ITU-R TF 1011-1-1997 Systems Techniques and Services for Time and Frequency Transfer《时间和频率传送的系统 技术和业务》.pdf
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1、 - - STD-ITU-R RECMN TF.LO22-L-ENGL 2997 4855222 0532539 209 = Rec. ITU-R TF.1011-1 31 RECOMMENDATION ITU-R TF.1011-1 SYSTEMS, TECHNIQUES AND SERVICES FOR TIME AND FREQUENCY TRANSFER (Question IT-R 102/7) (1994-1997) The Radiocommunication Assembly, considering 4 the continuing need in all parts of
2、the world for readily available standard frequency and time reference signals; b) that different levels of precision and accuracy, ranging from 1 s down to about 1 ns, are required for the large number of diverse applications for time and frequency; c) that, in many time and frequency applications,
3、the selection of an optimum time and frequency transfer system or technique must also take into account other factors, such as availability, reliability, capabilities for automatic operation, convenience of use and cost; d) that, throughout the world, many different systems, techniques and services
4、have been used successfully to satisfy a large variety of time and frequency requirements; e) that useful systems, techniques and services include both those dedicated for time and frequency needs and others that are designed primarily for other functions, such as navigation or communications, recom
5、mends 1 that, when selecting a suitable source of time and frequency reference signals or an optimum technique for time and frequency transfer, each application first be carefully analysed with respect to the relative importance of accuracy and/or precision, geographical coverage, availability (for
6、example, the fraction of time that the signal is available at the stated performance levei), ease of use and user costs; 2 that, based on such an analysis of specific requirements and their relative importance, suitable systems, techniques or services could be selected from those listed in Annex 1 *
7、 dong with their most important characteristics. * Additional information is also available in the ITU-R Handbook on selection and use of precise frequency and time systems. STD.1TU-R RECMN TF-LOLL-1-ENGL 1997 4855232 0533540 T20 32 Rec. ITU-R TF.1011-1 8 8 O VI O Y O m 8 VI O 8 O d VI O O v, Li e m
8、 - I 2 o O .- b 2 b O Y 7 2 N, b c z E 8 8 Li ul c O O VI O O in - ul S N 3. VI 2 O O - STD-ITU-R RECMN TF-LO11-1-ENGL 1997 m 4855212 0531541 967 m 1 Rec. ITU-R TF.lO1l-1 8 O rn P- O Y O v, 2 E 9; z u o a O v) Y 3 2 Y m o B v1 5 O c u .- Y C v) =I O .- 2 u Y c e m u 3 2 d O Y b, b E: b X vl Y) C O 0
9、 a O v) O Y 0 2 d O u e Y) C 0 O 2. F: o m u m X m o I .- u 2 D r;: m u .- Y o“ STD-ITU-R RECMN TF-LOII-II-ENGL 1997 - 4855232 0533542 8T3 = 34 Rec. ITU-R TF.1011-1 Special notes concerning the various dissemination/comparison methods Attention should be paid to the fact that in order to achieve the
10、 stated accuracies, calibration of the user equipment is often necessary. HF broadcasts Many of the HF broadcast services make use of the internationally allocated frequencies for this purpose at 2.5, 5, 10, 15, 20 and 25 MHz. Other HF services use frequencies in other bands in order to reduce mutua
11、l interference. Such services provide modest accuracy performance but offer advantages in terms of wide geographical coverage, convenience of use (for 1 s accuracy level) and inexpensive user equipment. Recommendation ITU-R TF.768 contains detailed information on formats, broadcast schedules and oth
12、er characteristics of most HF time and frequency services. LF broadcasts Broadcasts of this type, useful for time and frequency applications include: - various dedicated time and frequency services operating in the 40-80 kHz band; and - radionavigation system broadcasts, such as Loran-C stations at
13、100 kHz, which provide highly stabilized and synchronized transmissions. The dedicated time and frequency services often include phase and/or amplitude modulations that provide complete time and date information in coded form. A large number of Loran-C stations exist, principally in the northern hem
14、isphere. Main advantages include good accuracy for both time and frequency, availability of relatively inexpensive receivers and convenience of use. One disadvantage is the undetected occurrence of cycle slips, which degrade the accuracy. Recommendation ITU-R TF.768 contains detailed information on
15、formats, broadcast schedules and other characteristics of many LF transmissions. VLF broadcasts VLF broadcasts in the 10-30 kHz range are useful primarily for frequency applications. Stable propagation characteristics and long-distance coverage make such signals useful for frequency comparisons at t
16、he 1 x lo-” level or better. VLF broadcasts do not normally contain complete time-of-day information. Recommendation ITU-R TF.768 contains detailed information on formats, broadcast schedules and other characteristics of some useful VLF transmissions. Television broadcasts A number of methods for us
17、ing television broadcasts for time and frequency dissemination and comparisons have been tried and some are in current use. These include the insertion of coded time and frequency information into the television signal, the stabilization of television carrier frequencies and synchronization pulses a
18、nd the common-view reception of a single television transmission in a local area. The most commonly used method today involves the common-view method allowing timing systems to be compared within a local station coverage area to within about 10 ns. Navigation satellite (broadcast) This technique emp
19、loys the direct reception of timing information from navigation satellite systems such as the Global Positioning System (GPS) and the GLONASS system. Information is included in the satellite signals which allows the user to compensate approximately for the propagation delays and apply corrections fo
20、r differences between the local satellite clock and UTC. Accuracies of better than 500 ns for time and 1 x for frequency comparisons are possible, even in the presence of intentional degradation of the signals, known as selective availability. Principal advantages include: widespread availability of
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