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US20140046598A1 - Weather forecast data distribution system and method - Google Patents

Weather forecast data distribution system and method
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Publication number
US20140046598A1
US20140046598A1US14/059,242US201314059242AUS2014046598A1US 20140046598 A1US20140046598 A1US 20140046598A1US 201314059242 AUS201314059242 AUS 201314059242AUS 2014046598 A1US2014046598 A1US 2014046598A1
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United States
Prior art keywords
earth
data
weather forecast
broadcast
artificial
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US14/059,242
Inventor
Masaya Mine
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NEC Space Technologies Ltd
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NEC Space Technologies Ltd
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Publication date
Application filed by NEC Space Technologies LtdfiledCriticalNEC Space Technologies Ltd
Priority to US14/059,242priorityCriticalpatent/US20140046598A1/en
Publication of US20140046598A1publicationCriticalpatent/US20140046598A1/en
Assigned to NEC SPACE TECHNOLOGIES, LTD.reassignmentNEC SPACE TECHNOLOGIES, LTD.CHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: NEC TOSHIBA SPACE SYSTEMS, LTD.
Abandonedlegal-statusCriticalCurrent

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Abstract

An artificial satellite receives a broadcast signal transmitted from a broadcast transmitter. The broadcast signal is relayed towards earth by the artificial satellite. On-earth stations receive the broadcast signal. The artificial satellite receives response signals, to the broadcast signal, from the on-earth stations, respectively. Each response signal includes at least position data of the respective on-earth station. The response signals from the on-earth stations are evaluated to generate both a local and wide-area weather forecast. The artificial satellite distributes the local and wide-area weather forecast towards the earth. Each response signal may also include an amount of attenuation caused between the artificial satellite and each on-earth station, respectively.

Description

Claims (12)

What is claimed is:
1. A method of distributing weather forecast data from an artificial broadcast or communication satellite comprising:
receiving a source signal from an on-earth transmission station;
relaying the source signal towards the earth without using any on-earth network;
receiving response signals from a plurality of on-earth receiving stations, the response signals comprising at least position data of the respective on-earth receiving station;
evaluating the response signals from the plurality of on-earth receiving stations to generate both a local and wide-area weather forecast; and
distributing the local and wide-area weather forecast towards the earth from the artificial broadcast or communication satellite.
2. The method of distributing weather forecast data according toclaim 1, wherein each response signal further comprises an amount of attenuation caused between the artificial broadcast or communication satellite and each of the plurality of on-earth receiving stations, respectively.
3. The method of distributing weather forecast data according toclaim 1, wherein the evaluating is carried out in part by the artificial broadcast or communication satellite, and the method further comprising:
transmitting the response signal from each of the plurality of on-earth receiving stations to a weather forecast center by the artificial broadcast or communication satellite; and
transmitting the partial evaluation to the weather forecast center; and
receiving, at the artificial broadcast or communication satellite the local and wide-area weather forecast, from the weather forecast center generated based upon the response signal from each of the plurality of on-earth receiving stations and the partial evaluation.
4. The method of distributing weather forecast data according toclaim 3, wherein the local and wide-area weather forecast is generated by taking data other than receiving state data into consideration, and wherein the data other than receiving state data includes at least one of temperature data and humidity data in an area in which a respective on-earth station is located, the at least one of temperature data and humidity data obtained by the respective on-earth station.
5. The method of distributing weather forecast data according toclaim 4, wherein the at least one of temperature data and humidity data is included in the response signal when an on-earth station located at a distance greater than a predetermined distance from a weather forecast center.
6. The method of distributing weather forecast data according toclaim 2, wherein the local and wide-area weather forecast is generated by taking data other than receiving state data into consideration, and wherein the data other than receiving state data includes at least one of temperature data and humidity data in an area in which a respective on-earth station is located, the at least one of temperature data and humidity data obtained by the respective on-earth station.
7. An artificial broadcast or communication satellite for forecasting weather data comprising:
a first receiver configured to receive a source signal from an on-earth transmission station;
a first transmitter configured to relay the source signal towards the earth without using any on-earth network;
a second receiver configured to receive response signals from a plurality of on-earth receiving stations, the response signals comprising at least position data of the respective on-earth receiving station;
a processor configured to evaluate the response signals from the plurality of on-earth receiving stations to generate both a local and wide-area weather forecast; and
a second transmitter configured to distribute the local and wide-area weather forecast towards the earth.
8. The artificial broadcast or communication satellite according toclaim 7, wherein each response signal further comprises an amount of attenuation caused between the artificial broadcast or communication satellite and each of the plurality of on-earth receiving stations, respectively.
9. The artificial broadcast or communication satellite according toclaim 8, wherein the local and wide-area weather forecast is generated by taking data other than receiving state data into consideration, and wherein the data other than receiving state data includes at least one of temperature data and humidity data in an area in which a respective on-earth station is located, the at least one of temperature data and humidity data obtained by the respective on-earth station.
10. A broadcast or communication satellite system comprising:
a source feed transmitter configured to transmit at least one of broadcast and communication source feed;
an artificial satellite configured for at least one of broadcast and communication transmission without using any on-earth networks;
a plurality of on-earth stations provided on the earth, wherein the artificial satellite receives the transmitted at least one of broadcast and communication source feed and relays the at least one of broadcast and communication source feed towards earth as a transmission wave,
each of the plurality of on earth stations receives the transmission wave, and transmits a response signal comprising position data of the on-earth station and data indicating an amount of attenuation between the artificial satellite and each of the plurality of on-earth stations, respectively, and
wherein the artificial satellite receives each of the response signals and evaluates the response signals from the plurality of on-earth receiving stations to generate both a local and wide-area weather forecast, and distributes the local and wide-area weather forecast towards the earth.
11. The broadcast or communication satellite system according toclaim 10, wherein the on-earth station is an existing on-earth terminal for at least one of broadcast and communication system that is originally installed for a purpose other than weather forecast.
12. The broadcast or communication satellite system according toclaim 10, wherein each response signal further comprises an amount of attenuation caused between the artificial broadcast or communication satellite and each of the plurality of on-earth receiving stations, respectively.
US14/059,2422004-04-302013-10-21Weather forecast data distribution system and methodAbandonedUS20140046598A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US14/059,242US20140046598A1 (en)2004-04-302013-10-21Weather forecast data distribution system and method

