CN210955446U - Integrated device for monitoring, early warning and indicating of surface water accumulation - Google Patents

Integrated device for monitoring, early warning and indicating of surface water accumulation Download PDF

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Publication number
CN210955446U
CN210955446U CN201922276894.8U CN201922276894U CN210955446U CN 210955446 U CN210955446 U CN 210955446U CN 201922276894 U CN201922276894 U CN 201922276894U CN 210955446 U CN210955446 U CN 210955446U
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shell
early warning
monitoring
sensor
circuit
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CN201922276894.8U
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Chinese (zh)
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林铸
张凌
曾伟
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Beijing Boya Tian'an Information Technology Co ltd
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Beijing Boya Tian'an Information Technology Co ltd
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Abstract

The utility model relates to a surface water monitoring and early warning instruction integrated device. The method comprises the following steps: the device comprises a shell, a control processing circuit arranged in the shell, a data transceiving circuit arranged in the shell, an antenna arranged in a groove at the top in the shell and connected with the data transceiving circuit, a battery jar arranged in the shell, a solar panel arranged at the top of the shell, a multi-color early warning indicator lamp strip arranged in the groove at the top of the shell, a water accumulation sensor arranged in the shell, a leakage sensor arranged in the shell, an anti-disassembly sensor arranged at the edge of a top cover of the shell, a GPS (global positioning system) locator arranged in the shell and a GPS antenna arranged in the shell, wherein the shell and the battery jar are spirally sealed and pressed tightly in a spiral mode; the data transceiver circuit, the accumulated water sensor, the electric leakage sensor, the anti-disassembly sensor and the GPS locator are respectively connected with the control processing circuit; the multicolor early warning indicating lamp belt is connected with the control processing circuit through the early warning indicating circuit.

