CN207304624U - A kind of water conservancy hydrographic information monitoring system based on domestic alignment system - Google Patents

A kind of water conservancy hydrographic information monitoring system based on domestic alignment system Download PDF

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Publication number
CN207304624U
CN207304624U CN201721330275.7U CN201721330275U CN207304624U CN 207304624 U CN207304624 U CN 207304624U CN 201721330275 U CN201721330275 U CN 201721330275U CN 207304624 U CN207304624 U CN 207304624U
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China
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module
site terminal
log
water conservancy
domestic
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Expired - Fee Related
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CN201721330275.7U
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Chinese (zh)
Inventor
刘成帅
张方园
刘士峰
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Zhengzhou University
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Zhengzhou University
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Abstract

The utility model discloses a kind of water conservancy hydrographic information based on domestic alignment system to monitor system, including on-site terminal and monitoring center, the lower section of the on-site terminal is equipped with power supply module, and the top of on-site terminal is equipped with secondary data memory module, the top of the pair data memory module is equipped with data comparison module and alarm module, and the side of the on-site terminal is equipped with data transmission module.A kind of water conservancy hydrographic information monitoring system based on domestic alignment system described in the utility model, equipped with emergency landing module, remote control switch and data comparison module, it can suitably be reduced in emergency situations and log in requirement, easy to quickly log in and dangerous situation is handled in time, it can in time enable and usually be left unused in the on-site terminal of middle and small river under emergency case, reduce loss of the system when performing work, and data comparison can be passed through, realization and alarm, the time for manually sending order is saved, brings more preferable prospect of the application.