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
JP2004135888AJP2005318398A (en)2004-04-302004-04-30 Weather information distribution device
JP135888/20042004-04-30
US11/117,971US8589581B2 (en)2004-04-302005-04-29Weather forecast data distributing system and method
US14/059,242US20140046598A1 (en)2004-04-302013-10-21Weather forecast data distribution system and method

Related Parent Applications (1)

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US11/117,971ContinuationUS8589581B2 (en)2004-04-302005-04-29Weather forecast data distributing system and method

Publications (1)

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US20140046598A1true US20140046598A1 (en)2014-02-13

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US11/117,971Expired - Fee RelatedUS8589581B2 (en)2004-04-302005-04-29Weather forecast data distributing system and method
US14/059,242AbandonedUS20140046598A1 (en)2004-04-302013-10-21Weather forecast data distribution system and method

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US11/117,971Expired - Fee RelatedUS8589581B2 (en)2004-04-302005-04-29Weather forecast data distributing system and method

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US (2)US8589581B2 (en)
EP (1)EP1592150B1 (en)
JP (1)JP2005318398A (en)

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WO2017157439A1 (en)*2016-03-172017-09-21Siemens AktiengesellschaftMethod for determining an atmospheric condition, and application for predicting energy production, and evaluation device
US20220187499A1 (en)*2017-11-032022-06-16The Tomorrow Companies Inc.Real-time data pipeline techniques for improving a fast weather forecasting system

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US9229132B2 (en)2011-07-052016-01-05International Business Machines CorporationMeteorological parameter forecasting
DE112011106040T5 (en)*2011-12-272014-09-11Intel Corporation Satellite signal based power grid control
KR101869488B1 (en)*2016-11-162018-06-20이승재System and method for fog detection
KR101976310B1 (en)*2018-01-062019-05-07인제대학교 산학협력단judgment method of weather deterioration with radio wave attenuation
CN108897072B (en)*2018-05-152020-10-16北京维艾思气象信息科技有限公司Cloud quantity numerical forecasting method and forecasting system for business remote satellites
CN108957594B (en)*2018-05-152021-01-15北京维艾思气象信息科技有限公司Method and system for forecasting and correcting total cloud amount of satellite orbit
JP7614180B2 (en)*2019-08-222025-01-15シグニファイ ホールディング ビー ヴィ How to detect air conditions in an area via multiple devices

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US11988805B2 (en)*2017-11-032024-05-21The Tomorrow Companies Inc.Real-time data pipeline techniques for improving a fast weather forecasting system

Also Published As

Publication numberPublication date
US8589581B2 (en)2013-11-19
JP2005318398A (en)2005-11-10
EP1592150B1 (en)2013-08-21
EP1592150A3 (en)2011-09-14
EP1592150A2 (en)2005-11-02
US20050246103A1 (en)2005-11-03

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Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:NEC SPACE TECHNOLOGIES, LTD., JAPAN

Free format text:CHANGE OF NAME;ASSIGNOR:NEC TOSHIBA SPACE SYSTEMS, LTD.;REEL/FRAME:036787/0346

Effective date:20150515

STCBInformation on status: application discontinuation

Free format text:ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION


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