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DubaiSat-1

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1378: 887: 923: 871: 839: 604: 907: 460: 855: 646:. The RF equipment is used to communicate with the satellite. It receives X-band RF signals and performs RF processing. It also produces a demodulated and bit-synchronized data stream from X-band signals. In general, its purpose is to transmit imaging orders and command the satellite through the S-band transmitter feed; receive information and health status from the satellite through the S-band receiver feed; and download the images through the X-band feed. 820: 452: 29: 591:, rails, an inner ring that provides rigidity and stability of the satellite's camera, inner rods and three decks. Three spacecraft adaptors connect with shear brackets and mechanically couple the satellite and separation adaptor of the launch vehicle, the Dnepr rocket. Each one of the spacecraft adaptors has separation 783:
regions have their own specific and unique characteristics and vulnerabilities that require special attention when adapting existing remote sensing tools efficiently. Satellite imaging helps monitor and improve management of the world's agricultural resources. Multispectral images contribute by
670:. The IRPS receives and processes the X-band downlink data in real-time. This includes generation of standard image products and catalogues for integration with system management; for archive management; and for comprehensive user interface to provide easy access to satellite image data. 673:
The IRPS is located at MBRSC's ground station in Dubai. It has a direct interface with the main mission control station and it generates schedule requests which includes imaging and download schedules. It also archives image and ancillary data for product generation and distribution.
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cannot be captured by ground measurements alone, making remote sensing an important tool in environmental monitoring. The sun-synchronous orbit of DubaiSat-1 merges with data from geostationary missions to provide enhancements on existing models.
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Satellite imagery provides an alternative way of looking at the world. It can add significant incremental data useful in a wide range of applications. The high-resolution spatial images can complement the existing
575:. These devices measure the current-voltage characteristics of the satellite. Subsequent analysis will allow measurements of the amount of cumulative ionizing dose, and of the total ionizing dose of the devices. 595:
to monitor the separation condition between the satellite and the launch vehicle. The umbilical connector attaches on the lower surface of the bottom deck with its mounting support bracket.
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Additionally, due to their low precipitation rates, arid regions are the world's major source of atmospheric dust that affects local, regional and
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to determine how to tackle rescue and recovery efforts in the wake of catastrophic natural, or even man-made, events. In the aftermath of the
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for humans, and adversely affect climate on regional and worldwide scales. Remote sensing is a demonstrably valuable tool for detecting,
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are underlined. Launch failures are marked with the † sign. Payloads deployed from other spacecraft are (enclosed in parentheses).
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and remote sensing research in the region, and for supporting different scientific disciplines in private and academic sectors.
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development, urban planning, and environment monitoring and protection. DubaiSat-1 images are also useful for promoting
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Launches are separated by dots ( • ), payloads by commas ( , ), multiple names for the same satellite by slashes ( / ).
1019: 854: 2375: 1536: 1364: 2210: 1400: 877: 724: 502: 411: 56: 2040: 1874: 550:, a focal plane assembly, and a Signal Processing Module. The Payload Management Subsystem consists of the 195: 1673: 1383: 1079: 1816: 1710: 1282: 584: 2244: 2240: 1486: 2092: 1057: 689: 73: 63: 913: 845: 716: 494: 2139: 2131: 1699: 1446: 1025:. Emirates Institution for Advanced Science and Technology. pp. V196–V199. Archived from 1754: 1464: 1456: 428: 259: 2318: 929: 893: 797: 1938: 8: 1820: 1575: 1564: 1560: 1478: 479: 432: 286: 191: 2223: 1914: 1528: 825: 538:
with one panchromatic and four multi-spectral imaging channels. It also consists of an
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from the charged particles at the orbits of satellites. The instrument utilizes four
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From the Mission Control Station, MBRSC staff plan and operate the entire
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The satellite accommodates two main payloads. The primary payload is the
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Many environmental and meteorological events such as vegetation stress,
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DubaiSat-1 images support infrastructure development in the UAE and the
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For example, DubaiSat-1 images have been used, to monitor progress on
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The following are some of the satellite images taken by DubaiSat-1:
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p-type Metal-Oxide-Semiconductor Field Effects Transistors (MOSFETs)
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also used DubaiSat-1 images to monitor relief efforts following the
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DubaiSat-1 was launched on 29 July 2009 into a 680 km altitude
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monitoring land use, generating vegetation indices, and monitoring
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region. These images assist decision makers involved in
1351: 1305:"DubaiSat-1 Transmit images from Mirny Mine in Russia" 583:
DubaiSat-1 has a hexagonal body with three deployable
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An external view of DubaiSat-1 and coordinate system.