Description

Integrated device for monitoring, early warning and indicating of surface water accumulation
Technical Field
The utility model relates to a flood prevention early warning field, especially a surface gathered water monitoring and early warning instruction integrated device.
Background
In the existing waterlogging monitoring technology, monitoring and early warning equipment is partially built in provincial, municipal and county-level municipal departments, but when heavy rain and other disastrous weather occurs, the waterlogging monitoring equipment can only monitor the depth of the waterlogging and collect remote data, field early warning indication cannot be carried out, and public trip risks and property loss are reduced to the maximum extent. This makes the appeal to the audience not very high, needs to solve on-the-spot early warning instruction, improves user experience to show the problem that promotes the appeal to the user.
Disclosure of Invention
The utility model aims at providing a surface water monitoring and early warning indication integrated device, which combines the early warning indication technology with waterlogging water monitoring equipment, is beneficial to solving the problem that when the heavy weather such as rainstorm occurs, related departments can remotely monitor the danger level of the waterlogging points, and dredge and risk in time; the public can judge the current ponding degree of depth and the danger coefficient of the easy waterlogging point through the colour of observing early warning pilot lamp on the road surface, guarantee people's trip safety.
In order to achieve the above purpose, the technical scheme of the utility model is that: the utility model provides a surface water monitoring and early warning instruction integrated device, includes: the device comprises a shell arranged on a water accumulation monitoring and early warning indication site, a control processing circuit arranged in the shell, a data transceiving circuit arranged in the shell and matched with a remote early warning information centralized controller, an antenna arranged in a groove at the top in the shell and connected with the data transceiving circuit, a battery jar arranged in the shell, a solar panel arranged at the top of the shell, a multicolor early warning indication lamp belt arranged in the groove at the top of the shell, a water accumulation sensor arranged in the shell, a leakage sensor arranged in the shell, an anti-disassembly sensor arranged at the edge of a top cover of the shell, a GPS (global positioning system) positioner arranged in the shell and a GPS antenna arranged in the shell and connected with the GPS positioner, wherein the shell and the battery jar are spirally sealed and compressed in; the data transceiver circuit, the accumulated water sensor, the electric leakage sensor, the anti-disassembly sensor and the GPS locator are respectively connected with the control processing circuit; the multicolor early warning indicating lamp belt is connected with the control processing circuit through the early warning indicating circuit.
In an embodiment of the present invention, the device further includes a data storage module disposed in the housing and connected to the control processing circuit.
In an embodiment of the present invention, the battery further includes a power control module disposed in the housing and used for charging the battery.
In an embodiment of the present invention, the control processing circuit employs an ARM processor, specifically a quad-core ARM processor a3 processor.
In an embodiment of the present invention, the power module supports commercial power and solar power.
In an embodiment of the present invention, the data transceiver circuit and the GPS locator are connected to the antenna and the GPS antenna through the shielding wire, respectively.
In an embodiment of the present invention, the power control module is connected to the battery through a shielding wire.
In an embodiment of the present invention, each module/circuit is designed integrally.
Compared with the prior art, the utility model discloses following beneficial effect has: the utility model combines the early warning indication technology with waterlogging monitoring equipment, which is favorable for solving the problem of heavy weather such as rainstorm, and related departments can remotely monitor the danger level of the waterlogging points and dredge and risk in time; the public can judge the current ponding degree of depth and the danger coefficient of the easy waterlogging point through the colour of observing early warning pilot lamp on the road surface, guarantee people's trip safety.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention.
Fig. 2 is a schematic side view of the structure of the embodiment of the present invention.
Fig. 3 is a schematic diagram of the network data transmission circuit of the present invention.
Fig. 4 is a schematic diagram of a processor circuit according to the present invention.
Fig. 5 is a schematic diagram of the water level monitoring circuit of the present invention.
Fig. 6 is a schematic diagram of a data storage circuit according to the present invention.
Fig. 7 is a schematic diagram of data transmission and reception according to the present invention.
Fig. 8 is a schematic diagram of the early warning indication circuit of the present invention.
Detailed Description
The technical solution of the present invention will be specifically described below with reference to the accompanying drawings.
The utility model provides a surface gathered water monitoring and early warning instruction integrated device, include: the device comprises a shell arranged on a water accumulation monitoring and early warning indication site, a control processing circuit arranged in the shell, a data transceiving circuit arranged in the shell and matched with a remote early warning information centralized controller, an antenna arranged in a groove at the top in the shell and connected with the data transceiving circuit, a battery jar arranged in the shell, a solar panel arranged at the top of the shell, a multicolor early warning indication lamp belt arranged in the groove at the top of the shell, a water accumulation sensor arranged in the shell, a leakage sensor arranged in the shell, an anti-disassembly sensor arranged at the edge of a top cover of the shell, a GPS (global positioning system) positioner arranged in the shell and a GPS antenna arranged in the shell and connected with the GPS positioner, wherein the shell and the battery jar are spirally sealed and compressed in; the data transceiver circuit, the accumulated water sensor, the electric leakage sensor, the anti-disassembly sensor and the GPS locator are respectively connected with the control processing circuit; the multicolor early warning indicating lamp belt is connected with the control processing circuit through the early warning indicating circuit.
The following is the utility model discloses the concrete implementation process.
As shown in fig. 1-3, the device of the present invention comprises: the intelligent early warning device comprises a shell 1 arranged on a water accumulation monitoring and early warning indication site, a control processing circuit (shown in figure 4) arranged in the shell, a data transceiving circuit (shown in figure 7) arranged in the shell and matched with a remote early warning information centralized controller, an antenna 6 arranged in a groove in the top of the shell and connected with the data transceiving circuit, a battery jar 4 arranged in the shell, a solar panel 2 arranged at the top of the shell, a multicolor early warning indication lamp belt 3 arranged in the groove in the top of the shell, a water accumulation sensor and a leakage sensor 5 arranged in the shell, an anti-disassembly sensor 7 arranged at the edge of a top cover of the shell, a GPS (global positioning system) positioner 8 and an antenna arranged in the shell, wherein the shell 1 and the battery jar 4 are sealed; the early warning indicating circuit, the data transceiving circuit, the data storage circuit (shown in figure 6) and the water level detection circuit (shown in figure 5) are connected with the control processing circuit; the early warning indicating circuit (as shown in fig. 8) is connected with the LED indicating lamp strip and controls the LED to display;
further, the control processor is connected with the data platform through the data transmission module through a network. The control processor is integrally designed with the sensor, the LED control module, the early warning indicator lamp strip, the data transmission module and the data storage module and is connected with the sensor, the LED control module, the early warning indicator lamp strip, the data transmission module and the data storage module through parallel data lines. The power control module is connected with the battery through a shielding cable.
The processor collects the data of the water accumulation sensor, stores the data in the data storage module after operation processing, remotely transmits the data through the data transmission module, and automatically controls the display of the early warning indicator lamp strip according to the remotely preset warning water level by the LED control module.
The processor performs data signaling interaction with the data platform through the data transmission module, receives data information and stores the data information in the data storage module, and the data transmission module and the data platform are communicated through a communication network.
The early warning indicator lamp strip is a three-color LED indicator lamp tube, and early warning colors are changed according to the LED control module.
The sensor is a leakage sensor, an ultrasonic water level sensor and an induction type anti-dismantling sensor.
The GPS positioning module and the data transmission module are connected with the processor through a parallel bus and are connected with an external antenna through a shielding wire.
The processor receives the early warning water level limit value through the data transmission module and stores the early warning water level limit value after the data storage module, the LED control module reads the current accumulated water height through the accumulated water sensor in real time, and after the early warning water level limit value is compared, the current leakage value is obtained by combining the leakage sensor, and the early warning indicator lamp is controlled to carry out corresponding color early warning indication. Meanwhile, the processor communicates and reports the current state information, the GPS positioning information, the ponding depth and the early warning state information through the data transmission module. Related departments can remotely monitor the danger level of the waterlogging-prone point and dredge and risk elimination in time; the public can judge the current ponding degree of depth and the danger coefficient of the easy waterlogging point through the colour of observing early warning pilot lamp on the road surface, guarantee people's trip safety.
The utility model discloses an among surface water monitoring and early warning instruction integrated device's preferred embodiment, treater real-time supervision sensor data controls when LED control module monitors the ponding degree of depth and the leakage current surpasss the early warning value early warning pilot lamp carries out the early warning and shows. When disaster early warning occurs, related business departments can timely know the early warning level of the current road section, timely dredge and eliminate risks, remind the passing public to identify the potential danger of the current road section through the early warning indicator lamp, and timely avoid the risks.
Above is the utility model discloses a preferred embodiment, all rely on the utility model discloses the change that technical scheme made, produced functional action does not surpass the utility model discloses during technical scheme's scope, all belong to the utility model discloses a protection scope.

