CN104090311A - Information monitoring method - Google Patents

Information monitoring method Download PDF

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Publication number
CN104090311A
CN104090311A CN201410340497.1A CN201410340497A CN104090311A CN 104090311 A CN104090311 A CN 104090311A CN 201410340497 A CN201410340497 A CN 201410340497A CN 104090311 A CN104090311 A CN 104090311A
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CN
China
Prior art keywords
data
atmosphere
information
airspace
sea level
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Pending
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CN201410340497.1A
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Chinese (zh)
Inventor
殷翠萍
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ANHUI YIQI SOFTWARE SCIENCE & TECHNOLOGY Co Ltd
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ANHUI YIQI SOFTWARE SCIENCE & TECHNOLOGY Co Ltd
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Priority to CN201410340497.1A priority Critical patent/CN104090311A/en
Publication of CN104090311A publication Critical patent/CN104090311A/en
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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
    • Y02A90/00Technologies having an indirect contribution to adaptation to climate change
    • Y02A90/10Information and communication technologies [ICT] supporting adaptation to climate change, e.g. for weather forecasting or climate simulation

Abstract

Provided is an information monitoring method. A digital display is arranged and is connected with a controller, the controller is connected with an RAM and a large capacity storage device, the controller is further connected with an information server of an atmosphere data collecting network, an atmosphere data monitoring and processing module and a module for converting character data into an animation information format are arranged in the controller, an atmosphere information transmitting module is arranged in the information server of the atmosphere data collecting network, and in addition, the information server of the atmosphere data collecting network is further connected with an atmosphere data collecting device of an atmosphere collecting center through the mode of a communication network. By means of the information monitoring method, the problem delay and inaccuracy in information transmission in the prior art are solved, and the defect that the purpose of real-time monitoring cannot be actually achieved is overcome.

