CN204855487U - Long -range networking management system of detecting instrument and data based on GIS - Google Patents
Long -range networking management system of detecting instrument and data based on GIS Download PDFInfo
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- CN204855487U CN204855487U CN201520556406.8U CN201520556406U CN204855487U CN 204855487 U CN204855487 U CN 204855487U CN 201520556406 U CN201520556406 U CN 201520556406U CN 204855487 U CN204855487 U CN 204855487U
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Abstract
The utility model relates to a long -range networking management system of detecting instrument and data based on GIS, including intelligent acquisition terminating set, network center's server, have geographical orientation module and network linking module's detecting instrument device, the utility model discloses an integrated of geographical position location, photograph technique and internet technology is used, networks whole detecting instrument to in the unified network system, gathers detecting instrument's equipment information and detects the data message through intelligent terminal, then send instrument equipment information that intelligent terminal gathered, detect data to system service ware through dispensing device, realizes finally that instrument detecting instrument 0 and experiment detect data based on dynamic, the visual analysis of GIS. Simultaneously, download and inquiry etc. Are uploaded through information to the data such as calibration model of storage instrument in the system service ware, carry out real time monitoring, early warning etc. To whole networking device to can realize the centralized power and unity management of various qualitative datas.
Description
Technical field
The utility model relates to a kind of detecting instrument equipment and detects device, particularly a kind of detecting instrument based on GIS and the remote data networking management system of data supervision.
Background technology
Along with country is to the great attention of food security, in succession there is all kinds of field quick detection instrument and equipments in all trades and professions, and even link large-scale popularization uses on-the-spot quick test to detect in environment, soil, the agricultural market of farm produce etc. respectively, but because each device fabrication producer is only responsible for producing and selling and the management of oneself equipment, cause various checkout equipment numerous and complicated, applying unit or regulatory authorities lack unified equipment and data organizing tool carries out unified management to equipment and data.When particularly carrying out Risk Monitoring, control device initiatively is all lacked to control of monitoring field physical location, the observation process data true and false etc.; The data message gathered also lacks real characteristic information and carries out analyzing and processing, and these have become the technical bottleneck of Risk Monitoring.
At present, about the management of experimental instrument and equipment in every profession and trade prior art, be all dispersion, independent separately, the data that testing process produces are preserved separately, and record, transmittance process are also that personal letter is lived by one's pen pattern, its accuracy, ageingly all there is great problem.The running status management such as the measurement verification of equipment, depend on constituent parts by oneself, administrative authority can not supervise in time, effectively.Therefore, the state of instrument and equipment and the authenticity of various detection data and ageingly all there is great hidden danger, meanwhile, various quality testing data post can not get rational and efficient use.
Utility model content
In order to overcome the deficiency of existing detecting instrument equipment and the supervision of detection data thereof, the utility model provides a kind of detecting instrument based on GIS and remote data networking management system.
The utility model solves the technical scheme that its technical matters adopts: based on detecting instrument and the remote data networking management system of GIS, includes collecting terminal device, network central server, detecting instrument device with geo-location module and network connecting module;
Described collecting terminal device is wirelessly connected with described detecting instrument device and network central server respectively; Network connecting module in described detecting instrument device is wirelessly connected with described collecting terminal device and network central server respectively;
Be provided with in described collecting terminal device: Geographic mapping module, photographing module, RFID module, two-dimensional code generation module, conversion and print module and information aggregate sending module; Described information aggregate sending module connects Geographic mapping module, photographing module, RFID module, two-dimensional code generation module, conversion and print module respectively;
Described network central server includes: information aggregate receiver module, information issue module, information storage module, information identification module and message processing module, and described message processing module respectively link information set receiver module, information issues module, information storage module, information identification module.
Described collecting terminal device is used for the real time status information of acquisition testing apparatus, geographical location information and detection data, and by wireless way for transmitting to network central server;
Described network central server is used for detecting instrument device is carried out to overall equipment management, detects Data Collection and storage, and realizes and visual analyzing dynamic based on GIS;
Geo-location module in described detecting instrument device is the one among GPS, the Big Dipper, Galileo, GLONASS positioning system.
Described detecting instrument device is the one of mycotoxin detector, heavy metal detector, Pesticides Testing instrument.
The beneficial effects of the utility model are, employing Geographic mapping is provided, camera technique, RFID, the Integrated predict model of planar bar code technology and Internet technology, by collecting terminal device acquisition instrument status information of equipment, detect sample and detect data message, then the information of intelligent terminal collection is sent by dispensing device, or the relevant information will gathered by intelligent terminal, automatic assignment is in instrument detection data, add the instant IP locating information of instrument and equipment, uploaded by internet by detecting instrument self workstation, the recognition processor automatic inspection equipment state of network central server, temporal logic, geographic position, sample and detection data message thereof, and set up instrument and equipment, intelligent terminal, background picture, geographic position, test duration, operator, the one-to-one relationship detecting sample and detect between data, thus realize the dynamic situation of the instrument and equipment of the whole networking of monitoring in real time, realize the Data Dynamic based on GIS and visual analyzing.
