CN110260916B - Clean room environment monitoring and management system - Google Patents

Clean room environment monitoring and management system Download PDF

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Publication number
CN110260916B
CN110260916B CN201910504947.9A CN201910504947A CN110260916B CN 110260916 B CN110260916 B CN 110260916B CN 201910504947 A CN201910504947 A CN 201910504947A CN 110260916 B CN110260916 B CN 110260916B
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monitoring
module
electrically connected
clean room
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CN110260916A (en
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李伟
麦尚华
潘日明
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Guanheng Construction Engineering Co ltd
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Guanheng Construction Engineering Co ltd
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    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
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Abstract

The invention discloses a clean room environment monitoring and management system, which relates to the technical field of clean room environment monitoring and management and comprises an environment monitoring and management platform, wherein the environment monitoring and management platform comprises a first-level area monitoring module, the output end of the first-level area monitoring module is electrically connected with a crosstalk analysis module, and the input end of the crosstalk analysis module is electrically connected with a second-level area monitoring module. The invention has the beneficial effects that: this clean room environmental monitoring management system, through with the dust particle proportion analysis unit between for the effect of series connection electric connection's component proportion contrast unit for it can carry out contrast operation to the independent data of both analysis of dust particle proportion analysis unit and planktonic bacteria proportion analysis unit, whether the staff of being convenient for knows the management area of this clean room has the media phenomenon of crosstalking, avoids destroying the equilibrium of clean room, influences the work efficiency of clean room.

