CN205105256U - Monitored control system is synthesized to typhoon calamity - Google Patents

Monitored control system is synthesized to typhoon calamity Download PDF

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Publication number
CN205105256U
CN205105256U CN201520914137.8U CN201520914137U CN205105256U CN 205105256 U CN205105256 U CN 205105256U CN 201520914137 U CN201520914137 U CN 201520914137U CN 205105256 U CN205105256 U CN 205105256U
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China
Prior art keywords
typhoon
module
control module
client terminal
data communication
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CN201520914137.8U
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Chinese (zh)
Inventor
耿焕同
周利发
陈正鹏
丁洋洋
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Nanjing Taiya Polytron Technologies Inc
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Nanjing University of Information Science and Technology
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather

Abstract

The utility model relates to a monitored control system is synthesized to typhoon calamity, collection inquiry and prediction integrated design scheme as an organic whole design simple easy to use, can effectively carry the work efficiency in the aspect of the control of high platform wind, but also gather the study of typhoon, when guaranteeing to typhoon control work efficiency, can satisfy the demand that has typhoon knowledge study crowd, let more users have gained some understanding to the typhoon.

Description

A kind of typhoon disaster comprehensive monitoring system
Technical field
The utility model relates to oneplant typhoon disaster comprehensive monitoring system, belong to typhoon monitoring technique field.
Background technology
Domesticly at present also be in the starting stage for typhoon science popularization plateform system, the approach obtaining Typhoon Information mainly contains three kinds: newspaper, network, TV, although newspaper can obtain Typhoon Information, its poor in timeliness, cannot in time for the common people provide message timely; Typhoon net on network then has certain restriction, needs in the place having network, and to have one can the computer equipment of interconnection network to check the information of typhoon; Weather forecast in TV is then restricted larger, must a TV that can be connected to external signal, need to play weather forecast, although have the fixing period to have weather forecast and forecast result is with a high credibility, but cannot check after all, therefore our R & D design is a based on mobile terminal, integrate typhoon science popularization, typhoon science popularization plateform system with science service whenever and wherever possible, user can be made to check Typhoon Information whenever and wherever possible, is user's service more timely and conveniently.Everybody can be allowed to recognize the specifying information of typhoon whenever and wherever possible more conveniently, and the current following moving direction whether having typhoon and typhoon in northwest Pacific, carry out protection work in time; Can learn and understand typhoon knowledge simultaneously.Improve typhoon know-how.
Utility model content
For above-mentioned technical problem, technical problem to be solved in the utility model is to provide a kind of typhoon disaster comprehensive monitoring system, collection inquiry and the comprehensive Design scheme being predicted as one, simplicity of design is easy to use, and effectively can improve the operating efficiency of typhoon monitoring aspect.
The utility model is in order to solve the problems of the technologies described above by the following technical solutions: the utility model devises a kind of typhoon disaster comprehensive monitoring system, comprises server end, and each client terminal; Wherein, each client terminal comprises the first control module respectively, and the typhoon tracks forecast instruction input module be connected with the first control module respectively, history typhoon query statement input module, message output module, the first data communication module; Server end comprises the second control module, and the server, the second data communication module that are connected with the second control module respectively, arranges typhoon track prediction module and history typhoon database module in server; The first control module in each client terminal is respectively through the first coupled data communication module, and the second data communication module in server end communicates mutually with the second control module in server end.
As a kind of optimal technical scheme of the present utility model: each client terminal described also comprises the typhoon knowledge learning instruction input module be connected with described first control module respectively; Server in described server end also stores typhoon knowledge exam pool module.
As a kind of optimal technical scheme of the present utility model: described server end also comprises the typhoon knowledge questions record be connected with described second control module and enters module.
As a kind of optimal technical scheme of the present utility model: each client terminal described is arranged on each mobile terminal respectively, the first data communication module in each client terminal communicates with the second data communication module in described server end respectively by wireless mode.
As a kind of optimal technical scheme of the present utility model: also comprise the memory module be connected with the first control module in each client terminal described respectively.
A kind of typhoon disaster comprehensive monitoring system described in the utility model adopts above technical scheme compared with prior art, there is following technique effect: the typhoon disaster comprehensive monitoring system of the utility model design, collection inquiry and the comprehensive Design scheme being predicted as one, simplicity of design is easy to use, effectively can improve the operating efficiency of typhoon monitoring aspect, but also gathered the study of typhoon, while guarantee is for typhoon monitoring operating efficiency, the demand with typhoon knowledge learning crowd can be met, allow more user have gained some understanding to typhoon.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model design typhoon disaster comprehensive monitoring system.
Embodiment
Be described in further detail for embodiment of the present utility model below in conjunction with Figure of description.