1373: 1221:"DubaiSat-1 sends first series of images from space" 815: 763:. Dust and sand storms create potentially hazardous 1102:"DubaiSat-1's pyramid image dedicated to Egyptians" 808:teams determine and manage the scale of the event. 439:, along with several other satellites on board the 527:, and the secondary and experimental payload, the 1134:. Satrec Initiative. pp. 1–5. Archived from 1050: 2357: 666:The third component of the ground system is the 1126: 587:. The frame includes spacecraft adaptors, six 1544: 1337: 1269: 1267: 1127:Choi, Young-Wan; et al. (October 2009). 682: 668:Image Receiving and Processing Station (IRPS) 1275:"DubaiSat-1 images help UN efforts in Japan" 1246:"DubaiSat-1 images help UN efforts in Japan" 796:Satellite images are useful tools to assist 607:The ground station components of DubaiSat-1. 598: 618: 1551: 1537: 1344: 1330: 1264: 1017: 649: 27: 2371:Space program of the United Arab Emirates 1013: 1011: 1009: 1007: 1005: 1003: 1001: 999: 997: 973: 971: 602: 458: 450: 1120: 463:DubaiSat-1's DMAC Mechanical Structure. 420:, a satellite manufacturing company in 2358: 1240: 1238: 1215: 1213: 1044: 948: 946: 662:Image Receiving and Processing Station 546:. The Electro-Optical Subsystem has a 1532: 1325: 1297: 1184: 1182: 1153: 994: 968: 611:MBRSC's Ground Station is located in 2381:Spacecraft launched by Dnepr rockets 977: 1235: 1210: 943: 804:, MBRSC applied DubaiSat-1 to help 525:Dubai Medium Aperture Camera (DMAC) 399: 332:Dubai Medium Aperture Camera (DMAC) 13: 1352:United Arab Emirates space program 1179: 1094: 1051:Hamilton, Charlie (29 July 2009). 802:tsunami in Japan on March 11, 2011 791: 638:feed, an S-band receiver feed, an 514:2011 Tōhoku earthquake and tsunami 14: 2392: 1365:United Arab Emirates Space Agency 1307:. UAE Interact. 29 September 2011 1223:. Dubai Chronicle. 10 August 2009 627:consists of a Viasat 11.28 metre 33:An artist rendering of DubaiSat-1 1401:Mohammed bin Rashid Space Centre 1376: 921: 905: 885: 878:Al Maktoum International Airport 869: 853: 837: 818: 730: 725:Al Maktoum International Airport 503:Al Maktoum International Airport 478:(black-and-white) and at 5 m in 412:Mohammed bin Rashid Space Centre 57:Mohammed bin Rashid Space Centre 1281:. 29 March 2011. Archived from 677: 556:Mass storage and Control Module 1072: 954:"DUBAISAT 1 Satellite Details" 75: 1: 937: 690:geographic information system 529:Space Radiation Monitor (SRM) 89:6 years and 22 days 1018:Al Rais, Adnan; et al. 578: 544:Payload Management Subsystem 7: 2366:Spacecraft launched in 2009 1384:United Arab Emirates portal 446: 429:Sun-synchronous polar orbit 407:Earth observation satellite 16:Earth observation satellite 10: 2397: 1161:"DubaiSat-1 Space