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Articles Published by Ken Dunn
Dunway Enterprises

Satellite Radio or Subscription Radio (SR) Satellite Radio Satellite Radio Signal Free Satellite Radio

Wikipedia, the free encyclopedia

A satellite radio or subscription radio (SR) is a digital radio signal that is broadcast by a communications satellite, which covers a much wider geographical range than terrestrial radio signals.

For now, satellite radio offers a meaningful alternative to ground-based radio services in some countries, notably the United States. Mobile services, such as Sirius, XM, and Worldspace, allow listeners to roam across an entire continent, listening to the same audio programming anywhere they go. Other services, such as Music Choice or Muzak's satellite-delivered content, require a fixed-location receiver and a dish antenna. In all cases, the antenna must have a clear view to the satellites. In areas where tall buildings, bridges, or even parking garages obscure the signal, repeaters can be placed to make the signal available to listeners.

Radio services are usually provided by commercial ventures and are subscription-based. The various services are proprietary signals, requiring specialized hardware for decoding and playback. Providers usually carry a variety of news, weather, sports, and music channels, with the music channels generally being commercial-free.

In areas with a relatively high population density, it is easier and less expensive to reach the bulk of the population with terrestrial broadcasts. Thus in the UK and some other countries, the contemporary evolution of radio services is focused on Digital Audio Broadcasting (DAB) services or HD Radio, rather than satellite radio.

Sirius Satellite Radio overview

Together with XM Radio, Sirius Satellite Radio is one of the two main providers of digital radio broadcasting in the United States. Sirius Satellite Radio currently broadcasts on over 120 channels with a variety of broadcasts including music, talk shows, news broadcasts and different other forms of audio entertainment.

Sirius Satellite Radio covers the entire US territory. The high quality of the broadcasting signal produced by using the most advanced digital encoding technology makes the transmission clear and accurate. The fidelity of the sound transmitted digitally is much better than any analog radio provider can offer. The noise disturbances often associated to FM and AM broadcasts are now eliminated and the transmission is clear and almost identical in quality with the original track.

Sirius Satellite Radio holds one of the two FCC approved licenses for delivering digital radio in the United States. The digital radio broadcaster only shares the field of Satellite Digital Audio Radio Services (SDARS) with Sirius XM Satellite Radio Inc.

Here is some more information on the Sirius company:

Corporate headquarters: New York City, New York
Date of launch: July 1, 2002
Satellites in service: 3
Available satellite radio channels:120
Monthly subscription cost:$12.95

Sirius Satellite Radio is truly an impressive corporation. Located in the heart of New York City with a huge recording studio situated in the Rockefeller Center, Sirius Satellite Radio has a huge library of over 2 million music tracks. The quality of the transmission is very high as it is in the 128kb/sec format – which is similar to CD audio quality. The company uses digitized signals through the PAC encoding technology, providing high fidelity broadcasts all over the United States.

The Sirius satellite:

The three Loral SS/L-1300 commercial satellites used by Sirius deliver constant digital radio broadcasting to Sirius’ subscribers. As with most commercial satellites, the Loral SS/L-1300s orbit above the Earth at 22 300 miles. Very similar to XMs satellites, the Loral SS/L-1300 commercial satellites have a more inclined orbit which allows them to cover an even more extended area. The elevation angle of 60 degrees is more generous than the regular 45 degrees used by geostationary satellites.

Since one of the most problematic aspects of satellite radio broadcasting is the line of sight – which can be easily interrupted by landscape or buildings – the Loral SS/L-1300 commercial satellites have a slight advantage over their competitors, since they have a clearer line of sight. The three satellites used for broadcasting slowly orbit around the Earth and only two of them are functional at any time. This is because Sirius only has two transmission frequencies and by alternating satellite transmission they can eliminate interferences while also having a spare satellite to put to use in case something goes wrong with one of the others.

The 3 satelites take turns broadcasting – when one of them leaves the footprint of the continental U.S. another picks up the broadcasting transmission. Since the more inclined orbit provides better coverage, Canada and Mexico are also well covered by the digital broadcasting. This is an interesting feature of the Sirius satellite radio, as it enhances the benefit of not having to switch radio stations during long trips or while traveling outside US borders.

Sirius has also announced a collaboration with the Canadian Broadcasting Corporation and Standard Radio Inc. This would allow anyone in Canada to benefit from Sirius’ services while using any of the Canadian English and French channels.

Sirius broadcasting:

Because the broadcast signal used in satellite radio transmission is so strong, you only need a small receiver in order to be able to listen to it. By using small omni-directional antennas you can take your digital radio programs wherever you are – either on the road or at home. The technology used is similar to GPS devices and the receivers don’t require pointing.

Some of the new features of satellite radio refer to the extended broadcast information abilities, and the transmission can supply information on artist, music title or genre. One of the developments Sirius is working on is streaming video broadcasting – something that will probably become available to the general public soon after the technology and broadcasting methods become secure enough.

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