Description

Clean room environment monitoring and management system
Technical Field
The invention relates to the technical field of clean room environment monitoring and management, in particular to a clean room environment monitoring and management system.
Background
The clean room environment monitoring and management system is a system for managing the internal environment of the clean room, and has a great effect, and the clean room is also called a dust-free workshop, a dust-free room or a clean room.
When the existing clean room environment monitoring and management system works, the existing clean room environment monitoring and management system does not have an analysis function of judging whether media mixed in air exist in different monitoring and management areas or not, so that the system is low in functionality.
Disclosure of Invention
The invention aims to provide a clean room environment monitoring and management system, which solves the problems in the prior art.
In order to achieve the purpose, the invention provides the following technical scheme: a clean room environment monitoring and management system comprises an environment monitoring and management platform, wherein the environment monitoring and management platform comprises a first-level area monitoring module, the output end of the first-level area monitoring module is electrically connected with a crosstalk analysis module, the input end of the crosstalk analysis module is electrically connected with a second-level area monitoring module, the output end of the crosstalk analysis module is electrically connected with an abnormality analysis module, the output end of the abnormality analysis module is electrically connected with a judgment module, the output end of the environment monitoring and management platform is electrically connected with a first storage module, the output end of the first storage module is electrically connected with an alarm module, the output end of the environment monitoring and management platform is electrically connected with a second storage module, the output end of the second storage module is electrically connected with a display module, and the crosstalk analysis module comprises a dust particle proportion analysis unit, and the output end of the dust particle specific gravity analysis unit is electrically connected with a component specific gravity comparison unit, the output end of the component specific gravity comparison unit is electrically connected with a transmission unit, and the input end of the component specific gravity comparison unit is electrically connected with a planktonic bacteria specific gravity analysis unit.
Optionally, the first-level region monitoring module comprises a dust particle monitoring unit, a planktonic bacteria monitoring unit, a wind speed monitoring unit, a pressure monitoring unit and a temperature and humidity monitoring unit.
Optionally, the dust particle monitoring unit and the planktonic bacteria monitoring unit are electrically connected in parallel.
Optionally, the anomaly analysis module includes a dust particle distribution condition unit, an output end of the dust particle distribution condition unit is electrically connected to an area distribution analysis unit, and an input end of the area distribution analysis unit is electrically connected to a planktonic bacteria distribution condition unit.
Optionally, the dust particle distribution condition unit and the regional distribution analysis unit are electrically connected in series, and the regional distribution analysis unit cooperates with the component proportion comparison unit to analyze the first-level regional monitoring module and the second-level regional monitoring module.
Optionally, the judging module comprises a calling monitoring unit, a clothing comparing unit and a liquid medicine volatilization judging unit, and the output end of the calling monitoring unit is electrically connected with the clothing comparing unit.
Optionally, the implementation form of the alarm module is any one of computer window shaking, light flashing and sound amplification.
Optionally, the component specific gravity comparison unit and the dust particle specific gravity analysis unit are electrically connected in series.
Optionally, the calling monitoring unit and the liquid medicine volatilization judging unit are electrically connected in parallel, and the response time of the calling monitoring unit is 0.2 ms.
The invention provides a clean room environment monitoring and management system, which has the following beneficial effects:
the clean room environment monitoring and management system can compare independent data analyzed by the dust particle specific gravity analysis unit and the planktonic bacteria specific gravity analysis unit through the function of the component specific gravity comparison unit electrically connected in series between the dust particle specific gravity analysis unit and the component specific gravity comparison unit, is convenient for workers to know whether the management area of the clean room has a media crosstalk phenomenon or not, avoids damaging the balance of the clean room and influencing the working efficiency of the clean room, is convenient for rapidly finishing the video response and display work of the monitoring area of the clean room under the function of the calling and monitoring unit with the response time length of 0.2ms, accelerates the workers to finish the clothing comparison work of medical workers through the clothing comparison unit, prevents different dust particles and planktonic bacteria carried on the clothing of the medical workers from moving from one monitoring area to another monitoring area, the component ratio in the clean room is unbalanced, the whole working performance of the clean room is affected, and when the abnormal phenomenon exists in the internal environment of the clean room, the alarm module in any one of the implementation forms of computer window shaking, light flashing and sound amplification is used for alarming.
Drawings
FIG. 1 is a schematic view of a clean room environment monitoring and management system according to the present invention;
FIG. 2 is a schematic view of a first-level area monitoring module flow structure of the clean room environment monitoring and management system according to the present invention;
FIG. 3 is a schematic view of a cross-talk analysis module of the clean room environmental monitoring and management system according to the present invention;
FIG. 4 is a schematic view of an anomaly analysis module flow structure of the clean room environment monitoring and management system according to the present invention;
FIG. 5 is a schematic view of a flow structure of a determination module of the clean room environment monitoring and management system according to the present invention.
In the figure: 1. an environment monitoring management platform; 2. a first level region monitoring module; 3. a second level region monitoring module; 4. a crosstalk analysis module; 5. an anomaly analysis module; 6. a judgment module; 7. a first storage module; 8. an alarm module; 9. a second storage module; 10. a display module; 11. a dust particle monitoring unit; 12. a planktonic bacteria monitoring unit; 13. a wind speed monitoring unit; 14. a pressure monitoring unit; 15. a temperature and humidity monitoring unit; 16. a dust particle specific gravity analysis unit; 17. a planktonic bacteria specific gravity analysis unit; 18. a component specific gravity comparison unit; 19. a transmission unit; 20. a dust particle distribution unit; 21. a region distribution analyzing unit; 22. a planktonic bacteria distribution condition unit; 23. calling a monitoring unit; 24. a clothing comparison unit; 25. and a liquid medicine volatilization judging unit.
Detailed Description
