Спутник технологический. Nanosat 1B. [Редактировать]

NanoSat – это программа демонстрации наноспутниковых технологий испанского Национального института аэрокосмических технологий, основанная в 1998 году. Основная цель проекта – изучение всех аспектов разработки микро- и нанотехнологий для:

  • создания спутников и приборов;
  • тестирования новых типов магнитных и солнечных датчиков;
  • летных испытаний новых интегральных микросхем и компонентов;
  • демонстрации передачи данных с промежуточной буферизацией;
  • получения опыта работы с наноспутниками и проведения экспериментов в космической среде.

КА NanoSat 1B идентичен NanoSat-1 и предназначен для передачи данных с промежуточной буферизацией.

Дополнительные наименования

#НаименованияПоиск в новостяхПоиск в документах
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Дополнительная классификация

#Наименования
1Страна оператор(владелец) - Испания
2Тип оператора(владельца) - государственный
3Тип орбиты - НОО
4Страна производитель - Испания

Технические характеристики

#ХарактеристикаЗначение
1Масса, кг19
2Мощность, Вт19
3Размеры (ширина), см44
4Размеры (высота), см47

Характеристики орбиты

#ХарактеристикаЗначение
1Наклонение, град98.1
2Апогей, км673.8
3Перигей, км587.4
4Период, минут97.2
5Длинный диаметр эллипса, км7001

Пусковые характеристики

#ХарактеристикаЗначение
1Код NSSDC2009-041E

Информация об удачном запуске

#ХарактеристикаЗначение
1Дата пуска2009-07-29 at 18:46:00 UTC
2Полезная нагрузка 1xDeimos 1
3Полезная нагрузка 1xDubaiSat 1
4Полезная нагрузка 1xDMC 2
5Полезная нагрузка 1xAprizeSat 4
6Полезная нагрузка 1xNanosat 1B
7Полезная нагрузка 1xAprizeSat 3
8Ракета-носитель 1xДнепр

Найдено 140 документов по запросу «Nanosat 1B». [Перейти к поиску]


Дата загрузки: 2017-05-21
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0.03/5
... communications satellite and Europe’s Soyuz 2.1b launch of two Galileo navigation... 7 SSO Success 7/10/14 Soyuz 2.1b Europe O3b 05-08 MEO... Success 12/18/14 Soyuz 2.1b Europe O3b 09-12 MEO... Fregat upper stage for a Soyuz 2.1b failed on orbit shortly after... 1 x RD-107A 2.1a: 1 x RD-0110 2.1b: 1 x RD-0124 1 x S5.92 AO...,161) 2.1a: 297.9 (66,971) 2.1b: 297.9 (66,971) 19.9 (4,474... III XCOR Aerospace 2015-2016 Nanosat Launch Vehcile Garvey Spacecraft TBD... translational flight technologies. Xombie XA-0.1B originally featured four engines with... (tethered) until September 2009. XA-0.1B first flew free of tether.... The company is also developing a Nanosat Launch Vehicle (NLV) for launch... 29E Intelsat 33E Jabiru 1 NBN 1B Sky Brasil 1 Star One D1... - PSLV Kompsat 3A - Dnepr SAOCOM 1B - Falcon 9 Deimos - Dnepr Technology Test... - PSLV Kompsat 3A - Dnepr SAOCOM 1B - Falcon 9 2017 DragonLab - Falcon 9 Deimos... vehicle in 2014. •• SAOCOM-1A, -1B: SAOCOM-1A is part of.... The second Argentine satellite, SAOCOM-1B, will also communicate with Italian... of small satellites in the nanosat mass class. CubeSats are miniaturized... and non-commercial) introduce new nanosat launch opportunities, including those for... TurkSat 1A Ariane 4 DM3 TurkSat 1B Ariane 4 Inmarsat 3F1 Atlas II... 4 DM4 Cakrawarta 1 Ariane 4 DM2 BSat 1B Ariane 4 DM3 Inmarsat 3F4 Ariane... 5 Proton M Protostar II Proton M Sicral 1B Sea Launch DM3 NSS 9 Below... 5 Proton M Astra 2E Proton M Yahsat 1B Proton M Sirius FM6 Proton M Intelsat...-04 AprizeSat 7-8 Soyuz 2.1a Soyuz 2.1b Medium-to-Heavy Medium-to.../09 7/29/09 RazakSat DubaiSat 1 Nanosat 1B GOCE SMOS Proba 2 UGATUSAT7 Falcon... 2 Corot SAR Lupe 1 Rockot Soyuz 2 1B Cosmos Small Medium-to-Heavy... Demo 7/12/06 Genesis 1 Soyuz 2 1B Medium-to-Heavy AprizeStar 3 & 4 deployed.... Communications 23-Mar-14 Soyuz 2.1b Plestesk Cosmos 2494 (Glonass M) MEO... PSLV XL Satish Dhawan IRNSS 1B GEO ISRO ISRO Navigation S S 9-Apr... Defence Forces Odyssey Platform Soyuz 2.1b S $95M S S SSO The Aerospace Corp... HIP 1 Hodoyoshi 3 and 4 KazEOSat 2 * Lemur 1 Nanosat C BR-1 PACE * Perseus M1 and... 8-Jul-14 Soyuz 2.1b Plesetsk Baikonur Soyuz 2.1b Operator Manufacturer Use Comm...-14 13-Aug-14 / \ Soyuz 2.1b 4-Sep-14 VAFB Guiana Space... Communications 30-Nov-14 Soyuz 2.1b 3-Dec-14 5-Dec-14 6-Dec... Thales Alenia Space Communications S S Soyuz 2.1b Guiana Space Center O3b FM9...-14 25-Dec-14 / \ Soyuz 2.1b •• 193 •• Federal Federal Aviation Aviation... Use 26-Dec-14 Soyuz 2.1b Baikonur Resurs P2 SSO Roscosmos...