Description

A kind of water conservancy hydrographic information monitoring system based on domestic alignment system
Technical field
Water conservancy hydrographic information monitoring system regions are the utility model is related to, it is more particularly to a kind of based on domestic alignment system Water conservancy hydrographic information monitors system.
Background technology
Water conservancy hydrologic monitoring alarm system, is mainly used for monitoring the water conservancy operating condition of river, lake, reservoir etc., in time The hydrological characteristics in each waters are reacted, so that relevant departments make arrangement, take precautions against the generation of flood accident.Hydrology and water conservancy monitors Alarm system can detect the temperature of water conservancy, humidity, wind speed, wind direction, rainfall, water quality, water flow velocity, water by various detectors The digital informations such as amount, video image or picture, on-line monitoring central monitoring position is uploaded to by placed channel, while can be by interior Portion's net logs in various Internal Management Systems and dispatch automated system, and existing water conservancy hydrographic information monitoring system monitoring data are accurate Really, and information transmission speed is fast, is provided for the life security of the resident in waters location along the river and Flood prevention disaster first-hand Data;Existing water conservancy hydrographic information monitoring system there are it is certain the drawbacks of, on-site terminal be in operating condition throughout the year substantially, ties up Holding the operating of the system needs to expend many human and material resources and financial resources, can not realize that intermittent monitors, and causes use cost difficult To reduce, equipment alarm needs inspection center to send order, if occurring surprisingly, signal can not be passed in time, it may occur that great Accident, unalterable logs in threshold in emergency situations, is unfavorable for the monitoring information that staff transfers on-site terminal in time, Delay the progress solved the problems, such as, adaptability is relatively low, and the use that system is monitored for water conservancy hydrographic information brings certain influence, is This, it is proposed that a kind of water conservancy hydrographic information monitoring system based on domestic alignment system.
Utility model content
The main purpose of the utility model is that provide a kind of water conservancy hydrographic information monitoring system based on domestic alignment system System, can effectively solve the problems, such as in background technology.
To achieve the above object, the technical solution that the utility model is taken is:
A kind of water conservancy hydrographic information monitoring system based on domestic alignment system, including on-site terminal and monitoring center, institute The lower section for stating on-site terminal is equipped with power supply module, and the top of on-site terminal is equipped with secondary data memory module, and the pair data are deposited The top of storage module is equipped with data comparison module and alarm module, and the side of the on-site terminal is equipped with data transmission module, and On-site terminal is fixedly connected by data transmission module with monitoring center, and the lower section of the data transmission module is positioned equipped with the Big Dipper Module, the lower section of the monitoring center is equipped with primary data store module, and the lower section of primary data store module is equipped with enquiry module, The side of the enquiry module is equipped with log-in module, and the top of the monitoring center is equipped with communication module, and communication module is upper Side is equipped with two level monitoring center, and the side of the monitoring center is equipped with image display, and is set below image display There is data analysis module, the opposite side of the on-site terminal is equipped with information acquisition module, is set below described information acquisition module There is image capture module, and the top of information acquisition module is equipped with digital collection module, the side of the digital collection module is set Have a wind speed acquisition module, and the lower section of wind speed acquisition module is equipped with flow rate acquisition module, the wind speed acquisition module it is upper Side is equipped with rain collection module, and the top of rain collection module is equipped with water level acquisition module, and the side of the alarm module is set There is data reception module, the top of the alarm module is equipped with acoustic-optic alarm, between the on-site terminal and monitoring center Equipped with remote control switch, the side of the log-in module is equipped with data input module, and the opposite side of log-in module is equipped with and answers Anxious log-in module, the top of the emergency landing module are equipped with recognition of face log-in module.
Preferably, described image acquisition module is made of multigroup camera, and protection cap, each group are equipped with above camera Camera is installed using equidistant mode.
Preferably, the flow rate acquisition module is internally provided with hydraulic pressure transmitter and lithium battery, and flow rate is adopted The outer surface of collection module is equipped with waterproof case, and the gap of waterproof case is sealed using plastic seal glue.
Preferably, the upper end of the on-site terminal is equipped with lightning rod, and the outer surface of on-site terminal is equipped with solar cell Plate.
Preferably, the lower section of the log-in module is equipped with numerical ciphers log-in module and fingerprint recognition log-in module, numeral Code entry module, fingerprint recognition log-in module and recognition of face log-in module work at the same time.
Preferably, the acoustic-optic alarm is internally provided with miniature broadcast and red eye, miniature broadcast with it is red Signal lamp is erected at the eminence of on-site terminal using column.
Compared with prior art, the utility model has the advantages that:The water conservancy water based on domestic alignment system Literary information monitoring system, by the emergency landing module of setting, can reduce when there are emergency situations and log in threshold, easy to each The timely login system of staff of level monitoring center transfers the monitoring result of on-site terminal, in time to the scene of the accident and work Personnel, which make, accurately to be judged and sends correct order, by the remote control switch of setting, can be enabled when necessary flat When the medium or smallsized river on-site terminal that leaves unused, in case of emergency realize overall monitor, it is whole to close part field in the flation The operation at end, saves human and material resources and financial resources, by the data comparison module of setting, can by testing result and setting value into Row compares, and is sent warning signal when more than predetermined value by acoustic-optic alarm, and sends alarm to monitoring center, prevents Since other reasons cause the order of monitoring center can not pass to on-site terminal in time, avoid since great thing occurs for the delay time at stop Therefore whole system composition is simple, easy to operate, the effect used is more preferable relative to traditional approach.
Brief description of the drawings
Fig. 1 is that the overall structure that a kind of water conservancy hydrographic information based on domestic alignment system of the utility model monitors system is shown It is intended to.
Fig. 2 is the partial view that a kind of water conservancy hydrographic information based on domestic alignment system of the utility model monitors system.
Fig. 3 is that the remote control that a kind of water conservancy hydrographic information based on domestic alignment system of the utility model monitors system is opened Close connection diagram.
Fig. 4 is the alarm module office that a kind of water conservancy hydrographic information based on domestic alignment system of the utility model monitors system Portion's view.
