ITU-R S 1758-2006 Characterization of HEO-type systems in the fixed-satellite service《卫星固定业务中的地球高轨道类型系统的描述》.pdf
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1、 Rec. ITU-R S.1758 1 RECOMMENDATION ITU-R S.1758 Characterization of HEO-type systems in the fixed-satellite service (2006) Scope This Recommendation characterizes high Earth orbit (HEO)-type fixed-satellite service (FSS) systems for the purpose of sharing studies. It intends to provide administrati
2、ons with information on HEO-type FSS systems for use in sharing studies with other types of non-GSO FSS systems, with GSO FSS networks, and with systems and networks in other services allocated on a co-primary basis with the FSS. The information includes items such as orbit characteristics, active a
3、rc, repeating grounds tracks, antennas of associated earth stations, elevation angles, handovers and angular discrimination from the GSO arc. The ITU Radiocommunication Assembly, considering a) that fixed-satellite service (FSS) frequency bands may be used by both geostationary-satellite orbit (GSO)
4、 satellite networks and non-GSO satellite systems in accordance with the Radio Regulations (RR); b) that most of these FSS bands are also shared with terrestrial services; c) that high Earth orbit (HEO) type satellite systems characterized in this Recommendation are non-GSO systems; d) that the char
5、acteristics of the interference caused to GSO networks by most HEO-type FSS systems are due to the fact that their service links operate only in active arcs which maintain a large separation angle with respect to GSO links; e) that HEO-type FSS systems can provide services to high-latitude regions w
6、ith higher elevation angles than GSO FSS networks; f) that HEO-type FSS systems have a potential to increase the utilization of FSS bands without adding to the congestion of the GSO; g) that it would be helpful for administrations to have a source of information on HEO-type FSS systems for use in sh
7、aring studies with other types of non-GSO FSS systems, with GSO FSS networks, and with systems and networks in other services allocated on a co-primary basis with the FSS, recognizing a) that several HEO-type satellite systems have successfully been operating in the FSS for many years; b) that recen
8、tly additional HEO-type FSS systems have been communicated to the ITU BR; c) that the ITU-R has been and is continuing study of the interference effects of HEO-type FSS satellites on FS receivers taking into account the characteristics of HEO-type FSS satellites; 2 Rec. ITU-R S.1758 d) that ITU-R Re
9、commendations regarding HEO-type FSS systems have been established and are being developed, but common characterizations and references for HEO-type FSS systems do not yet exist; e) that there may be differences between the characterization of HEO-type FSS systems and HEO-type systems in some other
10、radiocommunication services, recommends 1 that the term “HEO” should be used to refer to the types of non-GSO FSS systems that are generally characterized in 1 of Annex 1 to this Recommendation; 2 that the material in Annex 1 to this Recommendation should be used in sharing studies involving HEO-typ
11、e FSS systems. Annex 1 Characteristics of HEO-type FSS satellite systems 1 General characteristics of HEO FSS satellites and HEO FSS satellite systems An HEO-type FSS satellite system is a non-GSO system that includes a satellite or satellites using an elliptical orbit with all the following orbital
12、 and operational characteristics: A geosynchronous period (23 h 56 min) multiplied by m/n, where m and n are integers, resulting in n apogees every m days. The ratio m/n may be less than, equal to, or greater than 1 (thereby having a fixed ground track that repeats every m days) resulting in the fol
13、lowing three kinds of orbits: Geosynchronous HEO: an HEO with an orbital period of 23 h and 56 min (m/n = 1). Sub-geosynchronous HEO: an HEO with a geosynchronous period multiplied by m/n less than one (e.g. 11 h and 58 min, 5 h and 59 min, etc.). Super-geosynchronous HEO: an HEO with a geosynchrono
14、us period multiplied by m/n larger than one (e.g. 47 h and 52 min, etc.). An inclination between 35 and 145. An apogee altitude that is at least 18 000 km. Service carrier transmissions other than telemetry and command carrier transmissions are confined to one or more active arc or arcs within an or
15、bit as described fully in 1.1. The term “HEO” is used to identify this type of orbit. Many variations in an HEO system design and operation are possible. These variations arise because HEO systems have different missions or a different optimization criteria. Examples of characteristics that differ f
16、rom system to system are frequencies; the size of the service area; minimum elevation angles; use of full-motion, limited-tracking, or fixed earth terminal antennas; the size of the active arcs; the number of satellites that operate simultaneously; and the number of active arcs within which a satell
17、ite operates. Rec. ITU-R S.1758 3 Constellations of HEO satellites with adjustable spot beams are likely to have service areas within the coverage zone that correspond to high elevation angles to the active satellite, except in such cases as HEO systems designed to provide wide east-west service at
18、northern latitudes. Typical HEO FSS satellite systems share some or all of the following specific operational features: 1.1 Active arc Except for space operations functions, each satellite in an HEO FSS satellite system operates only during a specific portion of its orbit known as the active arc. Al
19、l service carrier transmissions in the FSS to and from a particular HEO satellite for the FSS are ceased whenever that satellite is outside of its active arc. Depending on the orbit period, the active arc portion of the orbit will recur over one or more locations on the Earth. In the case of nearly
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