As shown in Figure 1, a kind of typhoon disaster comprehensive monitoring system of the utility model design, in the middle of actual application, comprises server end, and each client terminal; Wherein, each client terminal is arranged on each mobile terminal respectively, each client terminal comprises the first control module respectively, and the typhoon tracks forecast instruction input module be connected with the first control module respectively, history typhoon query statement input module, message output module, the first data communication module, typhoon knowledge learning instruction input module, memory module; Server end comprises the second control module, and the server be connected with the second control module respectively, the second data communication module, typhoon knowledge questions record enter module, typhoon track prediction module, history typhoon database module and typhoon knowledge exam pool module are set in server; The first control module in each client terminal is respectively through the first coupled data communication module, and the second data communication module in server end communicates mutually with the second control module in server end, wherein, the first data communication module in each client terminal communicates with the second data communication module in described server end respectively by wireless mode.
In practical application, the user of client terminal can send history typhoon query statement by the physical button on mobile terminal or virtual key to history typhoon query statement input module, trigger history typhoon query statement to start working, history typhoon query statement input module receives history typhoon query statement, and it is resolved, then the first control module is sent to, first control module is through the first data communication module, second data communication module wirelessly communicates with the second control module in described server end, history typhoon query statement is sent to the second control module, second control module is according to history typhoon query statement, inquired about by the history typhoon database module be attached thereto in server, after obtaining Query Result, by above-mentioned communication mode, Query Result is back to the first control module of client terminal, first control module adopts the message output module be attached thereto to be sent on the screen of mobile terminal by Query Result, for user's inquiry.
Equally, the user of client terminal can send the parameter information of initial stage typhoon to be predicted by the physical button on mobile terminal or virtual key to typhoon tracks forecast instruction input module, the formation date of such as initial stage typhoon to be predicted, the forming position of initial stage typhoon to be predicted, the initial movable direction of initial stage typhoon to be predicted and initial movable speed, trigger typhoon tracks forecast instruction input module to start working, typhoon tracks forecast instruction input module is resolved for above-mentioned parameter information, then the first control module is sent to, first control module is through the first data communication module, second data communication module wirelessly communicates with the second control module in described server end, the parameter information of typhoon to be predicted for the initial stage is sent to the second control module, second control module is according to the parameter information of initial stage typhoon to be predicted, predicted by the typhoon tracks forecast module be attached thereto in server, the prediction mobile route of acquisition initial stage typhoon to be predicted, then by above-mentioned communication mode, the prediction mobile route of typhoon to be predicted for the initial stage is back to the first control module of client terminal, first control module adopts the message output module be attached thereto to be sent on the screen of mobile terminal by the prediction mobile route of typhoon to be predicted for the initial stage, know for user.
Moreover, the user of client terminal can send typhoon knowledge learning trigger request by the physical button on mobile terminal or virtual key to typhoon knowledge learning instruction input module, then typhoon knowledge learning instruction input module is resolved it, and send the request of typhoon knowledge learning to the first control module immediately, first control module is through the first data communication module, second data communication module wirelessly communicates with the second control module in described server end, the request of typhoon knowledge learning is sent to the second control module, second control module is according to the request of typhoon knowledge learning, inscribed by the typhoon knowledge exam pool module calls knowledge be attached thereto in server, then by above-mentioned communication mode, transferred knowledge topic is back to the first control module of client terminal, first control module adopts the message output module be attached thereto to be sent on the screen of mobile terminal by Query Result, user realizes the study for knowledge topic by the physical button on mobile terminal or virtual key through typhoon knowledge learning instruction input module again, for the knowledge topic in typhoon knowledge exam pool module in server end, server, module can be entered by the typhoon knowledge questions record of system manager in server end, in typhoon knowledge exam pool module, carry out typing.
In addition, the memory module be connected with the first control module in client terminal can also be used for storing the Query Result of history typhoon, the prediction mobile route etc. of initial stage typhoon to be predicted.
The typhoon disaster comprehensive monitoring system of the utility model design, collection inquiry and the comprehensive Design scheme being predicted as one, simplicity of design is easy to use, effectively can improve the operating efficiency of typhoon monitoring aspect, but also gathered the study of typhoon, while guarantee is for typhoon monitoring operating efficiency, the demand with typhoon knowledge learning crowd can be met, allow more user have gained some understanding to typhoon.
Be explained in detail for execution mode of the present utility model in conjunction with Figure of description above, but the utility model is not limited to above-mentioned execution mode, in the ken that those of ordinary skill in the art possess, can also make a variety of changes under the prerequisite not departing from the utility model aim.

