CN212229474U - Remote area drinking water monitoring system - Google Patents

Remote area drinking water monitoring system Download PDF

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Publication number
CN212229474U
CN212229474U CN202021404508.5U CN202021404508U CN212229474U CN 212229474 U CN212229474 U CN 212229474U CN 202021404508 U CN202021404508 U CN 202021404508U CN 212229474 U CN212229474 U CN 212229474U
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China
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water
data transmission
monitoring point
pressure transmitter
pipe network
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CN202021404508.5U
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Chinese (zh)
Inventor
孙真
杨崇鼎
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Tianjin Daorou Technology Co ltd
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Tianjin Daorou Technology Co ltd
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Abstract

The utility model discloses a drinking water monitoring system in remote area, include: the system comprises a water taking pump station monitoring point, more than one wired data transmission pipe network end monitoring point, more than one wireless data transmission pipe network end monitoring point, the Internet and a central control room; the monitoring point of the water taking pump station comprises a first optical switching module, a first Ethernet switch, a hard disk video recorder, an access controller, a master control PLC, more than one camera, a card reader, a water pump starting cabinet, a water quality instrument, a first pressure transmitter, a first water level meter and a first flowmeter; the wireless data transmission pipe network tip monitoring point comprises a 2G/3G/4G data transmission module, a remote data transmission device, a third pressure transmitter, a third water level meter and a third flow meter. The utility model discloses supply water to the remote area and carry out informationization construction, realize concentrating the supervision, guarantee water supply safety and quality of water are up to standard, for realizing regional overall planning, improve the water supply decision-making level and create the condition.

Description

Remote area drinking water monitoring system
Technical Field
The utility model relates to the field of information technology, in particular to drinking water monitored control system.
Background
In remote areas, due to the fact that the remote areas are located far away, traffic accessibility is poor, once water quality conditions or equipment operation conditions occur, the water quality conditions or the equipment operation conditions are difficult to find in time, supervision is difficult, information base construction is delayed, and water quality is difficult to guarantee.
SUMMERY OF THE UTILITY MODEL
The purpose of the present invention is to solve at least one of the technical drawbacks.
Therefore, the utility model discloses an aim at provides a drinking water monitored control system in remote area, its characterized in that includes: the system comprises a water taking pump station monitoring point, more than one wired data transmission pipe network end monitoring point, more than one wireless data transmission pipe network end monitoring point, the Internet and a central control room;
the monitoring point of the water taking pump station comprises a first optical switching module, a first Ethernet switch, a hard disk video recorder, an access controller, a master control PLC, more than one camera, a card reader, a water pump starting cabinet, a water quality instrument, a first pressure transmitter, a first water level meter and a first flowmeter;
the first optical switching module is connected with the first Ethernet switch, the first Ethernet switch is respectively connected with the digital video recorder, the access controller and the master control PLC, the digital video recorder is connected with the camera, the access controller is connected with the card reader, and the master control PLC is respectively connected with the water pump starting cabinet, the water quality instrument, the first pressure transmitter, the first water level meter and the first flowmeter and is used for monitoring the operation condition of a monitoring point of the water intake pump station;
the wired data transmission pipe network tip monitoring point comprises a second optical switching module, a second Ethernet switch, a PLC control cabinet, a second pressure transmitter, a second water level meter and a second flowmeter;
the second optical switching module, the second Ethernet switch and the PLC control cabinet are sequentially connected, and the PLC control cabinet is respectively connected with the second pressure transmitter, the second water level gauge and the second flowmeter and is used for monitoring the running condition of a pipe network terminal monitoring point with a wired data transmission condition;
the wireless data transmission pipe network tip monitoring point comprises a 2G/3G/4G data transmission module, a remote data transmission device, a third pressure transmitter, a third water level meter and a third flow meter;
the 2G/3G/4G data transmission module is connected with the remote transmission data transmission device, and the remote transmission data transmission device is respectively connected with the third pressure transmitter, the third water level gauge and the third flow meter and is used for monitoring the running condition of a pipe network tip monitoring point without online data transmission conditions;
the central control room comprises a database server, an application server, more than one monitor, a video switcher, a large wall screen, a firewall and a third optical switching module;
the Internet is connected with the third optical switching module, the third optical switching module is connected with the firewall, the firewall is connected with the database server, the application server, more than one monitoring machine and the video switcher, the video switcher is connected with the large-scale screen of the wall surface, and the central control room is used for carrying out remote monitoring on each monitoring point.
Preferably, the internet is a virtual private network.
The utility model has the advantages and positive effects that: the water supply of remote areas is subjected to informatization construction, centralized supervision is realized, the water supply safety and the water quality are guaranteed to reach the standard, and conditions are created for realizing regional overall planning and improving the water supply decision level.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic diagram of the drinking water monitoring system in remote areas of the present invention.
Detailed Description
The present invention will now be described in more detail with reference to the accompanying drawings, in which preferred embodiments of the invention are shown, it being understood that those skilled in the art may modify the invention herein described while still achieving the beneficial results of the invention. Accordingly, the following description should be construed as broadly as possible to those skilled in the art and not as limiting the invention.
Example 1:
as shown in fig. 1, a drinking water monitoring system for remote areas comprises a water intake pump station monitoring point 1, more than one wired data transmission pipe network end monitoring point 2, more than one wireless data transmission pipe network end monitoring point 3, the internet 4 and a central control room 5;
the water intake pumping station monitoring point 1 comprises a first optical switching module 101, a first Ethernet switch 102, a hard disk video recorder 103, an access controller 104, a master control PLC105, more than one camera 106, a card reader 107, a water pump starting cabinet 108, a water quality meter 109, a first pressure transmitter 110, a first water level meter 111 and a first flowmeter 112;
the first optical switching module 101 is connected with a first Ethernet switch 102, the first Ethernet switch 102 is respectively connected with a hard disk video recorder 103, an access controller 104 and a master control PLC105, the hard disk video recorder 103 is connected with a camera 106, the access controller 104 is connected with a card reader 107, the master control PLC105 is respectively connected with a water pump starting cabinet 108, a water quality meter 109, a first pressure transmitter 110, a first water level meter 111 and a first flowmeter 112, and is used for monitoring the operation condition of a monitoring point 1 of a water taking pump station;
the wired data transmission pipe network end monitoring point 2 comprises a second optical switching module 201, a second Ethernet switch 202, a PLC control cabinet 203, a second pressure transmitter 204, a second water level meter 205 and a second flow meter 206;
the second optical switching module 201, the second ethernet switch 202 and the PLC control cabinet 203 are sequentially connected, and the PLC control cabinet 203 is respectively connected with the second pressure transmitter 204, the second water level gauge 205 and the second flow meter 206, and is used for monitoring the operation condition of a pipe network tip monitoring point with a wired data transmission condition;
the wireless data transmission pipe network tip monitoring point 3 comprises a 2G/3G/4G data transmission module 301, a remote data transmission device 302, a third pressure transmitter 303, a third water level meter 304 and a third flow meter 305;
the 2G/3G/4G data transmission module 301 is connected with a remote data transmission device 302, and the remote data transmission device 302 is respectively connected with a third pressure transmitter 303, a third water level meter 304 and a third flow meter 305 and is used for monitoring the operation condition of a pipe network tip monitoring point without online data transmission conditions;
a central control room 5, which includes a database server 501, an application server 502, one or more monitors 503, a video switcher 504, a large wall screen 505, a firewall 506, and a third optical switch module 507;
the internet 4 is connected to the third optical switch module 507, the third optical switch module 507 is connected to the firewall 506, the firewall 506 is connected to the database server 501, the application server 502, the one or more monitoring machines 503 and the video switcher 504 through a bus, and the video switcher 504 is connected to the large wall screen 505 and is used for the central control room 5 to remotely monitor each monitoring point.
Example 2:
in this embodiment, as compared with embodiment 1, as shown in fig. 1, the internet 4 is a virtual private network 4 a.
The present invention has been described in detail with reference to the embodiments, but the present invention is only a preferred embodiment, and should not be construed as limiting the scope of the present invention. All the equivalent changes and improvements made according to the application scope of the present invention should still fall within the patent coverage of the present invention.