Дата загрузки: 2017-10-09
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0.03/5
... 18 Jabiru 1 NBN 1A NBN 1B Satellite TBD* SES 9 Mexsat 2 Satellite... 9 CASSIOPE - Falcon 9 Formosat 5 - Falcon 9 SAOCOM 1B - Falcon 9 DubaiSat-3 - Dnepr DubaiSat 2 - Dnepr... INGENIO - TBD DragonLab 1 Falcon 9 SAOCOM 1B Falcon 9 DubaiSat-3 - TBD EnMAP - PSLV... vehicle in 2014. • SAOCOM-1A, -1B: SAOCOM-1A is part of... government civil missions, whereas the nanosat market was dominated by universities... new nanosat launch opportunities, dedicated to launching payloads of the nanosat and... of small satellites in the nanosat mass class. Cubesats are miniaturized...) 4 DM1 Insat 2B DM1 Hispasat 1B DM2 Thaicom 1 NATO 4B Ariane... F5 Thaicom 2 TurkSat 1A TurkSat 1B Orion 1 Galaxy 1R APStar 1 Ariane... Brazilsat B3 Ariane 4 DM2 BSat 1B Ariane 4 DM1 Inmarsat 3F5 Ariane... Palapa D Asiasat 5 Protostar II Sicral 1B 3 Land Launch DM3 NSS 9 Proton... Intelsat 22 SES 4 SES 5 Yahsat 1B Intelsat 19 Intelsat 21 5 DM4.../09 7/29/09 RazakSat DubaiSat 1 Nanosat 1B GOCE SMOS Proba 2 UGATUSAT7 Falcon... 2 Corot SAR Lupe 1 Rockot Soyuz 2 1B Cosmos Small Medium-to-Heavy... Demo 7/12/06 Genesis 1 Soyuz 2 1B Medium-to-Heavy 2007 25... are part of Cornell University’s Nanosat-4 Program. • 91 • Federal Aviation Administration...



