High-throughput Satellite
   HOME

TheInfoList



OR:

A high-throughput satellite (HTS) is a
communications satellite A communications satellite is an artificial satellite that relays and amplifies radio telecommunication signals via a Transponder (satellite communications), transponder; it creates a communication channel between a source transmitter and a Rad ...
which provides more
throughput Network throughput (or just throughput, when in context) refers to the rate of message delivery over a communication channel in a communication network, such as Ethernet or packet radio. The data that these messages contain may be delivered ov ...
than a classic
fixed service satellite Fixed-satellite service (FSS, or fixed-satellite radiocommunication service) is – according to ''article 1.21'' of the International Telecommunication Union, International Telecommunication Union's (ITU) ITU Radio Regulations, Radio Regulations ...
(FSS). An HTS provides at least twice, though usually 20 times or more, throughput for the same amount of allocated orbital spectrum, thus significantly reducing cost-per-bit. ViaSat-1 and EchoStar XVII (also known as Jupiter-1) provide more than 100 Gbit/s of capacity, which is more than 100 times the capacity offered by a conventional FSS satellite. When it was launched in October 2011, ViaSat-1 had more capacity (140 Gbit/s) than all other commercial communications satellites over North America combined.


Overview

The significant increase in capacity is achieved by a high level frequency re-use and spot beam technology which enables frequency re-use across multiple narrowly focused spot beams (usually in the order of hundreds of kilometers), as in cellular networks, which both are defining technical features of high-throughput satellites. By contrast traditional satellite technology utilizes a broad single beam (usually in the order of thousands of kilometers) to cover wide regions or even entire continents. In addition to a large amount of bandwidth capacity HTS are defined by the fact that they often, but not solely, target the consumer market. In the last 10 years, the majority of high-throughput satellites operated in the Ka band (26.5–40 
GHz The hertz (symbol: Hz) is the unit of frequency in the International System of Units (SI), often described as being equivalent to one event (or Cycle per second, cycle) per second. The hertz is an SI derived unit whose formal expression in ter ...
), however this is not a defining criterion, and at the beginning of 2017 there were at least 10 Ku band (12–16 GHz) HTS satellite projects, of which 3 had launched and 7 were in construction. Initially, HTS systems used satellites in the same
geosynchronous A geosynchronous orbit (sometimes abbreviated GSO) is an Earth-centered orbit with an orbital period that matches Earth's rotation on its axis, 23 hours, 56 minutes, and 4 seconds (one sidereal day). The synchronization of rotation and orbital ...
orbit (at an altitude of 35,786 km) as
satellite TV Satellite television is a service that delivers television programming to viewers by relaying it from a communications satellite orbiting the Earth directly to the viewer's location.ITU Radio Regulations, Section IV. Radio Stations and Systems ...
craft (with satellites such as KA-SAT, Yahsat 1A and Astra 2E sharing TV and HTS functionality) but the round-trip delay for
internet protocol The Internet Protocol (IP) is the network layer communications protocol in the Internet protocol suite for relaying datagrams across network boundaries. Its routing function enables internetworking, and essentially establishes the Internet. IP ...
transmission via a geosynchronous satellite can exceed 550 ms which is detrimental to many digital connectivity applications, such as automated stock trades, on-line gaming and
Skype Skype () was a proprietary telecommunications application operated by Skype Technologies, a division of Microsoft, best known for IP-based videotelephony, videoconferencing and voice calls. It also had instant messaging, file transfer, ...
video chats. and the focus for HTS is increasingly shifting to the lower
Medium Earth orbit A medium Earth orbit (MEO) is an geocentric orbit, Earth-centered orbit with an altitude above a low Earth orbit (LEO) and below a high Earth orbit (HEO) – between above sea level.
(MEO) and
Low Earth orbit A low Earth orbit (LEO) is an geocentric orbit, orbit around Earth with a orbital period, period of 128 minutes or less (making at least 11.25 orbits per day) and an orbital eccentricity, eccentricity less than 0.25. Most of the artificial object ...
(LEO), with altitudes as low as 600 km and delays as short as 40ms. Also, the lower
path loss Path loss, or path attenuation, is the reduction in power density (attenuation) of an electromagnetic wave as it propagates through space. Path loss is a major component in the analysis and design of the link budget of a telecommunication system. ...
es of MEO and LEO orbits reduces ground station and satellite power requirements and costs, and so vastly increased throughput and global coverage is achieved by using
constellations A constellation is an area on the celestial sphere in which a group of visible stars forms a perceived pattern or outline, typically representing an animal, mythological subject, or inanimate object. The first constellations were likely defin ...
of many smaller, cheaper high-throughput satellites. SES's
O3b O3b is a satellite constellation in Medium Earth orbit (MEO) owned and operated by SES, and designed to provide lower-latency broadband connectivity to remote locations for mobile network operators and internet service providers, maritime, av ...
constellation was the first MEO high-throughput satellite system, launched in 2013, and by 2018 more than 18,000 new LEO satellites had been proposed to launch by 2025. Despite the higher costs associated with spot beam technology, the overall cost per circuit is considerably lower as compared to shaped beam technology. While Ku band FSS bandwidth can cost well over $100 million per gigabit per second in space, HTS like ViaSat-1 can supply a gigabit of throughput in space for less than $3 million. While a reduced cost per bit is often cited as a substantial advantage of high-throughput satellites, the lowest cost per bit is not always the main driver behind the design of an HTS system, depending on the industry it will be serving. HTS are primarily deployed to provide broadband Internet access service (point-to-point) to regions unserved or underserved by terrestrial technologies where they can deliver services comparable to terrestrial services in terms of pricing and bandwidth. While many current HTS platforms were designed to serve the consumer broadband market, some are also offering services to government and enterprise markets, as well as to terrestrial cellular network operators who face growing demand for broadband backhaul to rural
cell site A cell site, cell phone tower, cell base tower, or cellular base station is a cellular frequencies, cellular-enabled mobile device site where antenna (electronics), antennas and electronic communications equipment are placed (typically on a Rad ...
s. For cellular backhaul, the reduced cost per bit of many HTS platforms creates a significantly more favorable economic model for wireless operators to use satellite for cellular voice and data backhaul. Some HTS platforms are designed primarily for the enterprise, telecom or maritime sectors. HTS can furthermore support point-to-multipoint applications and even broadcast services such as DTH distribution to relatively small geographic areas served by a single spot beam. A fundamental difference between HTS satellites is the fact that certain HTS are linked to ground infrastructure through a feeder link using a regional spot beam dictating the location of possible teleports while other HTS satellites allow the use of any spot beam for the location of the teleports. In the latter case, the teleports can be set up in a wider area as their spotbeams' footprints cover entire continents and regions like it is the case for traditional satellites . Industry analysts at Northern Sky Research believe that high-throughput satellites will supply at least 1.34 TB/s of capacity by 2020 and thus will be a driving power for the global satellite backhaul market which is expected to triple in value – jumping from the 2012 annual revenue of about US$800 million to $2.3 billion by 2021.


