CN204595239U - A kind of weather satellite area observation system - Google Patents
A kind of weather satellite area observation system Download PDFInfo
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- CN204595239U CN204595239U CN201520265404.3U CN201520265404U CN204595239U CN 204595239 U CN204595239 U CN 204595239U CN 201520265404 U CN201520265404 U CN 201520265404U CN 204595239 U CN204595239 U CN 204595239U
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- control device
- positioning device
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- image positioning
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Abstract
The utility model discloses a kind of weather satellite area observation system, comprise data dispatch control device, the input end of described data dispatch control device is connected to operating control device and the first data processing equipment, the output terminal of described data dispatch control device is connected to scrambler, attitude determining device, image positioning device one, image positioning device two and projection process instrument, described attitude determining device, described image positioning device one and described image positioning device two are connected to the second data processing equipment, described second data processing equipment is connected with described scrambler, described scrambler is connected with image acquiring device, described projection process instrument is connected with image process units, described image process units is connected with image dispensing device.The beneficial effects of the utility model are: greatly improve moonscope timeliness, effectively support meteorological application; Improve the serviceable life of China's geostationary meteorological satellite (GMS) traffic observation net.
Description
Technical field
The utility model relates to weather satellite technical field, specifically, relates to a kind of the utility model and relates to a kind of weather satellite area observation system.
Background technology
China is one of country that disaster is the most serious in the world, nearly ten years, every year because disaster causes economic loss all more than 2,000 hundred million yuan.China has become the 3rd country that lose from natural calamity is the most serious in the world after Japan and the U.S..Through authoritative department statistics, the disaster that meteorology causes accounts for more than 70% in disaster.Utilize the area observation of weather satellite can provide the meteorological data of high timeliness for specific region, the prediction of meteorological disaster, prevention and disaster relief tool are of great significance.
Area observation need adjust observation area according to business demand, the Continuous Observation etc. such as will carried out for specific region or particular weather system, has the features such as sudden, diversity relative to normal traffic pattern.The a set of perfect weather satellite area observation system of current needs realizes the flexible switching of regular traffic and area observation task, supports new area observation task, dispatches satellite and ground system collaborative work fast and accurately.
For the problems referred to above of existing correlation technique, at present effective solution is not yet proposed.
Utility model content
For the problems referred to above in existing correlation technique, the utility model proposes a kind of weather satellite area observation system.
The technical solution of the utility model is achieved in that
A kind of weather satellite area observation system, comprise data dispatch control device, the input end of described data dispatch control device is connected to operating control device and the first data processing equipment, the output terminal of described data dispatch control device is connected to scrambler, attitude determining device, image positioning device one, image positioning device two and projection process instrument, described attitude determining device, described image positioning device one and described image positioning device two are connected to the second data processing equipment, described second data processing equipment is connected with described scrambler, described scrambler is connected with image acquiring device, described projection process instrument is connected with image process units, described image process units is connected with image dispensing device.
Further, described image positioning device one and described image positioning device two include control module, described control module is connected to power module, driver module and memory module, described power module is connected with described driver module, and described driver module is connected with described data dispatch control device.
Further, described image acquiring device comprises storer, and described storer is connected with flush bonding processor, and described flush bonding processor is connected with display module, and described storer is connected with described scrambler.
The beneficial effects of the utility model are: FY-2 geostationary meteorological satellite (GMS) was brought up to 10 minutes to the observation interval of China by 30 minutes, greatly improve moonscope timeliness, effectively support meteorological application; Improve the serviceable life of China's geostationary meteorological satellite (GMS) traffic observation net, give full play to economic benefit and the social benefit of satellite, greatly improve the temporal resolution that geostationary meteorological satellite (GMS) is observed some areas, face weather forecast and local inclement weather system monitoring provides abundant Satellite Observations for short, play a greater role in the preventing and reducing natural disasters of weather forecast and country.
Accompanying drawing explanation
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment below, apparently, accompanying drawing in the following describes is only embodiments more of the present utility model, for those of ordinary skill in the art, under the prerequisite not paying creative work, other accompanying drawing can also be obtained according to these accompanying drawings.
Fig. 1 is the structured flowchart of the weather satellite area observation system described in the utility model embodiment;
Fig. 2 is the image positioning device one of the utility model embodiment or the structured flowchart of described image positioning device two;
Fig. 3 is the structural representation of the image acquiring device of the utility model embodiment.
In figure:
1, operating control device; 2, the first data processing equipment; 3, data dispatch control device; 4, scrambler; 5, attitude determining device; 6, image positioning device one; 7, image positioning device two; 8, projection process instrument; 9, the second data processing equipment; 10, image acquiring device; 11, image process units; 12, image dispensing device.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, be clearly and completely described the technical scheme in the utility model embodiment, obviously, described embodiment is only the utility model part embodiment, instead of whole embodiments.Based on the embodiment in the utility model, the every other embodiment that those of ordinary skill in the art obtain, all belongs to the scope of the utility model protection.