Дата загрузки: 2017-01-30
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0.12/5
COMMUNICATIONS NANOSAT 1B COMUNICACIONES ANTARTIDA Orbita NANOSAT 1B Tipo: Polar heliosíncrona Altura: .... Inclinación: 98º Keflavik ANTARCTICA NANOSAT 1B INTA Madrid El Arenosillo Iza... órbita polar el NANOSAT 1B viene a sustituir a su antecesor, el NANOSAT 01, para... polar orbit, the NANOSAT 1B will replace his predecessor, the NANOSAT 01, in... Carga útil de NANOSAT 1B NANOSAT 1B Payload COMUNICACIONES ANTARTIDAANTARCTICA NANOSAT 1B NANOSAT 1B es un nanosatélite, pesa... igual que su antecesor el NANOSAT 01 al que toma el... novedad en su carga útil: NANOSAT 1B it is a nanosatellite that weights... solar cells, like its predecessor NANOSAT 01 to which will replaces... end of his life The NANOSAT 1B new payload includes the following... que se cuenta la serie NANOSAT, como motor de nuevas actividades... en tecnología espacial, en desarrollar nanosatélites, para la demostración en.... Previsión de futuro El Programa NANOSAT contempla el desarrollo de sucesivos... pequeñas plataformas como el NANOSAT 1B se prestan para misiones de... diseño para sistemas espaciales. Los nanosatélites representan una oportunidad de... desarrollo más reducidos. NANOSAT 1B durante el proceso de integración NANOSAT 1B during the integration... Small Satellites Program Including the NANOSAT series, to foster new R&D activities... In the frame of the NANOSAT Program, follow on launching are... as the small platforms like NANOSAT 1B are suitable to accomplish orbital.... Lo incorporarán las futuras misiones NANOSAT y MICROSAT. Basado en las últimas... be incorporated in the future NANOSAT and MICROSAT missions. Based in... de media ganancia NANOSAT 1B en la cámara térmica NANOSAT 1B in the thermal...



Дата загрузки: 2017-09-24
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0.14/5
Geophysical Research Abstracts Vol. 13, EGU2011-6768-2, 2011 EGU General Assembly 2011 © Author(s) 2011 Witnessing variations in the Earth magnetic field by means of Nanosat-1B COTS AMR magnetic sensor Miguel F. Cerdán, Ana B. Fernández, Juan J. Jiménez, and Marina D. Michelena INTA - Instituto Nacional de Técnica Aeroespacial, Laboratorio de Optoelectrónica, Torrejón de Ardoz, Spain (cerdancmf@inta.es) The magnetometer of the attitude control system of NANOSAT-1B, made up of Commercial Off-The-Shelf (COTS) Anisotropic Magnetoresistive (AMR) sensors, could be capable of detecting deviations of the Earth magnetic field coming from some of the different sources. This capability is a secondary objective, since the magnetometer was not designed as a scientific payload, but as a part of the Attitude Control Subsystem (ACS) of the spacecraft. But after the recent in orbit calibration of the magnetic sensors, it seems that we could take advantage of the measurements for scientific purposes as well. This fact can be specially interesting to be used in constellations of small satellites for space weather. 1. INTRODUCTION NANOSAT-1B AMR magnetic sensor is a four axes magnetometer designed for the ACS of the spacecraft. Since the objective of the mission was not formerly scientific, no magnetic cleanliness program was foreseen. As a result, an in-orbit calibration of the sensor had to be performed [1, 2]. Our challenge was to check if we could observe variations in the Earth magnetic field. This purpose is achievable since the magnetic sensors have a precision in the order of 10 nT and thus some of the variations of the Earth’s magnetic field can be observed. The study of space weather at low Earth orbits can add extra information in order to be prepared for contingencies of any kind and preserve our technologies from catastrophes. [3, 4]. 2. DETECTED MAGNETIC SOURCES Making use of the magnetic data obtained since the launch of NANOSAT-1B, and comparing them with the magnetic models (IGRF-11, WMM 2010.0), we could observe some irregularities at certain moments and places. Not every unexpected contribution to the magnetic field would be observable, so we just focused on a few magnetic sources: solar storms, day-night variations and ionospheric events. We try to correlate the measurements that presented a poor fit in the calibration process with the models (differences higher than 50 nT) with the special events registered the days of the measurements, such as solar flares or geomagnetic storms of any kind, and look for some clues in our data. Having a proton monitor (LDT) embarked in NANOSAT-1B [5], we will take advantage of its measurements to search for a fine correlation between events and collected data. 3. RESULTS In both cases, the comparisons resulted in a success. The effects of these external magnetic sources were actually detected by our magnetometer, validating not only the COTS components but also the calibration method itself. This new capability opens up a wide range of new space missions, cheaper and more efficient, that could have a profit from a lower investment. 4. REFERENCES [1] M.D.Michelena, I.Arruego, J.M.Oter, H.Guerrero, “COTS-Based Wireless magnetic sensor for small satellites”, IEEE Transactions on Aerospace and Electronic Systems 46 2 542-557, April 2010. [2] M.D.Michelena, M.F.Cerdán, I.Arruego, “Nanosat-01: three years of mission. Scientific magnetic results”, Sensor Letters, Vol. 7, 412-415, 2009. [3] H.Iglsedera, W.Arens-Fischerb and W.Wolfsberger, "Small satellite constellations for disaster detection and monitoring", Advances in Space Research, volume 15, Issue 11, 1995, Pages 79-85. [4] Chio-Zong Frank Cheng, Ying-Hwa Kuo, "Satellite Constellation Monitors Global and Space Weather", EOS, Transactions American Geophysical Union, vol. 87, No. 17, P. 166, 2006. [5] J.J.Jiménez, J.M.Oter, V.Apéstigue, I.Arruego, S.Ibarmia, S.Esteve, J.Sánchez-Páramo, W.Hajdas, C.Hernando, M.T.Álvarez, H.Guerrero, “Las Dos Torres: A Radiation Monitor for NANOSAT 1B”, NSREC 2010, July 19-23, 2010, Denver, Colorado. Poster Late News PHL5.