Segment" 914:Ferrari World in Abu Dhabi 811: 683:Infrastructure development 173:29 July 2009, 18:46:00 UTC 144:1200 x 1200 mm (hexagonal) 2339: 2279: 2203: 2159: 2055: 2003: 1902: 1867: 1792: 1737: 1692: 1625: 1583: 1495: 1487:Space Imaging Middle East 1477: 1455: 1437: 1409: 1393: 1371: 1357: 599:Ground Station Components 540:Electro-Optical Subsystem 385: 381: 371: 336: 328: 323: 319: 315: 305: 295: 285: 275: 265: 255: 245: 240: 236: 232: 224: 219: 215: 211: 201: 187: 177: 169: 164: 160: 156: 148: 140: 132: 118: 106: 101: 97: 93: 85: 72: 62: 52: 42: 38: 26: 2376:Earth imaging satellites 2093:Universitetsky-Tatyana-2 982:. Jonathan's Space Pages 701:urban and rural planning 625:Antenna and RF subsystem 619:Antenna and RF Subsystem 552:Thermal and Power Module 536:pushbroom imaging system 470:observes the earth at a 416:under an agreement with 1465:Emirates Mars Mission ( 717:Dubai World Megaproject 650:Mission Control Station 563:Space Radiation Monitor 1447:Emirates Lunar Mission 848:in Dubai by DubaiSat-1 775:such events. However, 608: 464: 456: 798:disaster relief teams 642:receiver feed, and a 606: 462: 454: 246:Reference system 102:Spacecraft properties 1567:Orbital launches in 1167:on 17 September 2012 978:McDowell, Jonathan. 930:United Arab Emirates 894:The Pyramids of Giza 1479:Private spaceflight 928:Satellite image of 912:Satellite image of 892:Satellite image of 876:Satellite image of 860:Satellite image of 844:Satellite image of 567:total ionizing dose 534:The DMAC system is 23: 1285:on 26 January 2012 1141:on 28 January 2015 826:Spaceflight portal 609: 465: 457: 353:510-580 nm (green) 241:Orbital parameters 21: 2351: 2350: 1526: 1525: 1518:Nora Al Matrooshi 1513:Mohammad Al Mulla 1503:Hazza Al Mansouri 631:incorporating an 418:Satrec Initiative 389: 388: 348:420-510 nm (blue) 123:Satrec Initiative 2388: 1755:Kwangmyŏngsŏng-2 1572: 1571: 1570: 1553: 1546: 1539: 1530: 1529: 1508:Sultan Al Neyadi 1386: 1381: 1380: 1379: 1346: 1339: 1332: 1323: 1322: 1317: 1316: 1314: 1312: 1301: 1295: 1294: 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50: 49: 47:Remote sensing 44: 40: 39: 36: 35: 32: 15: 9: 6: 4: 3: 2: 2393: 2382: 2379: 2377: 2374: 2372: 2369: 2367: 2364: 2363: 2361: 2354: 2345: 2338: 2332: 2329: 2327: 2326: 2322: 2320: 2317: 2315: 2311: 2308: 2306: 2302: 2298: 2295: 2293: 2290: 2288: 2285: 2284: 2282: 2278: 2272: 2269: 2267: 2266:IGS Optical 3 2264: 2262: 2259: 2257: 2254: 2252: 2249: 2246: 2242: 2238: 2237: 2233: 2231: 2230:Shijian 11-01 2228: 2225: 2221: 2218: 2216: 2212: 2209: 2208: 2206: 2202: 2196: 2192: 2189: 2187: 2184: 2182: 2179: 2177: 2174: 2172: 2168: 2165: 2164: 2162: 2158: 2152: 2151: 2147: 2145: 2141: 2137: 2133: 2130: 2128: 2124: 2120: 