As shown in Figure 1, according to a kind of weather satellite area observation system of the utility model embodiment, comprise data dispatch control device 3, the input end of described data dispatch control device 3 is connected to operating control device 1 and the first data processing equipment 2, the output terminal of described data dispatch control device 3 is connected to scrambler 4, attitude determining device 5, image positioning device 1, image positioning device 27 and projection process instrument 8, described attitude determining device 5, described image positioning device 1 and described image positioning device 27 are connected to the second data processing equipment 9, described second data processing equipment 9 is connected with described scrambler 4, described scrambler 4 is connected with image acquiring device 10, described projection process instrument 8 is connected with image process units 11, described image process units 11 is connected with image dispensing device 12.
With reference to Fig. 2, described image positioning device 1 and described image positioning device 27 include control module, described control module is connected to power module, driver module and memory module, described power module is connected with described driver module, and described driver module is connected with described data dispatch control device 3.
With reference to Fig. 3, described image acquiring device 10 comprises storer, and described storer is connected with flush bonding processor, and described flush bonding processor is connected with display module, and described storer is connected with described scrambler 4.The picture synthesis high dynamic range images that flush bonding processor will obtain, display module makes user can see the effect of high-dynamics image.
During embody rule: timetable telemetry is sent to dispatching control device 3 by operating control device 1, S-VISSR data-track forecast data is sent to dispatching control device 3 by the first data processing equipment 2; S-VISSR data history orbital data, telemetry history exact posture data and history attitude data sequence history orbit parameter are sent to attitude determination equipment, framing computing equipment one and framing computing equipment two by dispatching control device 3 respectively; The track of final forecast and attitude data send to the second data processing equipment 9(broadening parameter to comprise BETA angle etc. by attitude determining device 5, image positioning device 1 and image positioning device 2 7); The broadening information such as BETA angle are sent to S/DB scrambler 4 by the second data processing equipment 9; S/DB scrambler 4 is that S/DB file sends to image acquiring device 10 by the schedule information obtained from dispatching control device 3 with from broadening information processings such as the BETA angles that the second data processing equipment 9 obtains.
In sum, by means of technique scheme of the present utility model, by arranging said structure, make native system that FY-2 geostationary meteorological satellite (GMS) was brought up to 10 minutes to the observation interval of China by 30 minutes, greatly improve moonscope timeliness, effectively support meteorological application; Improve the serviceable life of China's geostationary meteorological satellite (GMS) traffic observation net, give full play to economic benefit and the social benefit of satellite, greatly improve the temporal resolution that geostationary meteorological satellite (GMS) is observed some areas, face weather forecast and local inclement weather system monitoring provides abundant Satellite Observations for short, play a greater role in the preventing and reducing natural disasters of weather forecast and country.
The foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all within spirit of the present utility model and principle, any amendment done, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.
Claims (3)
1. a weather satellite area observation system, it is characterized in that: comprise data dispatch control device (3), the input end of described data dispatch control device (3) is connected to operating control device (1) and the first data processing equipment (2), the output terminal of described data dispatch control device (3) is connected to scrambler (4), attitude determining device (5), image positioning device one (6), image positioning device two (7) and projection process instrument (8), described attitude determining device (5), described image positioning device one (6) and described image positioning device two (7) are connected to the second data processing equipment (9), described second data processing equipment (9) is connected with described scrambler (4), described scrambler (4) is connected with image acquiring device (10), described projection process instrument (8) is connected with image process units (11), described image process units (11) is connected with image dispensing device (12).
2. a kind of weather satellite area observation system according to claim 1, it is characterized in that: described image positioning device one (6) and described image positioning device two (7) include control module, described control module is connected to power module, driver module and memory module, described power module is connected with described driver module, and described driver module is connected with described data dispatch control device (3).
3. a kind of weather satellite area observation system according to claim 1, it is characterized in that: described image acquiring device (10) comprises storer, described storer is connected with flush bonding processor, described flush bonding processor is connected with display module, and described storer is connected with described scrambler (4).
Priority Applications (1)
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CN201520265404.3U CN204595239U (en) | 2015-04-28 | 2015-04-28 | A kind of weather satellite area observation system |
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CN201520265404.3U CN204595239U (en) | 2015-04-28 | 2015-04-28 | A kind of weather satellite area observation system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111552010A (en) * | 2020-04-28 | 2020-08-18 | 杨军 | Satellite remote sensing quick response and visualization service platform for global meteorological disasters |
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2015
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111552010A (en) * | 2020-04-28 | 2020-08-18 | 杨军 | Satellite remote sensing quick response and visualization service platform for global meteorological disasters |
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C14 | Grant of patent or utility model | ||
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150826 Termination date: 20160428 |