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Satellites

Webpages concerning "Satellites"

Observing Iridium flashes - a spectacular new phenomena in the sky
http://www.assa.org.au/observing/iridium/
Keywords:
iridium, flares, flashes, satellite, satellites, motorola, prediction, astronomical, society, of, south, australia, assa, astronomical society, astronomical, astronomy, adelaide, space, south australia, southern cross, amateur astronomy, amateur astronomers, stars

http://www.assa.org.au/observing/iridium/

Images and video of ISS, Amateur astronomy, Remote imaging, Satellite images, Webcam astro imaging, LX-200
http://www.astrospider.com/
Keywords:
ISS, IMAGES, VIDEO, REMOTE, SATELLITE, G6GAK, LX-200, WEBCAM, UK, CHESHIRE, TYRRELL, MASDING, QCUIAG

http://www.astrospider.com/

This is the place to be if you want to watch rocket launches while they happen, view meteor showers, or to see satellites as they fly past us in orbit. No telescopes or binoculars necessary!
http://www.socal-skylights.org/
Keywords:
rockets, launch vehicles, satellites, sattelites, iridium, glints, flares, contrails, vandenberg, california, san diego, los angeles, southern california, orange county, santa barbara, pasadena, fallbrook, riverside, san bernardino, socal, space, skylights, meteor, meteors, meteorites, meteor shower, perseids, leonids, comets

http://www.socal-skylights.org/

Welcome to Terry's Pet Help,pets Care,Veterinarians,Terry's Pet Help,See satellites, ISS,Space Shuttle fly by your house,FREE Pet samples,Locate Lost Pets animals and cats dogs
http://www.home.earthlink.net/~w0dfi/index.html
Keywords:
dogs, pets, doggy, puppy training resources, K9, canine breeds, pets, cats, animals, mars missions, pet help, cat care, petsmart, fundoggys yahoo group, terry's pet help, the falcon's nest, canines, Space, satellites, free pets stuff, doggy treats, dog books, one, click, top, 10, submit

http://www.home.earthlink.net/~w0dfi/index.html

track satellite pass info your area,listen to mission with police scanners, see space station,ham radio frequencies,see ISS over your house,the falcons nest,space space satellite tracking
http://home.earthlink.net/~w0dfi/2nd.html
Keywords:
shuttle discovery, telescopes, pcsat2, international space station, ham radio frequencies, see, ISS, over, your, house, track, satellite, pass, info, for, your, area, amateur radio notes

http://home.earthlink.net/~w0dfi/2nd.html

Visual Satellite Observation in Maryland.
http://hometown.aol.com/mir16609/
Keywords:
satellite, space, space station, shuttle, mir, maryland, satellite observation, launch

http://hometown.aol.com/mir16609/

Everything about amateur radio in space, satellites and radioamateur communication in space, ariss, live tv, Frank De Winne etc...
http://users.belgacom.net/hamradio/sat-info.htm
Keywords:
satellites, satellieten, radioamateur, hamradio, software, space, information, Nasa live tv, sarex, amsat, weather images, fo-20, fo-29, pcsat, iss, ariss, belgian, astronaut, Frank, De, Winne

http://users.belgacom.net/hamradio/sat-info.htm

Visual Satellite Observer's Home Page provides information for observing earth satellites.
http://www.satobs.org/
Keywords:
earth satellites, observing satellites, satellites, elements, tles, satellite predictions, VSOHP

http://www.satobs.org/

http://www.orbitessera.com
Keywords:
keplerian, keps, orbit, orbits, satellite, tracking, space, shuttle, mir, amateur radio, frequency, vec2tle, software, two-line element, oscar, orbitessera, n2wwd, ernandes, phase 3d, amsat, tle format, sgp, sgp4, state vector, kepler's laws, stsplus

http://www.orbitessera.com

http://tiger.census.gov/cgi-bin/mapbrowse-tbl

http://tiger.census.gov/cgi-bin/mapbrowse-tbl

http://www.hq.nasa.gov/osf/station/viewing/issvis.html

http://www.hq.nasa.gov/osf/station/viewing/issvis.html

http://www.planet4589.org/space/jsr/jsr.html

http://www.planet4589.org/space/jsr/jsr.html

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Wikipedia-Article "Satellites"

For other uses, see Satellite (disambiguation).

A satellite is any object that orbits another object (which is known as its primary). All masses that are part of the solar system, including the Earth, are satellites either of the Sun, or satellites of those objects, such as the Moon.

It is not always a simple matter to decide which is the 'satellite' in a pair of bodies. Because all objects exert gravity, the motion of the primary object is also affected by the satellite. If two objects are sufficiently similar in mass, they are generally referred to as a binary system rather than a primary object and satellite; an extreme example is the 'double asteroid' 90 Antiope. The general criterion for an object to be a satellite is that the center of mass of the two objects is inside the primary object.

In popular usage, the term 'satellite' normally refers to an artificial satellite (a man-made object that orbits the Earth or another body). However, scientists may also use the term to refer to natural satellites, or moons.

This article is primarily concerned with artificial satellites. See natural satellite for information on moons.

Contents

Artificial satellites

History of artificial satellites

The Russian Venera 7 satellite
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The Russian Venera 7 satellite

In May, 1946, the Preliminary Design of an Experimental World-Circling Spaceship stated, "A satellite vehicle with appropriate instrumentation can be expected to be one of the most potent scientific tools of the Twentieth Century. The achievement of a satellite craft would produce repercussions comparable to the explosion of the atomic bomb..." (see: Project RAND)

The space age began in 1946, as scientists began using captured German V-2 rockets to make measurements in the upper atmosphere.[1] Before this period, scientists used balloons that went up to 30 km and radio waves to study the ionosphere. From 1946 to 1952, upper-atmosphere research was conducted using V-2s and Aerobee rockets. This allowed measurements of atmospheric pressure, density, and temperature up to 200 km. (see also: magnetosphere, Van Allen radiation belt)

The U.S. had been considering launching orbital satellites since 1945 under the Bureau of Aeronautics of the United States Navy. The Air Force's Project RAND eventually released the above report, but did not believe that the satellite was a potential military weapon; rather they considered it to be a tool for science, politics, and propaganda. In 1954, the Secretary of Defense stated, "I know of no American satellite program."