Claims (8)

1. The utility model provides a surface water monitoring and early warning instruction integrated device which characterized in that includes: the device comprises a shell arranged on a water accumulation monitoring and early warning indication site, a control processing circuit arranged in the shell, a data transceiving circuit arranged in the shell and matched with a remote early warning information centralized controller, an antenna arranged in a groove at the top in the shell and connected with the data transceiving circuit, a battery jar arranged in the shell, a solar panel arranged at the top of the shell, a multicolor early warning indication lamp belt arranged in the groove at the top of the shell, a water accumulation sensor arranged in the shell, a leakage sensor arranged in the shell, an anti-disassembly sensor arranged at the edge of a top cover of the shell, a GPS (global positioning system) positioner arranged in the shell and a GPS antenna arranged in the shell and connected with the GPS positioner, wherein the shell and the battery jar are spirally sealed and compressed in; the data transceiver circuit, the accumulated water sensor, the electric leakage sensor, the anti-disassembly sensor and the GPS locator are respectively connected with the control processing circuit; the multicolor early warning indicating lamp belt is connected with the control processing circuit through the early warning indicating circuit.
2. The integrated device for monitoring, warning and indicating accumulated water on road surface as claimed in claim 1, further comprising a data storage module arranged in the shell and connected with the control processing circuit.
3. The integrated device for monitoring, warning and indicating accumulated water on road surface as claimed in claim 1, further comprising a power control module arranged in the housing and used for charging the battery.
4. The integrated device for monitoring, warning and indicating of the accumulated water on the road surface as claimed in claim 1, wherein the control processing circuit adopts an ARM processor, in particular a quad-core ARM Cortex A3 processor.
5. The integrated device for monitoring, warning and indicating accumulated water on road surface according to claim 3, wherein the power module supports commercial power and solar power supply.
6. The integrated device for monitoring, warning and indicating accumulated water on road surface according to claim 1, wherein the data transceiver circuit and the GPS locator are respectively connected with the antenna and the GPS antenna through shielded wires.
7. The integrated device for monitoring, warning and indicating accumulated water on road surface according to claim 3, wherein the power supply control module is connected with the battery through a shielding wire.
8. The integrated device for monitoring, warning and indicating accumulated water on road surface of claim 1, wherein all modules/circuits are integrally designed.
CN201922276894.8U 2019-12-18 2019-12-18 Integrated device for monitoring, early warning and indicating of surface water accumulation Active CN210955446U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922276894.8U CN210955446U (en) 2019-12-18 2019-12-18 Integrated device for monitoring, early warning and indicating of surface water accumulation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922276894.8U CN210955446U (en) 2019-12-18 2019-12-18 Integrated device for monitoring, early warning and indicating of surface water accumulation

Publications (1)

Publication Number Publication Date
CN210955446U true CN210955446U (en) 2020-07-07

Family

ID=71381120

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922276894.8U Active CN210955446U (en) 2019-12-18 2019-12-18 Integrated device for monitoring, early warning and indicating of surface water accumulation

Country Status (1)

Country Link
CN (1) CN210955446U (en)

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