2116: 2112: 2108: 2104: 2101: 2099: 2096: 2094: 2090: 2086: 2085:SumbandilaSat 2082: 2078: 2074: 2073:Meteor-M No.1 2071: 2069: 2066: 2064: 2063:USA-207 / PAN 2061: 2060: 2058: 2054: 2048: 2045: 2042: 2041:Leonardo MPLM 2038: 2037: 2033: 2031: 2028: 2026: 2022: 2019: 2017: 2014: 2012: 2009: 2008: 2006: 2002: 1996: 1992: 1988: 1984: 1980: 1976: 1973: 1971: 1970:Progress 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Retrieved 862:Palm Islands 831: 795: 758: 734: 721:Palm Islands 697:Persian Gulf 694: 686: 678:Applications 672: 667: 665: 653: 624: 622: 610: 585:solar panels 582: 570: 562: 560: 555: 551: 543: 539: 533: 528: 524: 522: 507: 499:Palm Islands 492: 476:panchromatic 467: 466: 426: 410: 391: 390: 363:760-890 nm ( 360: 355: 350: 345: 340: 225:Last contact 119:Manufacturer 43:Mission type 18: 2305:Kosmos 2458 2301:Kosmos 2457 2297:Kosmos 2456 2271:Intelsat 15 2261:Eutelsat W7 2256:Intelsat 14 2251:Kosmos 2455 2176:WorldView-2 2144:STSS-Demo 2 2136:STSS-Demo 1 2127:SwissCube-1 1995:AprizeSat-4 1991:AprizeSat-3 1961:Kosmos 2454 1923:Kosmos 2453 1919:Kosmos 2452 1915:Kosmos 2451 1910:TerreStar-1 1894:Sirius FM-5 1826:ProtoStar 2 1784:Kosmos 2450 1679:Telstar 11N 1657:Hot Bird 10 1439:Lunar rover 1250:UN - SPIDER 773:forecasting 765:air quality 636:transmitter 488:geosciences 422:South Korea 375:2.5 m (Pan) 337:Wavelengths 324:Main camera 287:Inclination 196:Site 109/95 188:Launch site 170:Launch date 133:Launch mass 127:South Korea 2360:Categories 2331:DirecTV-12 2319:Helios IIB 2171:COMSATBw-1 2167:Amazonas-2 2103:Oceansat-2 1987:Nanosat-1B 1975:DubaiSat-1 1943:AggieSat 2 1852:Meridian 2 1839:AeroCube-3 1760:Compass-G2 1496:Astronauts 1429:KhalifaSat 1424:DubaiSat-2 1419:DubaiSat-1 1411:Satellites 1394:Facilities 938:References 745:sandstorms 501:, and the 468:DubaiSat-1 437:Kazakhstan 392:DubaiSat-1 372:Resolution 343:420-720 nm 250:Geocentric 202:Contractor 141:Dimensions 68:2009-041B 22:DubaiSat-1 2314:Xi Wang 1 2245:ExPRESS-2 2241:ExPRESS-1 2123:ITU-pSat1 2111:Rubin 9.2 2107:Rubin 9.1 2056:September 2011:AsiaSat 5 1884:MEASAT-3a 1843:HawkSat-1 1835:PharmaSat 1774:SICRAL 1B 1669:Spirale-B 1665:Spirale-A 1195:Gulf News 846:The World 781:semi arid 709:utilities 589:longerons 579:Structure 548:telescope 495:The World 431:from the 400:دبي سات-1 152:330 watts 64:COSPAR ID 2310:Yaogan 8 2292:Yaogan 7 2280:December 2204:November 2115:BeeSat-1 2089:UGATUSAT 2081:Sterkh-2 2047:Palapa-D 2030:STSat-2A 2025:Optus D3 2021:JCSAT-RA 1983:UK-DMC 2 1979:Deimos-1 1928:RazakSAT 1831:TacSat-3 1817:Herschel 1779:Yaogan 6 1684:Raduga-1 1626:February 1469:orbiter) 1311:8 August 1289:5 August 1256:5 August 1227:5 August 1202:5 August 1171:5 August 1145:5 August 1112:5 August 1086:5 