Following pressure by the American Rocket Society, the National Science Foundation, and the International Geophysical Year, military interest picked up and in early 1955 the Air Force and Navy were working on Project Orbiter, which involved using a Jupiter C rocket to launch a small satellite called Explorer 1 on January 31, 1958.

On July 29, 1955, the White House announced that the U.S. intended to launch satellites by the spring of 1958. This became known as Project Vanguard. On July 31, the Soviets announced that they intended to launch a satellite by the fall of 1957 and on October 4, 1957 Sputnik I was launched into orbit, which triggered the Space Race between the two nations.

The largest artificial satellite currently orbiting the earth is the International Space Station, which can sometimes be seen with the unaided human eye.

Types of satellites

Astronomical satellites are satellites used for observation of distant planets, galaxies, and other outer space objects.

Communications satellites are artificial satellites stationed in space for the purposes of telecommunications using radio at microwave frequencies. Most communications satellites use geosynchronous orbits or near-geostationary orbits, although some recent systems use low Earth-orbiting satellites.

Earth observation satellites are satellites specifically designed to observe Earth from orbit, similar to reconnaissance satellites but intended for non-military uses such as environmental monitoring, meteorology, map making etc. (See especially Earth Observing System.)

Navigation satellites are satellites which use radio time signals transmitted to enable mobile receivers on the ground to determine their exact location. The relatively clear line of sight between the satellites and receivers on the ground, combined with ever-improving electronics, allows satellite navigation systems to measure location to accuracies on the order of a few metres in real time.

Reconnaissance satellites are Earth observation satellite or communications satellite deployed for military or intelligence applications. Little is known about the full power of these satellites, as governments who operate them usually keep information pertaining to their reconnaissance satellites classified.

Solar power satellites are proposed satellites built in high Earth orbit that use microwave power transmission to beam solar power to very large antenna on Earth where it can be used in place of conventional power sources.

Space stations are man-made structures that are designed for human beings to live on in outer space. A space station is distinguished from other manned spacecraft by its lack of major propulsion or landing facilities — instead, other vehicles are used as transport to and from the station. Space stations are designed for medium-term living in orbit, for periods of weeks, months, or even years.

Weather satellites are satellites that primarily are used to monitor the weather and/or climate of the Earth.

Miniaturized satellites are satellites of unusually low weights and small sizes. New classifications are used to categorize these satellites: minisatellite (500–200 kg), microsatellite (below 200 kg), nanosatellite (below 10 kg).

Orbit types

Many times satellites are characterized by their orbit. Although a satellite may orbit at almost any height, satellites are commonly categorized by their altitude:


The following orbits are special orbits that are also used to categorize satellites:

  • Molniya orbits
  • Heliosynchronous or sun-synchronous orbit
  • Polar orbit
  • LTO lunar transfer orbit
  • Hohmann transfer orbit For this particular orbit type, it is more common to identify the satellite as a spacecraft.
  • Supersynchronous orbit or drift orbit - orbit above GEO. Satellites will drift in a westerly direction.
    • (GEO + 235 km + (1000 × CR × A/m) km)
      • where CR is the solar pressure radiation coefficient (typically between 1.2 and 1.5) and A/m is the aspect area [m2] to dry mass [kg] ratio
  • Subsynchronous orbit or drift orbit - orbits close to but below GEO. Used for satellites undergoing station changes in an eastern direction.

Satellites can also orbit libration points.

Countries with satellite launch capability

This list includes counties with an independent capability to place satellites in orbit, including production of the necessary launch vehicle. Many more countries have built satellites that were launched with the aid of others. The French and British capabilities are now subsumed by the European Union under the European Space Agency.

First launch by country
Country Year of first launch First satellite
Flag of Russia Russia (formerly the Soviet Union) 1957 "Sputnik 1"
Flag of United States United States 1958 "Explorer 1"
Flag of France France 1965 "Astérix"
Flag of Japan Japan 1970 "Osumi"
Flag of People's Republic of China China 1970 "Dong Fang Hong I"
Flag of United Kingdom United Kingdom 1971 "Prospero X-3"
Flag of European Union European Union 1979 "Ariane 1"
Flag of India India 1980 "Rohini"
Flag of Israel Israel 1988 "Ofeq 1"
Flag of Ukraine Ukraine  ? "?"
Flag of Iran Iran 2005 "Sina 1"

In 1998, North Korea claimed to have launched a satellite, but this was never confirmed, and widely believed to be a cover for the test launch of the Taepodong-1 missile over Japan (See Kwangmyongsong).

See also

A satellite in museum
Enlarge
A satellite in museum


Meteorological instrumentation and equipment

Anemometer | Barograph | Barometer | Ceiling balloon | Ceiling projector | Ceilometer | Dark adaptor goggles | Disdrometer | Doppler radar | Hygrometer | Ice Accretion Indicator | METAR Reports | Radiosonde | Rain gauge | Satellite | Snow gauge | Stevenson screen | Sunshine recorders | Thermograph | Thermometer | Weather balloon | Weather satellite | Weather vane

edit

Reference

  1. ^  Hess, Wilmot (1968). The Radiation Belt and Magnetosphere.

External links

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