In figure:1st, on-site terminal;2nd, power supply module;3rd, secondary data memory module;4th, data comparison module;5th, alarm mould Block;6th, data transmission module;7th, Beidou positioning module;8th, monitoring center;9th, primary data store module;10th, enquiry module;11、 Log-in module;12nd, communication module;13rd, two level monitoring center;14th, image display;15th, data analysis module;16th, information Acquisition module;17th, image capture module;18th, digital collection module;19th, wind speed acquisition module;20th, flow rate acquisition module; 21 rain collection modules;22nd, water level acquisition module;23rd, data reception module;24th, acoustic-optic alarm;25th, remote control is opened Close;26th, data input module;27th, emergency landing module;28th, recognition of face log-in module.
Embodiment
To make the technical means, creative features, achievable purpose and effectiveness that the utility model is realized easy to understand, below With reference to embodiment, the utility model is expanded on further.
As shown in Figs 1-4, a kind of water conservancy hydrographic information monitoring system based on domestic alignment system, including on-site terminal 1 With monitoring center 8, the lower section of on-site terminal 1 is equipped with power supply module 2, and the top of on-site terminal 1 is equipped with secondary data memory module 3, the top of secondary data memory module 3 is equipped with data comparison module 4 and alarm module 5, and the side of on-site terminal 1 is passed equipped with data Defeated module 6, and on-site terminal 1 is fixedly connected by data transmission module 6 with monitoring center 8, the lower section of data transmission module 6 is set There is Beidou positioning module 7, the lower section of monitoring center 8 is equipped with primary data store module 9, and the lower section of primary data store module 9 is set There is enquiry module 10, the side of enquiry module 10 is equipped with log-in module 11, and the top of monitoring center 8 is equipped with communication module 12, and The top of communication module 12 is equipped with two level monitoring center 13, and the side of monitoring center 8 is equipped with image display 14, and image is shown Show that the lower section of module 14 is equipped with data analysis module 15, the opposite side of on-site terminal 1 is equipped with information acquisition module 16, information gathering The lower section of module 16 is equipped with image capture module 17, and the top of information acquisition module 16 is equipped with digital collection module 18, numeral The side of acquisition module 18 is equipped with wind speed acquisition module 19, and the lower section of wind speed acquisition module 19 is equipped with flow rate acquisition module 20, the top of wind speed acquisition module 19 is equipped with rain collection module 21, and the top of rain collection module 21 is equipped with water level acquisition Module 22, the side of alarm module 5 are equipped with data reception module 23, and the top of alarm module 5 is equipped with acoustic-optic alarm 24, existing Remote control switch 25 is equipped between field terminal 1 and monitoring center 8, the side of log-in module 11 is equipped with data input module 26, And the opposite side of log-in module 11 is equipped with emergency landing module 27, the top of emergency landing module 27 logs in mould equipped with recognition of face Block 28.
Image capture module 17 is made of multigroup camera, main path of the camera as Image Acquisition, camera Top is equipped with protection cap, prevents camera from hitting damage by debris, influences detection result, each group camera is using equidistantly side Formula is installed, and can realize that waters information is more comprehensively shot with video-corder and preserved;Flow rate acquisition module 20 is internally provided with hydraulic pressure Transmitter and lithium battery, hydraulic pressure transmitter measure the principal organ of water flow velocity for flow rate acquisition module 20, and lithium battery is stream The normal work of fast flow collection module 20 provides energy, and the outer surface of flow rate acquisition module 20 is equipped with waterproof case, The gap of waterproof case is sealed using plastic seal glue, prevents some element immersions that cannot soak, and ensure equipment perfects degree, Normal work for maintaining whole flow rate acquisition module 20 is of great significance;The upper end of on-site terminal 1 is equipped with lightning-arrest Pin, and the outer surface of on-site terminal 1 is equipped with solar panel, can avoid on-site terminal 1 by broken by lightning, and pass through the sun It can power, electric power caused by can reducing system operating is born;The lower section of log-in module 11 is equipped with numerical ciphers log-in module With fingerprint recognition log-in module, numerical ciphers log-in module, fingerprint recognition log-in module and recognition of face log-in module 28 are at the same time Work, a variety of login modes work at the same time, and add the adaptability of system;Acoustic-optic alarm 24 is internally provided with miniature broadcast With red eye, miniature broadcast is erected at the eminence of on-site terminal 1 with red eye using column, and equipment can be at the same time Sound, visual alarm are sent, and installing can aloft make the communication effect of signal more preferable.
It should be noted that the utility model monitors system for a kind of water conservancy hydrographic information based on domestic alignment system, When carrying out the monitoring of water conservancy hydrographic information using the system, on-site terminal 1 is powered by power supply module 2, passes through information acquisition module 16 The collection of the various data images in scene is completed, waters field condition can be shot with video-corder by the camera of image capture module 17, is led to Wind speed acquisition module 19, flow rate acquisition module 20, rain collection module 21 and the water level crossed in digital acquisition signal 18 are adopted Collect module 22, can gather specific data, the on-site terminals 1 such as the wind speed at waters scene, flow rate, rainfall, water level will collect Data be stored in secondary data memory module 3, and gathered data and image are sent to monitoring by data transmission module 6 Data and image can be stored in the inside of primary data store module 9, Ge Jijian by center 8 and two level monitoring center 13, monitoring center 8 Measured center 8 determines data source address by Beidou positioning module 7, and while data are sent, on-site terminal 1 can pass through Monitoring result and setting value are compared data comparison module 4, if monitoring result exceedes setting value, inside alarm module 5 Acoustic-optic alarm 24 send high intensity acousto-optic alarm signal, and sent and warned to monitoring center 8 by data transmission module 6 The number of notifying, the staff of monitoring center 8 can inquire about field data by enquiry module 10 in time, be used by log-in module 11 It logs in the system for recognition of face log-in module 28, fingerprint recognition log-in module and digital code entry module various ways, adjusts Go out the monitoring result of on-site terminal 1, and analyzed by 14 displaying scene picture of image display and by data analysis module 15 Trend curve, made easy to staff and accurately judge and send order, correct measure is taken to live dangerous situation in time, Part field terminal 1 is installed on medium or smallsized river waters, and most time is steady, and monitoring center 8 is by long-range under emergency situations Controlling switch 25 orders such on-site terminal 1 to perform monitoring, and emergency landing module 27 enables under emergency situations, looks into Inquiry system 10 logs in that requirement is appropriate to be reduced, and the monitoring number that the system transfers on-site terminal 1 is timely entered easy to staff According to taking corresponding measure to solve the problems, such as in time, avoid situation from further deteriorating.
The advantages of basic principle and main feature and the utility model of the utility model has been shown and described above.One's own profession The technical staff of industry is it should be appreciated that the present utility model is not limited to the above embodiments, described in above embodiments and description Simply illustrate the utility model principle, on the premise of not departing from the spirit and scope of the utility model, the utility model is also Various changes and modifications are had, these various changes and improvements fall within the scope of the claimed invention.The utility model Claimed scope is defined by the appending claims and its equivalent thereof.