August 1064:5 August 1036:5 August 980:"SATCAT" 960:5 August 753:droughts 723:and the 554:and the 542:and the 447:Overview 433:Baikonur 377:5 m (MS) 192:Baikonur 53:Operator 2287:USA-211 2236:STS-129 2215:PROBA-2 2186:USA-210 2160:October 2140:USA-209 2132:USA-208 2098:Nimiq 5 2036:STS-128 2016:USA-206 1934:STS-127 1889:GOES 14 1811:STS-125 1800:USA-205 1765:RISAT-2 1750:USA-204 1722:USA-203 1706:STS-119 1638:NOAA-19 1612:Sohla-1 1595:Orion 6 1591:USA-202 1584:January 812:Gallery 769:mapping 713:mapping 593:sensors 414:(MBRSC) 402:) is a 74:SATCAT 2195:NSS-12 2191:Thor 6 2004:August 1955:Pollux 1951:Castor 1947:BEVO-1 1939:JEM-EF 1879:LCROSS 1821:Planck 1769:ANUSAT 1711:ITS S6 1700:Kepler 1576:2010 → 1561:← 2008 1082:. NASA 956:. N2YO 640:X-band 633:S-band 396:Arabic 297:Period 291:98.13° 281:681 km 271:666 km 256:Regime 178:Rocket 136:190 kg 113:SI-200 81:35682 2224:Poisk 2119:UWE-2 2077:BLITS 2068:HTV-1 1738:April 1693:March 1661:NSS-9 1608:SDS-1 1604:Kukai 1600:Ibuki 1139:(PDF) 1132:(PDF) 1106:Zawya 1030:(PDF) 1023:(PDF) 986:3 May 898:Egypt 613:Dubai 518:Japan 441:Dnepr 307:Epoch 182:Dnepr 149:Power 2211:SMOS 1903:July 1868:June 1717:GOCE 1633:Omid 1569:2009 1467:Hope 1313:2012 1291:2012 1258:2012 1229:2012 1204:2012 1173:2012 1147:2012 1114:2012 1088:2012 1066:2012 1038:2012 988:2018 962:2012 779:and 777:arid 771:and 751:and 711:and 623:The 561:The 508:The 361:MS4: 356:MS3: 351:MS2: 346:MS1: 341:Pan: 329:Name 1875:LRO 1847:CP6 1793:May 1674:OCO 737:fog 516:in 108:Bus 76:no. 2362:: 2312:, 2303:, 2299:, 2243:, 2213:, 2193:, 2169:, 2142:/ 2138:, 2134:/ 2125:, 2121:, 2117:, 2113:, 2109:, 2105:, 2091:, 2087:, 2083:, 2079:, 2075:, 2023:, 1993:, 1989:, 1985:, 1981:, 1977:, 1963:, 1953:, 1949:, 1945:, 1941:, 1921:, 1917:, 1877:, 1845:, 1841:, 1837:, 1833:, 1819:, 1767:, 1667:, 1663:, 1659:, 1650:, 1610:, 1606:, 1602:, 1593:/ 1277:. 1266:^ 1248:. 1237:^ 1212:^ 1192:. 1181:^ 1104:. 1055:. 996:^ 970:^ 945:^ 896:, 788:. 747:, 743:, 739:, 727:. 719:, 707:, 703:, 558:. 531:. 520:. 505:. 424:. 398:: 194:, 125:, 2247:) 2239:( 2226:) 2222:( 2043:) 2039:( 1957:) 1937:( 1713:) 1709:( 1552:e 1545:t 1538:v 1345:e 1338:t 1331:v 1315:. 1293:. 1260:. 1231:. 1206:. 1175:. 1149:. 1116:. 1090:. 1068:. 1040:. 990:. 964:. 394:( 367:)

Index


Remote sensing
Mohammed bin Rashid Space Centre
COSPAR ID
SATCAT no.
Bus
SI-200
Satrec Initiative
South Korea
Dnepr
Baikonur
Site 109/95
ISC Kosmotras
Geocentric
Sun-Synchronous
Perigee altitude
Apogee altitude
Inclination
Period
Epoch
near infrared
Arabic
remote sensing
Earth observation satellite
Mohammed bin Rashid Space Centre
Satrec Initiative
South Korea
Sun-synchronous polar orbit
Baikonur
Kazakhstan

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