Description

Information monitoring method
Technical field
The invention belongs to areas of information technology, be specifically related to a kind of information monitoring method.
Background technology
Issue for the monitoring of atmosphere data collection network at present, the main mode that still adopts channel to play reception or mobile phone monitoring, such mode is for the personnel that take a walk under non-indoor environment, cannot accomplish often Real-Time Monitoring, and existing nixie display can only be relayed some information, on such delay and communication, always have inaccurate problem, really cannot reach the object of Real-Time Monitoring.
Summary of the invention
Object of the present invention provides a kind of information monitoring method, nixie display is set, nixie display is connected with controller, controller is connected with mass storage with RAM, described controller is also connected with the information server of atmosphere data collection network, in controller, be converted into animation information format module with atmosphere data monitoring processing module and character data, the information server of atmosphere data collection network is interior with atmospheric information transport module, the information server of atmosphere data collection network also connects by the mode of communication network with the atmosphere data harvester at atmosphere collection center in addition.And avoid always having an inaccurate problem on delay such in prior art and communication and really cannot reach the defect of the object of Real-Time Monitoring by monitoring method.
In order to overcome deficiency of the prior art, the invention provides a kind of solution of information monitoring method, specific as follows:
A kind of information monitoring method, step is as follows:
Step 1: first nixie display 1 is set, nixie display 1 is connected with controller 2, controller 2 is connected with mass storage 4 with RAM3, described controller 2 is also connected with the information server 5 of atmosphere data collection network, in controller 2, be converted into animation information format module 8 with atmosphere data monitoring processing module 6 and character data, the information server 5 of atmosphere data collection network is interior with atmospheric information transport module 7, the information server 5 of atmosphere data collection network also connects by the mode of communication network with the atmosphere data harvester 6 at atmosphere collection center in addition, described atmosphere data harvester is divided into semiautomatic plant or aut.eq.,
Step 2: the atmosphere data harvester 6 that starts atmosphere collection center carries out atmosphere data collection, and the atmosphere data that collection is come sends to the information server 5 of atmosphere data collection network;
Step 3: in the time that the next atmosphere data of collection is received by the information server 5 of atmosphere data collection network, the information server 5 of atmosphere data collection network starts atmospheric information transport module 7 and encodes to gathering the atmosphere data coming, atmospheric information transport module 7 gather data layout after the coding that carries out of atmosphere data that comes comprise atmosphere data acquisition terminal basic parameter and comprise eyes observation item and sea level certification observation report formulate and submit project data, described atmosphere data acquisition terminal basic parameter comprises the collection network number of 40, the ordinate data of the atmosphere data collection network of 48, the horizontal ordinate data of the atmosphere data collection network of 7 bytes, the observation field height above sea level data of 40, the baroceptor height above sea level data of 40 and the observed pattern data of 1 byte, the described visibility data that project data comprises 24 of formulating and submitting that comprise eyes observation item and sea level certification observation report, total cloud thickness data of 24, the low cloud thickness data of 24, 24 formulate and submit cloud thickness, the thick data of cloud of 32, the data cloud of 32, the cloud form coded data of 24, the space phenomenon coded data of 32, 6 hours or 12 hours rainwater depth groups coded datas of 40, 24 hours pressure and temperature varying group data of 40, 24 hours rainwater depth groups coded datas of 40, the highest atmosphere dissipation of heat group data of past 24 hours of 40, the past 24 hours minimum atmosphere dissipation of heat group data of 40, the minimum Sea Level Temperature group data of past 12 hours of 40, the snow thicknes data of 24, the snow deposit density data of 24, the frozen soil depth data of 24, the sea level status data of 16, the very big air volume data of airspace of 40, the wind direction data of the very big air volume of airspace of 40, the airspace dust devil of 40 or spout data, the airspace glaze data of 40 and 40 s' airspace hail diameter data,
Step 4: atmospheric information transport module 7 sends to the atmosphere data after coding in controller 2;
Step 5, controller 2 receives after the atmosphere data after coding, starting atmospheric information processing module 6 decodes to the atmosphere data after encoding, after decoding, obtain atmosphere data acquisition terminal basic parameter and comprise eyes observation item and sea level certification observation report formulate and submit project data, and the visibility data of 24 in project data of formulating and submitting that comprise eyes observation item and sea level certification observation report, snow thicknes data, snow deposit density data, sea level status data, the very big air volume data of airspace of 40, the wind direction data of the very big air volume of airspace, airspace dust devil or spout data, airspace glaze data and airspace hail diameter data compare with each self-corresponding critical value respectively, if exceeded each self-corresponding critical value, be converted into animation information format module 8 corresponding data that exceed critical value are separately transformed to generation animation information with regard to starting character data, and described animation information is sent on nixie display 1 and monitored.
