CN212903432U - Waterlogging water spot water level monitoring system - Google Patents

Waterlogging water spot water level monitoring system Download PDF

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Publication number
CN212903432U
CN212903432U CN202021985967.7U CN202021985967U CN212903432U CN 212903432 U CN212903432 U CN 212903432U CN 202021985967 U CN202021985967 U CN 202021985967U CN 212903432 U CN212903432 U CN 212903432U
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water level
level monitoring
waterlogging
monitoring system
communication module
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CN202021985967.7U
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翟夏杰
彭定坤
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Global Resource Photoelectric Technology Co ltd
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Global Resource Photoelectric Technology Co ltd
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Abstract

The utility model provides an inland inundation water spot water level monitoring system, which comprises a water level monitoring device, a second wireless communication module, a main control module, a camera device and a solar power module; the water level monitoring device is a buried water level monitoring device, a first wireless communication module is arranged in the buried water level monitoring device, the solar power supply module supplies power to the main control module and the camera device, and the camera device and the second wireless communication module are electrically connected with the main control module; the buried water level monitoring device is positioned in the camera shooting range of the camera shooting device. The buried water level monitoring device is small, exquisite, wireless and easy to construct, and is beneficial to the construction of a management and control network for urban waterlogging water spots; the staff can carry out the secondary according to the data current water level condition of making a video recording waterlogging ponding point and confirm, avoids burying formula water level monitoring devices erroneous judgement and leads to extravagant manpower resources, improves monitoring effect and the management effect to city waterlogging ponding point network.