Claims (5)

1. a typhoon disaster comprehensive monitoring system, is characterized in that: comprise server end, and each client terminal; Wherein, each client terminal comprises the first control module respectively, and the typhoon tracks forecast instruction input module be connected with the first control module respectively, history typhoon query statement input module, message output module, the first data communication module; Server end comprises the second control module, and the server, the second data communication module that are connected with the second control module respectively, arranges typhoon track prediction module and history typhoon database module in server; The first control module in each client terminal is respectively through the first coupled data communication module, and the second data communication module in server end communicates mutually with the second control module in server end.
2. a kind of typhoon disaster comprehensive monitoring system according to claim 1, is characterized in that: each client terminal described also comprises the typhoon knowledge learning instruction input module be connected with described first control module respectively; Server in described server end also stores typhoon knowledge exam pool module.
3. a kind of typhoon disaster comprehensive monitoring system according to claim 2, is characterized in that: described server end also comprises the typhoon knowledge questions record be connected with described second control module and enters module.
4. a kind of typhoon disaster comprehensive monitoring system according to claim 1, it is characterized in that: each client terminal described is arranged on each mobile terminal respectively, the first data communication module in each client terminal communicates with the second data communication module in described server end respectively by wireless mode.
5. a kind of typhoon disaster comprehensive monitoring system according to claim 1, is characterized in that: also comprise the memory module be connected with the first control module in each client terminal described respectively.
CN201520914137.8U 2015-11-17 2015-11-17 Monitored control system is synthesized to typhoon calamity Active CN205105256U (en)

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106447126A (en) * 2016-10-20 2017-02-22 中国科学院深圳先进技术研究院 Determining and forecasting methods and determining and forecasting systems for visibility change, caused by tropical cyclone, in coastal area

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106447126A (en) * 2016-10-20 2017-02-22 中国科学院深圳先进技术研究院 Determining and forecasting methods and determining and forecasting systems for visibility change, caused by tropical cyclone, in coastal area

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C14 Grant of patent or utility model
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TR01 Transfer of patent right

Effective date of registration: 20170330

Address after: 210032 Jiangsu City, Nanjing province high tech Development Zone, Spark Road, software building, No. 9, block A, layer 6

Patentee after: Nanjing Taiya Polytron Technologies Inc

Address before: 210044 Nanjing City, Pukou Province, Nanjing Road, No. 219, No. six, No.

Patentee before: Nanjing University of Information Science and Technology

TR01 Transfer of patent right