Apply such scheme of the present invention, can to atmospheric information transport module 7 gather data layout after the atmosphere data coding that carry out that comes comprise atmosphere data acquisition terminal basic parameter and comprise eyes observation item and sea level certification observation report formulate and submit project data, comprise the visibility data of 24 in project data of formulating and submitting of eyes observation item and sea level certification observation report, snow thicknes data, snow deposit density data, sea level status data, the very big air volume data of airspace of 40, the wind direction data of the very big air volume of airspace, airspace dust devil or spout data, airspace glaze data and airspace hail diameter data compare with each self-corresponding critical value respectively, if exceeded each self-corresponding critical value, be converted into animation information format module 8 corresponding data that exceed critical value are separately transformed to generation animation information with regard to starting character data, and described animation information is sent on nixie display 1 and monitored.
Brief description of the drawings
Fig. 1 is information monitoring method structural representation of the present invention.
Embodiment
Below in conjunction with accompanying drawing, summary of the invention is described further:
Shown in Fig. 1, a kind of information monitoring method, step is as follows:
Step 1: first nixie display 1 is set, nixie display 1 is connected with controller 2, controller 2 is connected with mass storage 4 with RAM3, described controller 2 is also connected with the information server 5 of atmosphere data collection network, in controller 2, be converted into animation information format module 8 with atmosphere data monitoring processing module 6 and character data, the information server 5 of atmosphere data collection network is interior with atmospheric information transport module 7, the information server 5 of atmosphere data collection network also connects by the mode of communication network with the atmosphere data harvester 6 at atmosphere collection center in addition, described atmosphere data harvester is divided into semiautomatic plant or aut.eq.,
Step 2: the atmosphere data harvester 6 that starts atmosphere collection center carries out atmosphere data collection, and the atmosphere data that collection is come sends to the information server 5 of atmosphere data collection network;
Step 3: in the time that the next atmosphere data of collection is received by the information server 5 of atmosphere data collection network, the information server 5 of atmosphere data collection network starts atmospheric information transport module 7 and encodes to gathering the atmosphere data coming, atmospheric information transport module 7 gather data layout after the coding that carries out of atmosphere data that comes comprise atmosphere data acquisition terminal basic parameter and comprise eyes observation item and sea level certification observation report formulate and submit project data, described atmosphere data acquisition terminal basic parameter comprises the collection network number of 40, the ordinate data of the atmosphere data collection network of 48, the horizontal ordinate data of the atmosphere data collection network of 7 bytes, the observation field height above sea level data of 40, the baroceptor height above sea level data of 40 and the observed pattern data of 1 byte, the described visibility data that project data comprises 24 of formulating and submitting that comprise eyes observation item and sea level certification observation report, total cloud thickness data of 24, the low cloud thickness data of 24, 24 formulate and submit cloud thickness, the thick data of cloud of 32, the data cloud of 32, the cloud form coded data of 24, the space phenomenon coded data of 32, 6 hours or 12 hours rainwater depth groups coded datas of 40, 24 hours pressure and temperature varying group data of 40, 24 hours rainwater depth groups coded datas of 40, the highest atmosphere dissipation of heat group data of past 24 hours of 40, the past 24 hours minimum atmosphere dissipation of heat group data of 40, the minimum Sea Level Temperature group data of past 12 hours of 40, the snow thicknes data of 24, the snow deposit density data of 24, the frozen soil depth data of 24, the sea level status data of 16, the very big air volume data of airspace of 40, the wind direction data of the very big air volume of airspace of 40, the airspace dust devil of 40 or spout data, the airspace glaze data of 40 and 40 s' airspace hail diameter data,
Step 4: atmospheric information transport module 7 sends to the atmosphere data after coding in controller 2;
Step 5, controller 2 receives after the atmosphere data after coding, starting atmospheric information processing module 6 decodes to the atmosphere data after encoding, after decoding, obtain atmosphere data acquisition terminal basic parameter and comprise eyes observation item and sea level certification observation report formulate and submit project data, and the visibility data of 24 in project data of formulating and submitting that comprise eyes observation item and sea level certification observation report, snow thicknes data, snow deposit density data, sea level status data, the very big air volume data of airspace of 40, the wind direction data of the very big air volume of airspace, airspace dust devil or spout data, airspace glaze data and airspace hail diameter data compare with each self-corresponding critical value respectively, if exceeded each self-corresponding critical value, be converted into animation information format module 8 corresponding data that exceed critical value are separately transformed to generation animation information with regard to starting character data, and described animation information is sent on nixie display 1 and monitored.
The above, it is only preferred embodiment of the present invention, not the present invention is done to any pro forma restriction, although the present invention discloses as above with preferred embodiment, but not in order to limit the present invention, any those skilled in the art, do not departing within the scope of technical solution of the present invention, when can utilizing the technology contents of above-mentioned announcement to make a little change or being modified to the equivalent embodiment of equivalent variations, in every case be not depart from technical solution of the present invention content, according to technical spirit of the present invention, within the spirit and principles in the present invention, the any simple amendment that above embodiment is done, be equal to replacement and improvement etc., within all still belonging to the protection domain of technical solution of the present invention.