Claims (2)

1. A remote drinking water monitoring system, comprising: the system comprises a water taking pump station monitoring point (1), more than one wired data transmission pipe network end monitoring point (2), more than one wireless data transmission pipe network end monitoring point (3), the Internet (4) and a central control room (5);
the water intake pump station monitoring point (1) comprises a first optical switching module (101), a first Ethernet switch (102), a hard disk video recorder (103), an access controller (104), a master control PLC (105), more than one camera (106), a card reader (107), a water pump starting cabinet (108), a water quality meter (109), a first pressure transmitter (110), a first water level meter (111) and a first flow meter (112);
the first optical switching module (101) is connected with the first Ethernet switch (102), the first Ethernet switch (102) is respectively connected with the hard disk video recorder (103), the access controller (104) and the master control PLC (105), the hard disk video recorder (103) is connected with the camera (106), the access controller (104) is connected with the card reader (107), and the master control PLC (105) is respectively connected with the water pump starting cabinet (108), the water quality meter (109), the first pressure transmitter (110), the first water level meter (111) and the first flow meter (112);
the monitoring point (2) at the end of the wired data transmission pipe network comprises a second optical switching module (201), a second Ethernet switch (202), a PLC control cabinet (203), a second pressure transmitter (204), a second water level meter (205) and a second flow meter (206);
the second optical switching module (201), the second Ethernet switch (202) and the PLC control cabinet (203) are sequentially connected, and the PLC control cabinet (203) is respectively connected with the second pressure transmitter (204), the second water level meter (205) and the second flowmeter (206);
the wireless data transmission pipe network tip monitoring point (3) comprises a 2G/3G/4G data transmission module (301), a remote data transmission device (302), a third pressure transmitter (303), a third water level meter (304) and a third flow meter (305);
the 2G/3G/4G data transmission module (301) is connected with the remote data transmission device (302), and the remote data transmission device (302) is respectively connected with the third pressure transmitter (303), the third water level meter (304) and the third flow meter (305);
the central control room (5) comprises a database server (501), an application server (502), more than one monitoring machine (503), a video switcher (504), a large wall screen (505), a firewall (506) and a third optical switching module (507);
the internet (4) is connected with the third optical switch module (507), the third optical switch module (507) is connected with the firewall (506), the firewall (506) is connected with the database server (501) through a bus, the application server (502) is connected with the monitor (503), the video switcher (504) is connected with the large-scale screen (505) on the wall surface through the video switcher (504).
2. A remote drinking water monitoring system according to claim 1, wherein the internet (4) is a virtual private network (4 a).
CN202021404508.5U 2020-07-16 2020-07-16 Remote area drinking water monitoring system Active CN212229474U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021404508.5U CN212229474U (en) 2020-07-16 2020-07-16 Remote area drinking water monitoring system

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Application Number Priority Date Filing Date Title
CN202021404508.5U CN212229474U (en) 2020-07-16 2020-07-16 Remote area drinking water monitoring system

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CN212229474U true CN212229474U (en) 2020-12-25

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112982570A (en) * 2021-02-05 2021-06-18 北京新水京威水务工程有限公司 Automatic drinking water state monitoring device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112982570A (en) * 2021-02-05 2021-06-18 北京新水京威水务工程有限公司 Automatic drinking water state monitoring device

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