Accompanying drawing explanation
Fig. 1 is structural schematic block diagram of the present utility model.
Embodiment
Below in conjunction with drawings and Examples, the utility model is further illustrated.
As shown in Figure 1, based on detecting instrument and the remote data networking management system of GIS, include collecting terminal device, network central server, detecting instrument device with geo-location module and network connecting module;
Described collecting terminal device is wirelessly connected with described detecting instrument device and network central server respectively; Network connecting module in described detecting instrument device is wirelessly connected with described collecting terminal device and network central server respectively;
Be provided with in described collecting terminal device: Geographic mapping module, photographing module, RFID module, two-dimensional code generation module, conversion and print module and information aggregate sending module; Described information aggregate sending module connects Geographic mapping module, photographing module, RFID module, two-dimensional code generation module, conversion and print module respectively;
Described network central server includes: information aggregate receiver module, information issue module, information storage module, information identification module and message processing module, and described message processing module respectively link information set receiver module, information issues module, information storage module, information identification module.
Described collecting terminal device is used for the real time status information of acquisition testing apparatus, geographical location information and detection data, and by wireless way for transmitting to network central server;
Described network central server is used for detecting instrument device is carried out to overall equipment management, detects Data Collection and storage, and realizes and visual analyzing dynamic based on GIS;
Geo-location module in described detecting instrument device is the one among GPS, the Big Dipper, Galileo, GLONASS positioning system.
Described detecting instrument device is the one of mycotoxin detector, heavy metal detector, Pesticides Testing instrument.
Implementation process:
1) network central server stores all data, performs prediction, storage, statistics, transfer function; Be infrared fast detector for detecting instrument, from network central server, issue various spectrum, sample message, data and calibration model information to each detecting instrument; This detecting instrument device performance parameters information of real-time monitoring, comprise the device number of this detecting instrument device, spectral measurement number of times, test duration, spectral energy value, absorbance noise, wavelength accuracy, model information, sample message (can sample geographical location information be contained), reviewer etc., and the warning message when detecting instrument device can monitoring networking is abnormal; Based on GIS map, carry out data trend analysis and statistical study, show sample Testing index changing trend diagram, statistical study is carried out to the data of retrieval and inquisition, provide various statistical parameter, warning message etc., and provide personalized form form according to user's request; Based on the particular geographic location of the detecting instrument device placement that GIS map monitoring networks, and mark on map; Network system management and maintenance: can authorize the interim logging in online of instrument producer at any time, carry out remote diagnosis, maintenance to certain detecting instrument device in network or implement other network operation management and utilization; Regularly automatically carry out DB Backup.
2) each detecting instrument device performs the information acquisition of sample and detects spectra collection function, data analysis workstation is detected as it carries, geographical location information is obtained from collecting terminal device, the geographical location information that position when this geographic position comprises equipment use and detected sample comprise itself, and automatic assignment is in detection data, uploads to network central server by built-in network connecting module; If not being with similar detection analysis software and hardware unit, then by RFID module or the two-dimensional code generation module acquisition sample message of collecting terminal device, by the status information of equipment of the real-time uploading detection apparatus of wireless network, sample message and detection data thereof, geographical location information to the webserver, the mode of copy intelligent terminal off-line image data also can be adopted to be uploaded by internet.
Detecting instrument device is with geo-location module and network connecting module, collecting terminal device can with detecting instrument device Integrated predict model, detecting instrument device state information, sample message and detection data thereof, geographical location information are uploaded to network central server in real time.Detecting instrument device as without geo-location module and network connecting module, then can carry out the collection of above-mentioned data by collecting terminal device and upload to the work of central network server; Also the mode of the off-line image data of copy collecting terminal device can be adopted to be uploaded by internet.
3) all operations link, if needed, all can adopt the photographing module of collecting terminal device, the local background of Real-time Collection testing process, detecting instrument appliance arrangement picture, testing result profile information be uploaded to the webserver, to monitor in real time more accurately and afterwards for future reference.
