of course, as other embodiments, the illuminating lamp can be omitted.
The background monitoring and analyzing subsystem comprises a display screen module, a second control module, a second communication module, a storage module and a printing module. The signal output end of the second control module is connected with the display screen module, the storage module and the printing module, and the communication end of the second control module is connected with the second communication module.
The display screen module comprises three display screens which are respectively a first display screen, a second display screen and a third display screen,
the first display screen corresponds to the image information acquisition module and is used for displaying the data information acquired by the image information acquisition module; the second display screen corresponds to the environmental information acquisition module and is used for displaying the data information acquired by the environmental information acquisition module; the third display screen corresponds to the harmful gas information acquisition module and is used for displaying the data information acquired by the harmful gas information acquisition module.
The second control module can be a conventional control chip, such as a single chip microcomputer, and can also be a computer host.
The second communication module may be a wired communication module or a wireless communication module, and in this embodiment, the second communication module is a ZigBee communication module. Then, the first communication module and the second communication module are in communication connection through a ZigBee communication network.
Furthermore, the plant monitoring data analysis system further comprises a mobile terminal, and the mobile terminal is in communication connection with the second communication module. The mobile terminal can be held by other related workers, can receive monitoring data and realizes portable real-time monitoring. Of course, as another embodiment, the mobile terminal may not be provided.
The storage module is used for storing monitoring data, and later analysis is facilitated. In this embodiment, for effective storage, the storage module is a solid state disk.
The printing module is used for printing monitoring data, analyzing the data by a paper file, and can be a conventional printer. Of course, if the print data is not required, the print module may not be provided.
In addition, the background monitoring and analyzing subsystem and the distributed plant monitoring subsystem can be supplied with power by a specially-arranged energy storage system or can be directly supplied with power by 220V alternating current.
Video information in the factory building is gathered to image information collection module, temperature sensor detects the temperature in the factory building, air humidity in the factory building is detected to air humidity sensor, air speed in the factory building is detected to air speed sensor, atmospheric pressure in the atmospheric pressure sensor detects the factory building, smog concentration in the smog concentration sensor detects the factory building, air pH valve in the air pH valve sensor detects the factory building, carbon monoxide concentration sensor detects the carbon monoxide gas concentration in the factory building, carbon dioxide concentration sensor detects the carbon dioxide gas concentration in the factory building, ammonia concentration sensor detects the ammonia concentration in the factory building, hydrogen sulfide concentration sensor detects the hydrogen sulfide gas concentration in the factory building, methane concentration sensor detects the methane concentration in the factory building, formaldehyde concentration sensor detects the formaldehyde concentration in the factory building. The first control module receives the data information and transmits the data information to the background monitoring and analyzing subsystem through the first communication module. The first display screen in the background monitoring and analyzing subsystem displays video information, the second display screen displays temperature, air humidity, wind speed, atmospheric pressure, smoke concentration and air pH value, and the third display screen displays carbon monoxide gas concentration, carbon dioxide gas concentration, ammonia gas concentration, hydrogen sulfide gas concentration, methane concentration and formaldehyde concentration. Background staff can analyze according to the data information displayed on each display screen, and the method specifically comprises the following steps: and carrying out video analysis according to the video information on the first display screen, carrying out analysis on environmental parameters according to the environmental information on the second display screen, and carrying out harmful gas analysis according to the harmful gas information on the third display screen. The analysis result can be the variation trend of each data, or the analysis judges whether an abnormal condition occurs, such as: the temperature is too high, and the fire disaster is judged after the analysis; or the concentration of the harmful gas is too high, and gas leakage or fire disaster is judged after analysis.

Claims (6)

1. A plant monitoring data analysis system is characterized by comprising a background monitoring analysis subsystem and a distributed plant monitoring subsystem,
distributed factory building control subsystem includes at least one factory building monitoring device, factory building monitoring device includes:
the image information acquisition module comprises a visible light imaging unit and an infrared light imaging unit;
the environment information acquisition module comprises a temperature sensor, an air humidity sensor, a wind speed sensor, an atmospheric pressure sensor, a smoke concentration sensor and an air pH value sensor;
the harmful gas information acquisition module comprises a carbon monoxide concentration sensor, a carbon dioxide concentration sensor, an ammonia gas concentration sensor, a hydrogen sulfide concentration sensor, a methane concentration sensor and a formaldehyde concentration sensor;
a first control module; and
a first communication module;
the signal output ends of the image information acquisition module, the environment information acquisition module and the harmful gas information acquisition module are connected with the first control module, and the communication end of the first control module is connected with the first communication module;
the background monitoring and analyzing subsystem comprises:
the display screen module comprises a first display screen for displaying the data information acquired by the image information acquisition module, a second display screen for displaying the data information acquired by the environment information acquisition module and a third display screen for displaying the data information acquired by the harmful gas information acquisition module;
a second control module;
a second communication module; and
a storage module;
the signal output end of the second control module is connected with the display screen module and the storage module, and the communication end of the second control module is connected with the second communication module;
the first communication module is in communication connection with the second communication module.
2. The plant monitoring data analysis system of claim 1, further comprising a mobile terminal, wherein the mobile terminal is in communication connection with the second communication module.
3. The plant monitoring data analysis system of claim 1, wherein the storage module is a solid state drive.
4. The plant monitoring data analysis system of claim 1, wherein the first communication module and the second communication module are both ZigBee communication modules, and the first communication module and the second communication module are in communication connection through a ZigBee communication network.
5. The plant monitoring data analysis system of claim 1, wherein the plant monitoring device further comprises a lighting lamp, and the signal output end of the first control module is connected to the lighting lamp.
6. The plant monitoring data analysis system of claim 1, wherein the background monitoring analysis subsystem further comprises a printing module, and a signal output end of the second control module is connected to the printing module.
CN201921930824.3U 2019-11-08 2019-11-08 Factory building monitoring data analysis system Active CN211180640U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921930824.3U CN211180640U (en) 2019-11-08 2019-11-08 Factory building monitoring data analysis system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921930824.3U CN211180640U (en) 2019-11-08 2019-11-08 Factory building monitoring data analysis system

Publications (1)

Publication Number Publication Date
CN211180640U true CN211180640U (en) 2020-08-04

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ID=71826521

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921930824.3U Active CN211180640U (en) 2019-11-08 2019-11-08 Factory building monitoring data analysis system

Country Status (1)

Country Link
CN (1) CN211180640U (en)

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