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Geophysical Research Abstracts Vol. 13, EGU2011-6330-1, 2011 EGU General Assembly 2011 © Author(s) 2011 In orbit calibration of COTS AMR magnetic sensor Miguel F. Cerdán and Marina D. Michelena INTA - Instituto Nacional de Técnica Aeroespacial, Laboratorio de Optoelectrónica, Torrejón de Ardoz, Spain (cerdancmf@inta.es) Calibration of a vector magnetic sensor implies the determination of the three gain factors, the three offsets, the three Euler angles and the three non-orthogonality angles. This task is developed on ground and corrected with temperature when necessary, but the calibration is subject to non desired changes when a magnetic cleanliness program [1] has not been followed at mission level and the fully assembled spacecraft is exposed to medium to high magnetic fields. In this work we report on a method for the in-orbit calibration of a commercial off-the-shelf anisotropic magnetoresistive (COTS AMR) magnetometer for the attitude control system of NANOSAT-1B spacecraft. 1. INTRODUCTION The use of constellations of small satellites for topics as space weather is becoming more and more popular among the scientific community. One of the needed payloads on board such satellites is magnetic sensors. Since it is not always possible to deploy the magnetometers or to have a control on the magnetic parts of the satellites, a method to in-orbit calibrate the magnetic sensors can be very useful. In this work we report on a method to calibrate a COTS AMR sensor on board NANOSAT-1B satellite of INTA. The nanosatellite consists in a single body and the magnetic sensor belongs to the Attitude Control System (ACS). In this case, the magnetometer is not deployed and it is exposed to the resulting magnetic field generated by the remanent magnetization of the satellite. The COTS sensors have followed an upscreening process and they were in-orbit validated by a previous mission NANOSAT-01 [2,3]. 2. FIRST STAGE: CALIBRATING THE OFFSET The calibration process needs to determine the equation which gives the magnetic field as a function of the output values of the sensor [4]. In the case of NANOSAT-1B the experimental vector magnetic field needs to be calculated in the reference system of the satellite prior to be able to make any comparison. The method to in-orbit calibrate the magnetometer relies on the fact that magnetic models (IGRF-11, WMM 2010.0) can be used to fit the experimental data to a good approximation (down to 10 nT, which is about the minimum detectable by these COTS sensors). To do so, we firstly focus on the offsets error, the major expected change: a programme has been developed, based on iterative steps, checking those which best fit the model. This work has been done with selected measurements in order to avoid external contributions and be able to focus on the calibration. The selected measurements are concentrated in August 2010 at mid-latitudes. A common correcting offset has been found for all the measurements in this period, which minimizes the mean absolute deviation between the model and experimental data down to 160nT. The work is fully useful for NANOSAT-1B attitude control system purposes. However, for space weather purposes, further work needs to be done with the fit of the other parameters of the calibration. 3. REFERENCES [1] M. Ludlam, V. Angelopoulos et al., “The THEMIS Magnetic Cleanliness Program”, Space Sci Rev (141) 171–184, 2008. [2] Michelena, M.D.; Arruego, I. Oter J.M.; Guerrero, H., “COTS-Based Wireless magnetic sensor for small satellites”, IEEE Transactions on Aerospace and Electronic Systems 46 2 542-557, April 2010. [3] Michelena, M.D.; Cerdán, M.F.; Arruego, I., “Nanosat-01: three years of mission. Scientific magnetic results”, Sensor Letters, Vol. 7, 412-415, 2009. [4] N. Olsen, L. Tøffner-Clausen, T. J. Sabaka, P. Brauer, J.M.G.Merayo, J. L. Jørgensen, “Calibration of the Ørsted vector magnetometer” Earth Planets Space, 55, 11–18, 2003.