Description

Waterlogging water spot water level monitoring system
Technical Field
The utility model relates to a water level monitoring technology field, concretely relates to waterlogging ponding point water level monitoring system.
Background
When urban waterlogging accumulated water point monitoring work is carried out, the general waterlogging accumulated water point is provided with the exposed water level monitoring device in wired connection, such as a floating ball type water level monitoring device and an electrode type water level monitoring device, once the accumulated water point reaches the position of the water level monitoring device, a signal sent by the water level monitoring device is sent to a remote monitoring end through a server. The discharge staff then goes to the site for confirmation and processing.
The existing waterlogging water point water level monitoring mode has the problems that the connection and the setting difficulty of the exposed water level monitoring device in wired connection are large, and the construction of a management and control network of urban waterlogging water points is not facilitated; in addition, whether the water level monitoring device is judged by mistake or not cannot be judged, and if the water level monitoring device is judged by mistake, precious time of the discharging personnel and human resources are wasted.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a waterlogging ponding point water level monitoring system who carries out effective monitoring and management to city waterlogging ponding point.
The utility model provides an waterlogging water spot water level monitoring system, which comprises a water level monitoring device; the water level monitoring device is a buried water level monitoring device, a first wireless communication module is arranged in the buried water level monitoring device, and the buried water level monitoring device is arranged at a first horizontal position; the waterlogging water spot water level monitoring system also comprises a second wireless communication module, a main control module, a camera device and a solar power module, wherein the solar power module supplies power to the main control module and the camera device, and the camera device and the second wireless communication module are electrically connected with the main control module; the camera device is arranged at a second horizontal position, the second horizontal position is higher than the first horizontal position, and the buried water level monitoring device is located in the camera shooting range of the camera device.
By above-mentioned scheme, at first, bury formula water level monitoring device and have small in size, bury the road surface and can realize ponding monitoring, have that the construction scale is little, the city view influences characteristics such as little, measurement accuracy height, and it realizes wireless communication through first wireless communication module, need not to consider wiring connection, does benefit to the structure to urban waterlogging ponding point management and control network. In addition, the buried water level monitoring device completes the monitoring of the water level and transmits water level data to the remote monitoring end in real time; the camera device adopts an intermittent working mode, only the camera device is started and carries out camera shooting and remote transmission when receiving a control signal, and the control signal can be sent out autonomously by a worker from a remote monitoring terminal and also can be sent out according to the detection of the underground water level monitoring device. So, the staff can carry out the secondary and confirm to the current water level condition of waterlogging ponding point, avoids burying formula water level monitoring devices erroneous judgement and leads to extravagant manpower resources, improves the monitoring effect and the management effect to urban waterlogging ponding point network simultaneously.
In a further aspect, the first wireless communication module is an NB-IoT communication module, and/or the second wireless communication module is a 4G communication module.
As seen from the above, the NB-IoT communication module enables the buried water level monitoring device to operate with low energy consumption, thereby effectively prolonging the standby time of the buried water level monitoring device; the 4G communication module improves the data transmission efficiency of the camera device so as to ensure the timeliness of data.
According to a further scheme, the waterlogging water spot water level monitoring system further comprises a first battery, the first battery supplies power to the buried water level monitoring device, and/or the waterlogging water spot water level monitoring system further comprises a second battery, and the second battery supplies power to the camera device.
It is from top to bottom visible, first battery is the large capacity lithium cell, and it is long when effectively making good use of the standby of formula water level monitoring device to bury, and camera device's reserve battery is then regarded as to the second battery, guarantees that camera device can keep normal work.
The water level monitoring system for the waterlogging water spot further comprises an electronic display; the electronic display is electrically connected with the main control module, and the solar power supply module supplies power to the electronic display.
The waterlogging water spot water level monitoring system further comprises a warning lamp; the warning lamp is electrically connected with the main control module, and the solar power module supplies power to the warning lamp.
Therefore, pedestrians or drivers can obtain the real-time water level of the waterlogging and water accumulation point through character reminding of the electronic display and light reminding of the warning lamp, and then make decisions on walking or driving schemes in advance.
The system for monitoring the water level of the waterlogging water spot further comprises a server; the first wireless communication module is used for sending a water level signal to the server; the second wireless communication module is used for receiving the control signal from the server.
The system further comprises a monitoring terminal, wherein the monitoring terminal is used for receiving monitoring data from the server; the monitoring terminal is a PC terminal or a mobile terminal.
Therefore, except that the staff at the remote control end can acquire the real-time water level data of the real-time waterlogging and ponding point, people can also master the real-time water level condition of the urban waterlogging and ponding point network through the mobile phone APP.
Drawings
Fig. 1 is the utility model discloses the schematic diagram of waterlogging ponding point water level monitoring system embodiment.
Fig. 2 is the utility model discloses the connection block diagram of waterlogging ponding point water level monitoring system embodiment.
Detailed Description
Referring to fig. 1 and 2, fig. 1 is the utility model discloses the schematic diagram of waterlogging ponding point water level monitoring system embodiment, fig. 2 is the utility model discloses connection block diagram of waterlogging ponding point water level monitoring system embodiment. The utility model provides an inlaying waterlogging ponding point water level monitoring system who carries out effective monitoring and management to city inlaying waterlogging ponding point, inlaying waterlogging ponding point water level monitoring system is including burying formula water level monitoring device 2 and fixing second wireless communication module 4, main control module 1, camera device 31, electronic display 32, warning light 33 and solar energy power module 34 on stand 9 burying on ground.
The buried water level monitoring device 2 is buried on the ground of the first horizontal position 81, a first wireless communication module 21 and a first battery 22 are disposed in the buried water level monitoring device 2, the first wireless communication module 21 is an NB-IoT communication module, and in other embodiments, the first wireless communication module 21 may be a 4G communication module or a LoRa communication module. The first battery 22 is a large capacity lithium battery.
The upright column 9 is fixed and erected on the ground, and a preset distance D is reserved between the upright column and the buried water level monitoring device 2. Camera device 31, electronic display 32, warning light 33 and solar energy power module 34 all install on stand 9, and camera device 31 and solar energy power module 34 all can change pendulum, and warning light 33 is located the top of stand 9. The main control module 1 and the second wireless communication module 4 are fixedly arranged in an electrical box 10 on the upright post 9. The camera device 31 is arranged at a second horizontal position 82 higher than the first horizontal position 81, the second horizontal position 82 and the first horizontal position 81 have a preset height difference L, and the buried water level monitoring device 2 is located in the camera shooting range of the camera device 31.
Solar power module 34 supplies power to main control module 1, camera device 31, electronic display 32 and warning light 33, and waterlogging ponding point water level monitoring system still is equipped with second battery 35, and second battery 35 is the large capacity lithium cell, and second battery 35 carries out the reserve power supply to camera device 31. The camera device 31, the electronic display 32, the warning light 33 and the second wireless communication module 4 are all electrically connected with the main control module 1.
The waterlogging water spot water level monitoring system further comprises a server 5 and a monitoring terminal, wherein the monitoring terminal comprises a PC terminal 61 and a mobile terminal 62. The first wireless communication module 21 is used for sending a water level signal to the server 5, the second wireless communication module 4 is used for receiving a control signal from the server 5, and the PC terminal 61 and the mobile terminal 62 are used for receiving monitoring data from the server 5.
Firstly, bury formula water level monitoring device 2 and have small in size, bury the road surface and can realize ponding monitoring, have that the construction scale is little, the urban landscape influences characteristics such as little, measurement accuracy height, and it realizes wireless communication through first wireless communication module 21, need not to consider wiring connection, does benefit to the structure to urban waterlogging ponding point management and control network.
In addition, the buried water level monitoring device 2 completes the monitoring of the water level and transmits the water level data to the remote monitoring end in real time. The camera device 31 adopts an intermittent working mode, is started only when receiving a control signal, carries out camera shooting and remote transmission, and the control signal can be sent out autonomously by a worker from a remote monitoring terminal or sent out according to the detection of the underground water level monitoring device 2. So, the staff can carry out the secondary and confirm to the current water level condition of waterlogging ponding point, avoids burying formula water level monitoring devices erroneous judgement and leads to extravagant manpower resources, improves the monitoring effect and the management effect to urban waterlogging ponding point network simultaneously.
Moreover, except that the staff of remote control end can acquire the real-time water level data of real-time waterlogging ponding point, people also can master the real-time water level condition of urban waterlogging ponding point network through cell-phone APP.
Finally, it should be emphasized that the above-described embodiments are merely preferred examples of the present invention, and are not intended to limit the invention, as those skilled in the art will appreciate that various changes and modifications may be made, and any and all modifications, equivalents, and improvements made, while remaining within the spirit and principles of the present invention, are intended to be included within the scope of the present invention.

