ITU-R TF 767-2-2001 Use of Global Navigation Satellite Systems for High-Accuracy Time Transfer《全球导航卫星系统高精确度的时间传递》.pdf
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1、Rec. ITU-R TF.767-2 1 RECOMMENDATION ITU-R TF.767-2 Use of global navigation satellite systems for high-accuracy time transfer (Question ITU-R 152/7) (1992-1998-2001) The ITU Radiocommunication Assembly, considering a) levels over intercontinental distances; the need for operational time transfer an
2、d comparison at the highest possible accuracy b) that there is a growing worldwide need for inexpensive time transfers to accuracies less than 1 ps, which are fully automatic (in particular, capable of resuming synchronization after power losses without human intervention) and which possess adequate
3、 characteristics with respect to reliability, availability and cost; c) at levels of less than 100 ns; the demonstrated capabilities of satellite techniques for providing time transfer accuracies d) the advantages offered by the Global Positioning System (GPS) in terms of current availability of mul
4、tiple satellites, the system of 24 satellites providing continuous global coverage for time transfers, and the strong commitment to monitoring and control of the system. The precisely known relationship between GPS system time and coordinated universal time (UTC), the use of on-board atomic standard
5、s, and the availability of numerous commercial sources for GPS timing receivers; e) transfer over many years; the extensive favourable experience gained from the wide use of GPS satellites for time f) liaison between the GPS system and civil users; the establishment of a Civil GPS Service Interface
6、Committee to provide information and g) the technical capabilities to intentionally degrade the accuracy of the GPS signals that are available to general civil users through the use of selective availability (SA) and anti-spoofing (AS) techniques (see Annex 1); h) the demonstrated technical feasibil
7、ity of at least partially compensating for the adverse effects on time-transfer accuracy related to selective availability and anti-spoofing procedures by use of the GPS common-view technique, averaging the received timing signals over one or more days, using a weighted average across several satell
8、ites, or use of delayed precise satellite position information; j) that the Global Navigation Satellite System (GLONASS) is a comparable system to GPS; k) that Satellite Based Augmentation Systems (SBASs), such as the Wide Area Augmentation System (WAAS), European Geostationary Navigation Overlay Sy
9、stem (EGNOS) and the Multi- function Transportation Satellite (MTSAT) satellite-based augmentation system are anticipated to have similar important utility, 2 recommends Rec. ITU-R TF.767-2 1 that the use of GPS, GLONASS and SBAS satellites for worldwide time transfer and comparison be seriously con
10、sidered, particularly in those applications requiring global coverage and accuracy levels of less than 1 ps; 2 that the GPS and GLONASS common-view time-transfer technique be seriously considered for applications requiring accuracies in the range of 10-100 ns; that by using this technique time stabi
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