The technical solutions 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 a part of the embodiments of the present invention, and not all of the embodiments.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, should not be construed as limiting the invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Referring to fig. 1-5, the present invention provides a technical solution: a clean room environment monitoring and management system comprises an environment monitoring and management platform 1, a first-level region monitoring module 2, a second-level region monitoring module 3, a crosstalk analysis module 4, an abnormity analysis module 5, a judgment module 6, a first storage module 7, an alarm module 8, a second storage module 9, a display module 10, a dust particle monitoring unit 11, a planktonic bacteria monitoring unit 12, a wind speed monitoring unit 13, a pressure monitoring unit 14, a temperature and humidity monitoring unit 15, a dust particle proportion analysis unit 16, a planktonic bacteria proportion analysis unit 17, a component proportion comparison unit 18, a transmission unit 19, a dust particle distribution condition unit 20, a region distribution analysis unit 21, a planktonic bacteria distribution condition unit 22, a calling and monitoring unit 23, a clothing comparison unit 24 and a liquid medicine volatilization judgment unit 25, wherein the environment monitoring and management platform 1 comprises the first-level region monitoring module 2, the output end of the first-level area monitoring module 2 is electrically connected with a crosstalk analysis module 4, the input end of the crosstalk analysis module 4 is electrically connected with a second-level area monitoring module 3, the output end of the crosstalk analysis module 4 is electrically connected with an abnormity analysis module 5, the output end of the abnormity analysis module 5 is electrically connected with a judgment module 6, the output end of the environment monitoring management platform 1 is electrically connected with a first storage module 7, the output end of the first storage module 7 is electrically connected with an alarm module 8, the output end of the environment monitoring management platform 1 is electrically connected with a second storage module 9, the output end of the second storage module 9 is electrically connected with a display module 10, the crosstalk analysis module 4 comprises a dust particle specific gravity analysis unit 16, the output end of the dust particle specific gravity analysis unit 16 is electrically connected with a component specific gravity comparison unit 18, and the output end of the component specific gravity comparison unit 18 is electrically connected with a transmission unit 19, and the input end of the component proportion comparison unit 18 is electrically connected with the planktonic bacteria proportion analysis unit 17.
Further, the first-level region monitoring module 2 includes a dust particle monitoring unit 11, a planktonic bacteria monitoring unit 12, a wind speed monitoring unit 13, a pressure monitoring unit 14, and a temperature and humidity monitoring unit 15.
Furthermore, the dust particle monitoring unit 11 and the planktonic bacteria monitoring unit 12 are electrically connected in parallel, and the types of the corresponding terminal devices are as follows: under the effect of WD-CLJD's dust particle monitoring unit 11, can monitor the operation to the dust particle of the inside region of monitoring of clean room to with data transmission to cross talk analysis module 4 department, carry out further analysis work, promote the work optimization degree of this system.
Furthermore, the abnormality analysis module 5 includes a dust particle distribution unit 20, an output end of the dust particle distribution unit 20 is electrically connected to a region distribution analysis unit 21, and an input end of the region distribution analysis unit 21 is electrically connected to a floating bacteria distribution unit 22.
Furthermore, the dust particle distribution condition unit 20 and the regional distribution analysis unit 21 are electrically connected in series, the regional distribution analysis unit 21 cooperates with the component proportion comparison unit 18 to analyze the first-level regional monitoring module 2 and the second-level regional monitoring module 3, and the component proportion comparison unit 18 cooperates with the regional distribution analysis unit 21 to perform progressive all-around analysis and management work on the data content monitored by the first-level regional monitoring module 2 and the second-level regional monitoring module 3 respectively, so as to prevent abnormal phenomena in the clean room.
Further, the determining module 6 includes a calling monitoring unit 23, a clothing comparing unit 24 and a liquid medicine volatilization determining unit 25, and an output end of the calling monitoring unit 23 is electrically connected to the clothing comparing unit 24.
Further, the implementation form of the alarm module 8 is any one of computer window shaking, light flashing and sound amplification, and when the internal environment of the clean room has an abnormal phenomenon, the alarm module 8 in the implementation form of any one of computer window shaking, light flashing and sound amplification can be used for alarming.
Further, the component specific gravity comparison unit 18 and the dust particle specific gravity analysis unit 16 are electrically connected in series.
Further, transfer to monitor unit 23 and liquid medicine and volatilize and judge for parallelly connected electric connection between the unit 25, and transfer to monitor unit 23's response duration and be 0.2ms, be convenient for accomplish fast and respond, show work to the monitoring area's of toilet video for the staff passes through clothing contrast unit 24 and accomplishes the clothing contrast work to medical personnel.
Examples
The data content monitored by the first-level region monitoring module 2 and the second-level region monitoring module 3 is analyzed by the components in the crosstalk analysis module 4, the abnormal data obtained by analysis is transmitted to the abnormal analysis module 5 for further analysis operation, the normal data is stored in the second storage module 9, the display operation is completed under the action of the display module 10, the distribution condition of dust particles and the distribution condition of planktonic bacteria can be analyzed and processed under the action of the dust particle distribution condition unit 20 and the planktonic bacteria distribution condition unit 22 in the abnormal analysis module 5, and the data is transmitted to the first storage module 7 through the judgment module 6, so that the abnormal condition can be solved through comparison and pertinence when the abnormal phenomenon exists subsequently, and the alarm operation is completed under the action of the alarm module 8, and synchronously transmitting the abnormal data to the display module 10 for display.
In summary, when the clean room environment monitoring and management system is used, firstly, the environment monitoring and management platform 1 is started by the staff, so that the areas to be monitored are monitored by the first-level area monitoring module 2 and the second-level area monitoring module 3 on the inner sides of the environment monitoring and management platform, the areas to be monitored can be monitored by the dust particle monitoring unit 11, the planktonic bacteria monitoring unit 12, the wind speed monitoring unit 13, the pressure monitoring unit 14 and the temperature and humidity monitoring unit 15 through the respective actions, the areas to be monitored can be monitored by the dust particle monitoring unit 11, the planktonic bacteria, the wind speed, the pressure and the temperature and humidity, then, the data are transmitted to the crosstalk analysis module 4, so that the dust particle specific gravity analysis unit 16 and the planktonic bacteria specific gravity analysis unit 17 inside the environment monitoring and management platform respectively analyze the specific gravity of the dust particles and the specific gravity of the planktonic bacteria, and the component specific gravity comparison unit 18 is used, the contrast operation is completed, abnormal data exist, the abnormal data are transmitted to the judgment module 6 through the transmission unit 19, under the action of the calling monitoring unit 23 in the judgment module 6, the clothes contrast work of medical personnel is accelerated to be completed by the staff through the clothes contrast unit 24, the movement of different dust particles and planktonic bacteria carried on clothes of the medical personnel from one monitoring area to another monitoring area is prevented, the component proportion in the clean room is unbalanced, the whole working performance of the clean room is influenced, meanwhile, under the action of the liquid medicine volatilization judgment unit 25, whether unbalanced molecules in the clean room are caused by liquid medicine volatilization or not can be judged, and finally, the judged data are transmitted to the first storage module 7, so that when the subsequent abnormal phenomena exist, the abnormal conditions can be solved through contrast and with pertinence, and under the action of the alarm module 8, and finishing alarm work, synchronously transmitting the abnormal data to the display module 10 for display work, and transmitting the normal data to the second storage module 9 for storage when the abnormal data does not exist, and finishing display work under the action of the display module 10.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.