Claims (7)

1. The waterlogging water spot water level monitoring system comprises a water level monitoring device;
the method is characterized in that:
the water level monitoring device is a buried water level monitoring device, a first wireless communication module is arranged in the buried water level monitoring device, and the buried water level monitoring device is arranged at a first horizontal position;
the waterlogging water spot water level monitoring system further comprises a second wireless communication module, a main control module, a camera device and a solar power module, wherein the solar power module supplies power to the main control module and the camera device, and the camera device and the second wireless communication module are electrically connected with the main control module;
the camera device is arranged at a second horizontal position, the second horizontal position is higher than the first horizontal position, and the buried water level monitoring device is located in a camera shooting range of the camera device.
2. The waterlogging spot water level monitoring system of claim 1, wherein:
the first wireless communication module is an NB-IoT communication module,
and/or the presence of a gas in the gas,
the second wireless communication module is a 4G communication module.
3. The waterlogging spot water level monitoring system of claim 2, wherein:
the waterlogging water spot water level monitoring system also comprises a first battery which supplies power to the buried water level monitoring device,
and/or the presence of a gas in the gas,
the waterlogging water spot water level monitoring system further comprises a second battery, and the second battery supplies power to the camera device.
4. The waterlogging spot water level monitoring system of claim 3, wherein:
the waterlogging water spot water level monitoring system further comprises an electronic display;
the electronic display is electrically connected with the main control module, and the solar power supply module supplies power to the electronic display.
5. The waterlogging spot water level monitoring system of claim 3, wherein:
the waterlogging water spot water level monitoring system also comprises a warning lamp;
the warning lamp is electrically connected with the main control module, and the solar power supply module supplies power to the warning lamp.
6. The waterlogging spot water level monitoring system of any one of claims 1-5, wherein:
the waterlogging water spot water level monitoring system further comprises a server;
the first wireless communication module is used for sending a water level signal to the server;
the second wireless communication module is used for receiving a control signal from the server.
7. The waterlogging spot water level monitoring system of claim 6, wherein:
the waterlogging water spot water level monitoring system further comprises a monitoring terminal, and the monitoring terminal is used for receiving monitoring data from the server;
the monitoring terminal is a PC terminal, or the monitoring terminal is a mobile terminal.
CN202021985967.7U 2020-09-11 2020-09-11 Waterlogging water spot water level monitoring system Active CN212903432U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021985967.7U CN212903432U (en) 2020-09-11 2020-09-11 Waterlogging water spot water level monitoring system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021985967.7U CN212903432U (en) 2020-09-11 2020-09-11 Waterlogging water spot water level monitoring system

Publications (1)

Publication Number Publication Date
CN212903432U true CN212903432U (en) 2021-04-06

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CN202021985967.7U Active CN212903432U (en) 2020-09-11 2020-09-11 Waterlogging water spot water level monitoring system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116448206A (en) * 2023-06-14 2023-07-18 广东广宇科技发展有限公司 Underground garage waterlogging early warning and monitoring system and method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116448206A (en) * 2023-06-14 2023-07-18 广东广宇科技发展有限公司 Underground garage waterlogging early warning and monitoring system and method
CN116448206B (en) * 2023-06-14 2023-10-31 广东广宇科技发展有限公司 Underground garage waterlogging early warning and monitoring system and method

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GR01 Patent grant
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Effective date of registration: 20220406

Address after: 519000 floor 7, Dongfa building, building 1, No. 2, Cuizhu 1st Street, Zhuhai, Guangdong

Patentee after: Guangdong Jicheng Intelligent Technology Co.,Ltd.

Address before: 519000 B, 7 building, 1 Tung Fa Building, 2 Cui Zhu street, Zhuhai, Guangdong.

Patentee before: GLOBAL RESOURCE PHOTOELECTRIC TECHNOLOGY CO.,LTD.

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TR01 Transfer of patent right

Effective date of registration: 20240607

Address after: 519000 No. 204, Floor 2, Building 2, No. 388, Yongnan Road, Xiangzhou District, Zhuhai City, Guangdong Province

Patentee after: GLOBAL RESOURCE PHOTOELECTRIC TECHNOLOGY CO.,LTD.

Country or region after: China

Address before: 519000 floor 7, Dongfa building, building 1, No. 2, Cuizhu 1st Street, Zhuhai, Guangdong

Patentee before: Guangdong Jicheng Intelligent Technology Co.,Ltd.

Country or region before: China