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0.09/5
... of the Spanish nano-satellite NANOSAT-1B. This device is made of... already been integrated in the NANOSAT-1B platform that has been successfully...) in order to fulfill the NANOSAT-1B mission requirements. The sensor combines... ). in the Spanish nano-satellite NANOSAT-1B that has been launched in... years. The main purpose of NANOSAT platform series is the demonstration... been designed to satisfy the NANOSAT-1B mission requirements, that means, an... the necessary life-cycle of NANOSAT-1B mission (see [20] for details... Model (FM model) of the NANOSAT-1B satellite. (b) A detail of one of... orbit radiation conditions of the NANOSAT-1B mission, without observing any degradation... structure and functionality. Fig. 14. NANOSAT-1B satellite body with the location... Payload of Spanish nano-satellite NANOSAT-1B (see Fig. 13), manufactured by... in the Spanish nano-satellite NANOSAT-1B that has been successfully launched... our sun sensors in the NANOSAT-1B satellite. REFERENCES [1] X. S. Ge and L. Q. Chen...), IMaX a Solar magnetospectometer, and INTA NANOSAT satellites. 1632 Ana Gras received... was appointed PM of the Nanosat-1 satellite (19 Kg), finally launched... orbit the follow-on mission Nanosat-1B (24 Kg), launched by a Dnepr...



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...) qualified ant tested at INTA NANOSAT-1 18 Dec. 2004 19 Kg... IO-MEM 2nd GENERATION COMPARISON NANOSAT-2 Improvements: • More compact & better volume... • Spacewire use is TBC • Some Nanosat-1 Units • Enhanced ACS with 3-axes... Tracker Nanosat-1B International SpaceWire Conference Sep. 17 – 19 2007 Dundee, Scotland Nanosat-2 COMPARISON WITH NANOSAT-1 4 monopoles UHF Antenna S-Band... of the Ariane-5 separation mechanism Nanosat-1B International SpaceWire Conference Sep. 17... Antennas Nanosat-2 INTAmSat Programme 17 Sep 07 3 years life objective NanoSat-1 in orbit Phase-E NanoSat-1B planning 18 Dec 07... for FM) Engineering Model for Nanosat-1B mission (40-80 Kbps), that... LAUNCH WITH ARIANE-5 OR VEGA NANOSAT-1 (INTA) PARASOL (CNES) 4 ESSAIM (DGA... 17 Sep 07 CONCLUSIONS (1 of 2)  Nanosat is a well established programme at... experiments are running OK in Nanosat-1, in orbit since 18 Dec... company in Barcelona (Rx-Tx).  Nanosat-1B is a sister satellite, that will... store and forward communication mission.  Nanosat-2 is an improved new generation... principles and development rules of Nanosat, together with the acquired know...