Claims (9)

1. Clean room environmental monitoring management system, including environmental monitoring management platform (1), its characterized in that: the environment monitoring management platform (1) comprises a first-level regional monitoring module (2), the output end of the first-level regional monitoring module (2) is electrically connected with a crosstalk analysis module (4), the input end of the crosstalk analysis module (4) is electrically connected with a second-level regional monitoring module (3), the output end of the crosstalk analysis module (4) is electrically connected with an abnormal analysis module (5), the output end of the abnormal analysis module (5) is electrically connected with a judgment module (6), the output end of the environment monitoring management platform (1) is electrically connected with a first storage module (7), the output end of the first storage module (7) is electrically connected with an alarm module (8), the output end of the environment monitoring management platform (1) is electrically connected with a second storage module (9), and the output end of the second storage module (9) is electrically connected with a display module (10), the crosstalk analysis module (4) comprises a dust particle specific gravity analysis unit (16), the output end of the dust particle specific gravity analysis unit (16) is electrically connected with a component specific gravity comparison unit (18), the output end of the component specific gravity comparison unit (18) is electrically connected with a transmission unit (19), and the input end of the component specific gravity comparison unit (18) is electrically connected with a planktonic bacteria specific gravity analysis unit (17).
2. The clean room environment monitoring and management system of claim 1, characterized in that: the first-level region monitoring module (2) comprises a dust particle monitoring unit (11), a planktonic bacteria monitoring unit (12), a wind speed monitoring unit (13), a pressure monitoring unit (14) and a temperature and humidity monitoring unit (15).
3. The clean room environment monitoring and management system of claim 2, characterized in that: the dust particle monitoring unit (11) and the planktonic bacteria monitoring unit (12) are electrically connected in parallel.
4. The clean room environment monitoring and management system of claim 1, characterized in that: the abnormity analysis module (5) comprises a dust particle distribution condition unit (20), the output end of the dust particle distribution condition unit (20) is electrically connected with an area distribution analysis unit (21), and the input end of the area distribution analysis unit (21) is electrically connected with a planktonic bacteria distribution condition unit (22).
5. The clean room environment monitoring and management system of claim 4, characterized in that: the dust particle distribution condition unit (20) and the area distribution analysis unit (21) are electrically connected in series, and the area distribution analysis unit (21) is cooperated with the component proportion comparison unit (18) to analyze the first-level area monitoring module (2) and the second-level area monitoring module (3).
6. The clean room environment monitoring and management system of claim 1, characterized in that: the judgment module (6) comprises a calling monitoring unit (23), a clothing comparison unit (24) and a liquid medicine volatilization judgment unit (25), and the output end of the calling monitoring unit (23) is electrically connected with the clothing comparison unit (24).
7. The clean room environment monitoring and management system of claim 1, characterized in that: the implementation form of the alarm module (8) is any one of computer window shaking, light flashing and sound amplification.
8. The clean room environment monitoring and management system of claim 1, characterized in that: the component specific gravity comparison unit (18) and the dust particle specific gravity analysis unit (16) are electrically connected in series.
9. The clean room environment monitoring and management system of claim 6, characterized in that: the calling monitoring unit (23) is electrically connected with the liquid medicine volatilization judging unit (25) in parallel, and the response time of the calling monitoring unit (23) is 0.2 ms.
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CN111637920B (en) * 2020-05-13 2022-06-24 山西省交通规划勘察设计院有限公司 Bridge detection information management system based on BIM

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