ITU-R M 1479-2000 Technical Characteristics and Performance Requirements of Current and Planned Radionavigation-Satellite Service (Space-to-Space) Receivers to be Considered in Int5-1 .pdf
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1、 Rec. ITU-R M.1479 1 RECOMMENDATION ITU-R M.1479 TECHNICAL CHARACTERISTICS AND PERFORMANCE REQUIREMENTS OF CURRENT AND PLANNED RADIONAVIGATION-SATELLITE SERVICE (SPACE-TO-SPACE) RECEIVERS TO BE CONSIDERED IN INTERFERENCE STUDIES IN THE FREQUENCY BANDS 1 215-1 260 MHz AND 1 559-1 610 MHz (Question IT
2、U-R 219/8) (2000) Rec. ITU-R M.1479 The ITU Radiocommunication Assembly, considering a) that WRC-2000 agenda item 1.15.2 invites consideration of the addition of the space-to-space direction to the radionavigation-satellite service (RNSS) allocation in the bands 1 215-1 260 MHz and 1 559-1 610 MHz;
3、b) that the frequency bands 1 215-1 260 MHz and 1 559-1 610 MHz are allocated on a primary basis to the RNSS in the space-to-Earth direction; c) that the 1 215-1 260 MHz band is also allocated to the radiolocation service on a primary basis and to the Earth exploration-satellite (EESS) (active), and
4、 space research (SRS) (active) services on a primary basis subject to RR No. S5.332 and the 1 559-1 610 MHz band is also allocated to the aeronautical radionavigation service (ARNS) on a primary basis; d) that the 1 215-1 260 MHz band is also allocated on a primary basis to the fixed and mobile serv
5、ices in some countries (RR No. S5.330) and to the radionavigation service in some countries (RR No. S5.331) and the 1 559-1 610 MHz band is also allocated to the fixed service on a primary basis in some countries (RR No. S5.359) and on a secondary basis in other countries (RR No. S5.355); e) that sp
6、aceborne receivers of the RNSS, making use of existing RNSS (space-to-Earth) transmissions, are already in operation on a non-protected basis, or are planned for operation on spacecraft used for mobile satellite, Earth exploration, space research, and manned space applications; f) that the global or
7、biting navigation satellite system (GLONASS) is a system of the RNSS that operates in the 1 215-1 260 MHz and 1 559-1 610 MHz bands and that spaceborne receivers have been constructed and are intended to be used in the space-to-space direction for spacecraft navigation; g) that GPS is a system of th
8、e RNSS that also operates in the 1 215-1 260 MHz and 1 559-1 610 MHz bands and is being used in the space-to-space direction for spacecraft navigation; h) that E-NSS-1 and MSATNAV are planned RNSS systems that will also operate in the above frequency bands and may provide spacecraft radionavigation;
9、 j) that use of RNSS space-to-Earth emissions in the 1 215-1 260 MHz and 1 559-1 610 MHz bands for space navigation represents an efficient use of the spectrum and does not change the interference environment experienced by other services; k) that Recommendation ITU-R M.1088 provides information on
10、the GPS system; Recommendation ITU-R M.1317 provides information on the GLONASS system and Recommendation ITU-R M.1477 provides information on technical and performance characteristics of RNSS receivers for the GPS, GLONASS, E-NSS-1 and MSATNAV systems, recommends 1 that the spaceborne radionavigati
11、on receiver characteristics and performance requirements presented in the Annexes be used in interference studies between RNSS (space-to-space) and other radiocommunication services. NOTE 1 The nomenclatures L1 and L2 are used consistently within GLONASS in Annex 1, GPS in Annex 2 and MSATNAV in Ann
12、ex 4 but refer to different specific parts of the L1 band, 1 559-1 610 MHz, and the L2 band, 1 215-1 260 MHz, as quoted in the frequency ranges specified in these different Annexes; 2 that the permissible interference power spectral densities given in the Annexes may be used in interference calculat
13、ions for spaceborne radionavigation receivers in low-Earth orbit (LEO); 2 Rec. ITU-R M.1479 3 that the C/N0requirements given in the Annexes together with other characteristics of the RNSS systems may be used in interference calculations for spaceborne radionavigation receivers at higher altitudes;
14、4 that in cases where the permissible interference power spectral densities given in the Annexes is exceeded, the C/N0requirements given in the Annexes together with other characteristics of the RNSS systems may be used in interference calculations for spaceborne radionavigation receivers in LEO. AN
15、NEX 1 GLONASS spaceborne receiver characteristics Table 1 provides characteristics of spaceborne receivers for use with the GLONASS system. TABLE 1 Parameter GLONASSFrequency ranges(1)(MHz) (1998-2005) 1 592.9575-1 614.4225 (L1) 1 237.8275-1 256.7975 (L2) (After the year 2005) 1 592.9575-1 610.485 (
16、L1) 1 237.8275-1 253.735 (L2) Carrier frequencies (MHz) (1998-2005)(2)1 598.0625-1 609.3125 in steps of 0.5625 MHz (L1) 1 242.9375-1 251.6875 in steps of 0.4375 MHz (L2) (After the year 2005) 1 598.0625-1 605.375 in steps of 0.5625 MHz (L1) 1 242.9375-1 248.625 in steps of 0.4375 MHz (L2) Peudo nois
17、e code rates (Mchips/s) 5.11 (P-code on L1 and L2) 0.511 (C/A-code on L1 and L2) Antenna coverage(3)HemisphericalAntenna peak gain(3)(dBi) 3-5 (L1) 0-3 (L2) Preamplifier limiting level (W) 0.01 Preamplifier burnout level (W) 0.8 average Overload recovery time (ms) 1 Receiver system noise temperature
18、(3)(K) 100-670 Receiver front end bandwidth (MHz) 22 (L1) 19 (L2) Permitted in-band wideband interference power density at receiving antenna output (dB(W/MHz) 140 C/N0performance requirement(4)(dB(Hz) 34 (tracking) 37 (acquisition) (1)It should be noted that the frequency band above 1 610 MHz is not
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