Дата загрузки: 2017-04-24
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0.08/5
... 29E Intelsat 33E Jabiru 1 NBN 1B Sky Brasil 1 Star One D1... - PSLV Kompsat 3A - Dnepr SAOCOM 1B - Falcon 9 Deimos - Dnepr Technology Test... - PSLV Kompsat 3A - Dnepr SAOCOM 1B - Falcon 9 Deimos - Dnepr • 61 • 2017... vehicle in 2014. • SAOCOM-1A, -1B: SAOCOM-1A is part of.... The second Argentine satellite, SAOCOM-1B, will also communicate with Italian... of small satellites in the nanosat mass class. Cubesats are miniaturized... and non-commercial) introduce new nanosat launch opportunities, including those for... TurkSat 1A Ariane 4 DM3 TurkSat 1B Koreasat Ariane 4 Inmarsat 3F1 Atlas... 4 DM4 Cakrawarta 1 Ariane 4 DM2 BSat 1B Ariane 4 DM3 Inmarsat 3F4 Ariane... 5 Proton M Protostar II Proton M Sicral 1B Sea Launch DM1 Satcom BW2... 5 Proton M Astra 2E Proton M Yahsat 1B Proton M Sirius FM6 Proton M Intelsat...-04 AprizeSat 7-8 Soyuz 2.1a Soyuz 2.1b Medium-to-Heavy Medium-to.../09 7/29/09 RazakSat DubaiSat 1 Nanosat 1B GOCE SMOS Proba 2 UGATUSAT7 Falcon... 2 Corot SAR Lupe 1 Rockot Soyuz 2 1B Cosmos Small Medium-to-Heavy... Demo 7/12/06 Genesis 1 Soyuz 2 1B Medium-to-Heavy 2006 5 6 7 F AprizeStar... 2 Corot SAR Lupe 1 Rockot Soyuz 2 1B Cosmos Small Medium-to-Heavy...



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0.05/5
... 18 Jabiru 1 NBN 1A NBN 1B Satellite TBD* SES 9 Mexsat 2 Satellite... 9 CASSIOPE - Falcon 9 Formosat 5 - Falcon 9 SAOCOM 1B - Falcon 9 DubaiSat-3 - Dnepr DubaiSat 2 - Dnepr... INGENIO - TBD DragonLab 1 Falcon 9 SAOCOM 1B Falcon 9 DubaiSat-3 - TBD EnMAP - PSLV... vehicle in 2014. • SAOCOM-1A, -1B: SAOCOM-1A is part of... government civil missions, whereas the nanosat market was dominated by universities... new nanosat launch opportunities, dedicated to launching payloads of the nanosat and... of small satellites in the nanosat mass class. Cubesats are miniaturized...) 4 DM1 Insat 2B DM1 Hispasat 1B DM2 Thaicom 1 NATO 4B Ariane... F5 Thaicom 2 TurkSat 1A TurkSat 1B Orion 1 Galaxy 1R APStar 1 Ariane... Brazilsat B3 Ariane 4 DM2 BSat 1B Ariane 4 DM1 Inmarsat 3F5 Ariane... Palapa D Asiasat 5 Protostar II Sicral 1B 3 Land Launch DM3 NSS 9 Proton... Intelsat 22 SES 4 SES 5 Yahsat 1B Intelsat 19 Intelsat 21 5 DM4.../09 7/29/09 RazakSat DubaiSat 1 Nanosat 1B GOCE SMOS Proba 2 UGATUSAT7 Falcon... 2 Corot SAR Lupe 1 Rockot Soyuz 2 1B Cosmos Small Medium-to-Heavy... Demo 7/12/06 Genesis 1 Soyuz 2 1B Medium-to-Heavy 2007 25... are part of Cornell University’s Nanosat-4 Program. • 91 • Federal Aviation Administration...



Дата загрузки: 2017-05-20
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0.09/5
... de vuelo – NanoSat 01: software de vuelo y mantenimiento – NanoSat 1b: software de vuelo....srg.uah.es) 7 SRG-UAH: NanoSat 01 y Nanosat 1B (INTA) • Desarrollo completamente espa... sensores  NanoSat 01 Lanzado por Ariane 5 en diciembre de 2004 y Nanosat 1B el...