4) network and information security: network admittance mandate, the coded order of detecting instrument device Xu You network central server control center, obtains coding and just allows access network management system; Simultaneously, the identity of native system to detecting instrument device, Site Detection personnel is carried out digital authenticating and is encrypted transmission to sample message detection data, detecting instrument device state information, geographical location information, ensure that detecting instrument device, related personnel's identity and detects the confidentiality of data in transmitting procedure; Network central server is run possesses encrypted physical function, uses encrypted physical device just can login network system, guarantees data security; Arrange logon rights, the authority of different role personnel (keeper, researcher, operator) sign-on access is different, and the authority such as data manipulation and read-write carries out classification empowerment management.
Meanwhile, the data such as calibration model of storage apparatus in system server, upload download and inquiry etc. by information, monitor in real time whole networked devices, early warning etc.System solves the problem the instrument Decentralization of current detection mechanism, data silo problem, and the centralized and unified management of various qualitative data can be realized, for accumulating the large data of history from now on and sustainable digging utilization lays technical foundation.
Claims (3)
1. based on detecting instrument and a remote data networking management system of GIS, it is characterized in that, include collecting terminal device, network central server, detecting instrument device with geo-location module and network connecting module;
Described collecting terminal device is wirelessly connected with described detecting instrument device and network central server respectively; Network connecting module in described detecting instrument device is wirelessly connected with described collecting terminal device and network central server respectively;
Be provided with in described collecting terminal device: Geographic mapping module, photographing module, RFID module, two-dimensional code generation module, conversion and print module and information aggregate sending module; Described information aggregate sending module connects Geographic mapping module, photographing module, RFID module, two-dimensional code generation module, conversion and print module respectively;
Described network central server includes: information aggregate receiver module, information issue module, information storage module, information identification module and message processing module, and described message processing module respectively link information set receiver module, information issues module, information storage module, information identification module.
2. the detecting instrument based on GIS according to claim 1 and remote data networking management system, is characterized in that, the geo-location module in described detecting instrument device is the one among GPS, the Big Dipper, Galileo, GLONASS positioning system.
3. the detecting instrument based on GIS according to claim 1 and remote data networking management system, is characterized in that, described detecting instrument device is the one of mycotoxin detector, heavy metal detector, Pesticides Testing instrument.
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
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CN105976184A (en) * | 2016-05-02 | 2016-09-28 | 成都荣为信息技术有限公司 | Production place-based food quality safety survey device system using satellite technologies |
CN106295749A (en) * | 2016-08-17 | 2017-01-04 | 广州瑞森生物科技股份有限公司 | A kind of fast check reagent intelligent acquisition monitoring method |
CN106355304A (en) * | 2016-08-16 | 2017-01-25 | 陕西理工学院 | Monitoring system |
CN110502547A (en) * | 2019-09-04 | 2019-11-26 | 河南宏博测控技术有限公司 | Internet of Things detection data management system and Internet of Things detection data management method |
CN111551384A (en) * | 2020-05-20 | 2020-08-18 | 宁波智能制造技术研究院有限公司 | Intelligent sterilizer state remote diagnosis method based on Internet of things |
CN112304370A (en) * | 2020-10-30 | 2021-02-02 | 广西轩仪科学仪器有限公司 | Cloud collection and measurement system for environment-friendly sample detection |
CN112861101A (en) * | 2021-03-05 | 2021-05-28 | 链晟数科(成都)科技有限公司 | High-reliability inspection detection data processing method and device |
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2015
- 2015-07-28 CN CN201520556406.8U patent/CN204855487U/en active Active
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105976184A (en) * | 2016-05-02 | 2016-09-28 | 成都荣为信息技术有限公司 | Production place-based food quality safety survey device system using satellite technologies |
CN106355304A (en) * | 2016-08-16 | 2017-01-25 | 陕西理工学院 | Monitoring system |
CN106295749A (en) * | 2016-08-17 | 2017-01-04 | 广州瑞森生物科技股份有限公司 | A kind of fast check reagent intelligent acquisition monitoring method |
CN110502547A (en) * | 2019-09-04 | 2019-11-26 | 河南宏博测控技术有限公司 | Internet of Things detection data management system and Internet of Things detection data management method |
CN111551384A (en) * | 2020-05-20 | 2020-08-18 | 宁波智能制造技术研究院有限公司 | Intelligent sterilizer state remote diagnosis method based on Internet of things |
CN112304370A (en) * | 2020-10-30 | 2021-02-02 | 广西轩仪科学仪器有限公司 | Cloud collection and measurement system for environment-friendly sample detection |
CN112861101A (en) * | 2021-03-05 | 2021-05-28 | 链晟数科(成都)科技有限公司 | High-reliability inspection detection data processing method and device |
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CB03 | Change of inventor or designer information |
Inventor after: Yang Jun Inventor after: Pu Gang Inventor after: Xiong Changwu Inventor before: Pu Gang Inventor before: Yang Jun Inventor before: Xiong Changwu |