Claims (1)

1. an information monitoring method, is characterized in that, step is as follows:
Step 1: nixie display (1) is first set, the same controller of nixie display (1) (2) is connected, the same RAM of controller (2) (3) is connected with mass storage (4), described controller (2) is also connected with the information server (5) of atmosphere data collection network, in controller (2), be converted into animation information format module (8) with atmosphere data monitoring processing module (6) and character data, the information server (5) of atmosphere data collection network is interior with atmospheric information transport module (7), the information server of atmosphere data collection network (5) also connects by the mode of communication network with the atmosphere data harvester (6) at atmosphere collection center in addition, atmosphere data harvester is divided into semiautomatic plant or aut.eq.,
Step 2: the atmosphere data harvester (6) that starts atmosphere collection center carries out atmosphere data collection, and the atmosphere data that collection is come sends to the information server (5) of atmosphere data collection network;
Step 3: in the time that the next atmosphere data of collection is received by the information server of atmosphere data collection network (5), the information server (5) of atmosphere data collection network starts atmospheric information transport module (7) and encodes to gathering the atmosphere data coming, atmospheric information transport module (7) gather data layout after the coding that carries out of atmosphere data that comes comprise atmosphere data acquisition terminal basic parameter and comprise eyes observation item and sea level certification observation report formulate and submit project data, described atmosphere data acquisition terminal basic parameter comprises the collection network number of 40, the ordinate data of the atmosphere data collection network of 48, the horizontal ordinate data of the atmosphere data collection network of 7 bytes, the observation field height above sea level data of 40, the baroceptor height above sea level data of 40 and the observed pattern data of 1 byte, the described visibility data that project data comprises 24 of formulating and submitting that comprise eyes observation item and sea level certification observation report, total cloud thickness data of 24, the low cloud thickness data of 24, 24 formulate and submit cloud thickness, the thick data of cloud of 32, the data cloud of 32, the cloud form coded data of 24, the space phenomenon coded data of 32, 6 hours or 12 hours rainwater depth groups coded datas of 40, 24 hours pressure and temperature varying group data of 40, 24 hours rainwater depth groups coded datas of 40, the highest atmosphere dissipation of heat group data of past 24 hours of 40, the past 24 hours minimum atmosphere dissipation of heat group data of 40, the minimum Sea Level Temperature group data of past 12 hours of 40, the snow thicknes data of 24, the snow deposit density data of 24, the frozen soil depth data of 24, the sea level status data of 16, the very big air volume data of airspace of 40, the wind direction data of the very big air volume of airspace of 40, the airspace dust devil of 40 or spout data, the airspace glaze data of 40 and 40 s' airspace hail diameter data,
Step 4: atmospheric information transport module (7) sends to the atmosphere data after coding in controller 2;
Step 5: controller (2) receives after the atmosphere data after coding, starting atmospheric information processing module (6) decodes to the atmosphere data after encoding, after decoding, obtain atmosphere data acquisition terminal basic parameter and comprise eyes observation item and sea level certification observation report formulate and submit project data, and the visibility data of 24 in project data of formulating and submitting that comprise eyes observation item and sea level certification observation report, snow thicknes data, snow deposit density data, sea level status data, the very big air volume data of airspace of 40, the wind direction data of the very big air volume of airspace, airspace dust devil or spout data, airspace glaze data and airspace hail diameter data compare with each self-corresponding critical value respectively, if exceeded each self-corresponding critical value, be converted into animation information format module (8) corresponding data that exceed critical value are separately transformed to generation animation information with regard to starting character data, and described animation information is sent on nixie display (1) and monitored.
CN201410340497.1A 2014-07-17 2014-07-17 Information monitoring method Pending CN104090311A (en)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2339997Y (en) * 1998-10-21 1999-09-22 唐山市气象科技开发研究所 Meteorological data automatic collecting and broadcasting apparatus
US20120112901A1 (en) * 2010-11-09 2012-05-10 Cellnet Innovations, Inc. Systems for Detecting, Collecting, Communicating, and Using Information About Environmental Conditions and Occurrences
CN203149138U (en) * 2012-11-02 2013-08-21 上海鸿维物联网技术工程有限公司 Multi-parameter integrated atmosphere environment monitor
CN103532673A (en) * 2013-10-22 2014-01-22 北京科技大学 Distributed wireless meteorological encoding monitoring method, device and system
CN203673087U (en) * 2014-01-14 2014-06-25 南京信息工程大学 Meteorological data measuring device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2339997Y (en) * 1998-10-21 1999-09-22 唐山市气象科技开发研究所 Meteorological data automatic collecting and broadcasting apparatus
US20120112901A1 (en) * 2010-11-09 2012-05-10 Cellnet Innovations, Inc. Systems for Detecting, Collecting, Communicating, and Using Information About Environmental Conditions and Occurrences
CN203149138U (en) * 2012-11-02 2013-08-21 上海鸿维物联网技术工程有限公司 Multi-parameter integrated atmosphere environment monitor
CN103532673A (en) * 2013-10-22 2014-01-22 北京科技大学 Distributed wireless meteorological encoding monitoring method, device and system
CN203673087U (en) * 2014-01-14 2014-06-25 南京信息工程大学 Meteorological data measuring device

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
杜江洪: ""多传感器的环境信息无线监测网络设计"", 《仪表技术与传感器》 *
陈斌: ""自动气象站数据的网络查询系统研究"", 《中国优秀硕士学位论文全文数据库 信息科技辑》 *

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Application publication date: 20141008