Claims (6)

1. a kind of water conservancy hydrographic information monitoring system based on domestic alignment system, including on-site terminal(1)With monitoring center (8), it is characterised in that:The on-site terminal(1)Lower section be equipped with power supply module(2), and on-site terminal(1)Top be equipped with pair Data memory module(3), the pair data memory module(3)Top be equipped with data comparison module(4)With alarm module(5), The on-site terminal(1)Side be equipped with data transmission module(6), and on-site terminal(1)Pass through data transmission module(6)With prison Measured center(8)It is fixedly connected, the data transmission module(6)Lower section be equipped with Beidou positioning module(7), the monitoring center (8)Lower section be equipped with primary data store module(9), and primary data store module(9)Lower section be equipped with enquiry module(10), it is described Enquiry module(10)Side be equipped with log-in module(11), the monitoring center(8)Top be equipped with communication module(12), and it is logical Believe module(12)Top be equipped with two level monitoring center(13), the monitoring center(8)Side be equipped with image display (14), and image display(14)Lower section be equipped with data analysis module(15), the on-site terminal(1)Opposite side be equipped with Information acquisition module(16), described information acquisition module(16)Lower section be equipped with image capture module(17), and information gathering mould Block(16)Top be equipped with digital collection module(18), the digital collection module(18)Side be equipped with wind speed acquisition module (19), and wind speed acquisition module(19)Lower section be equipped with flow rate acquisition module(20), the wind speed acquisition module(19)'s Top is equipped with rain collection module(21), and rain collection module(21)Top be equipped with water level acquisition module(22), the report Alert module(5)Side be equipped with data reception module(23), the alarm module(5)Top be equipped with acoustic-optic alarm (24), the on-site terminal(1)With monitoring center(8)Between be equipped with remote control switch(25), the log-in module(11)'s Side is equipped with data input module(26), and log-in module(11)Opposite side be equipped with emergency landing module(27), it is described emergent Log-in module(27)Top be equipped with recognition of face log-in module(28).
2. a kind of water conservancy hydrographic information monitoring system based on domestic alignment system according to claim 1, its feature exist In:Described image acquisition module(17)It is made of multigroup camera, protection cap is equipped with above camera, each group camera is adopted Installed with equidistant mode.
3. a kind of water conservancy hydrographic information monitoring system based on domestic alignment system according to claim 1, its feature exist In:The flow rate acquisition module(20)Be internally provided with hydraulic pressure transmitter and lithium battery, and flow rate acquisition module (20)Outer surface be equipped with waterproof case, the gap of waterproof case is sealed using plastic seal glue.
4. a kind of water conservancy hydrographic information monitoring system based on domestic alignment system according to claim 1, its feature exist In:The on-site terminal(1)Upper end be equipped with lightning rod, and on-site terminal(1)Outer surface be equipped with solar panel.
5. a kind of water conservancy hydrographic information monitoring system based on domestic alignment system according to claim 1, its feature exist In:The log-in module(11)Lower section be equipped with numerical ciphers log-in module and fingerprint recognition log-in module, numerical ciphers log in Module, fingerprint recognition log-in module and recognition of face log-in module(28)Work at the same time.
6. a kind of water conservancy hydrographic information monitoring system based on domestic alignment system according to claim 1, its feature exist In:The acoustic-optic alarm(24)Be internally provided with miniature broadcast and red eye, miniature broadcast and red eye are equal On-site terminal is erected at using column(1)Eminence.
CN201721330275.7U 2017-10-17 2017-10-17 A kind of water conservancy hydrographic information monitoring system based on domestic alignment system Expired - Fee Related CN207304624U (en)

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CN201721330275.7U CN207304624U (en) 2017-10-17 2017-10-17 A kind of water conservancy hydrographic information monitoring system based on domestic alignment system

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Application Number Priority Date Filing Date Title
CN201721330275.7U CN207304624U (en) 2017-10-17 2017-10-17 A kind of water conservancy hydrographic information monitoring system based on domestic alignment system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111473777A (en) * 2020-03-06 2020-07-31 李�杰 Hydrological monitoring system and method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111473777A (en) * 2020-03-06 2020-07-31 李�杰 Hydrological monitoring system and method

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Granted publication date: 20180501

Termination date: 20181017