List of high-throughput satellites

* Anik F2 (July 2004) * Thaicom 4 (IPSTAR) (August 2005) * Spaceway-3 (August 2007) *
WINDS Wind is the natural movement of atmosphere of Earth, air or other gases relative to a planetary surface, planet's surface. Winds occur on a range of scales, from thunderstorm flows lasting tens of minutes, to local breezes generated by heatin ...
(February 2008) * KA-SAT (December 2010) * Yahsat 1A (April 2011) * ViaSat-1 (October 2011) * Yahsat 1B (April 2012) * EchoStar XVII (July 2012) * HYLAS 2 (July 2012) * Astra 2E (September 2013) *
O3b O3b is a satellite constellation in Medium Earth orbit (MEO) owned and operated by SES, and designed to provide lower-latency broadband connectivity to remote locations for mobile network operators and internet service providers, maritime, av ...
satellite constellation (2013-2014) * Inmarsat Global Xpress constellation (2013-2015) * Sky Muster 1 (NBN Co-1A) (30 September 2015) * Badr-7 for TRIO Connect (November 2015) * Intelsat 29e (2016) * Intelsat 33e (2016) * Sky Muster 2 (NBN Co-1B) (5 October 2016) * SGDC (4 May 2017) *
SES-15 SES-15 is a geostationary orbit, geostationary communications satellite operated by SES (company), SES and designed and manufactured by Boeing Satellite Systems. It has a mass of and has a design life of at least 15 years. See also * SES (c ...
(May 2017) * ViaSat-2 (June 2017) * Intelsat 32e (2017) * Intelsat 37e (2017) * Intelsat 35e (2017) * Eutelsat 172B (2017) * GSAT-19 (2017) * Shijian 13 (12 April 2017) * SES-14 (January 2018) * Yahsat-3 (25 January 2018) * SES-12 (June 2018) * GSAT-29 (14 November 2018) * GSAT-11 (5 December 2018) * Nusantara Satu (22 February 2019) * Kacific-1 (17 December 2019) * Eutelsat Konnect (16 January 2020) * SES-17 (24 October 2021) * Eutelsat Konnect VHTS (07 September 2022) *
O3b mPOWER O3b mPOWER is a communications satellite system owned and operated by SES. The system uses high-throughput and low- latency satellites in a medium Earth orbit (MEO), along with ground infrastructure and intelligent software, to provide multip ...
satellite constellation (16 December 2022) * ChinaSat 26 (23 February 2023)


See also

* Fixed-satellite service


References

{{Satcomm, state=uncollapsed * Broadband Satellite Internet access Satellite broadcasting