TIA-329-C-2003 Minimum Standards for Communications Antennas Base Station Antennas《通信天线和基站天线的最低标准》.pdf
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1、 TIA DOCUMENT Minimum Standards for Communications Antennas, Base Station Antennas TIA-329-C (Revision of TIA-392-B) AUGUST 2003 TELECOMMUNICATIONS INDUSTRY ASSOCIATION The Telecommunications Industry Association represents the communications sector of Copyright Electronic Industries Alliance Provid
2、ed by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NOTICE TIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating inte
3、rchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for their particular need. The existence of such Publications shall not in any respect preclude any member or non-member of TIA from manufacturing or selling produ
4、cts not conforming to such Publications. Neither shall the existence of such Documents preclude their voluntary use by non-TIA members, either domestically or internationally. TIA DOCUMENTS TIA Documents contain information deemed to be of technical value to the industry, and are published at the re
5、quest of the originating Committee without necessarily following the rigorous public review and resolution of comments which is a procedural part of the development of a American National Standard (ANS). Further details of the development process are available in the TIA Engineering Manual, located
6、at http:/www.tiaonline.org/standards/sfg/engineering_manual.cfm TIA Documents shall be reviewed on a five year cycle by the formulating Committee and a decision made on whether to reaffirm, revise, withdraw, or proceed to develop an American National Standard on this subject. Suggestions for revisio
7、n should be directed to: Standards therefore the gain of the isotropic point source shall be zero dBi. The gain of an antenna (see 4.8) shall be expressed as that over a theoretical isotropic source in dBi. 3.3.2 Gain standard antenna 1 GHz and above For frequency bands 1 GHz and above, the configur
8、ation of the standard antenna is shown in Figure 2, and is comprised of an optimal pyramidal microwave horn, fed by a standard waveguide and flange configuration. The antenna gain is accurately determined by the physical dimensions of the pyramidal horn. Microwave horn dimensions and gain values are
9、 given in Table 3. Standard waveguide part numbers and dimensions are given in Table 4. Gain calculations were derived from equation 5 and Table A-1 in 5. Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without lice
10、nse from IHS-,-,-TIA-329-C 6 Figure 2 - Physical dimensions for calculating the gain of a pyramidal horn Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TIA-329-C 7 Table 3 - Microwave s
11、tandard gain horn antenna dimensions Dimensions, Interior Design Point Band Edges Frequency Band (GHz) a Inches (cm) b Inches (cm) lH Inches (cm) lE Inches (cm) Freq (GHz) Gain (dBi) Freq / Gain (GHz)/(dBi) Freq / Gain (GHz)/(dBi) 0.75 1.12 32.559 (82.700) 24.094 (61.200) 36.016 (91.480) 31.125 (79.
12、057) 0.950 16.0 0.750 / 14.3 1.120 / 16.9 0.95 1.15 21.931 (55.705) 16.245 (41.262) 28.730 (72.974) 24.000 (60.960) 1.000 13.7 0.950 / 13.3 1.150/ 14.8 1.15 1.70 21.931 (55.705) 16.245 (41.262) 24.955 (63.386) 21.325 (54.166) 1.300 15.5 1.150 / 13.2 1.700 / 17.1 1.70 2.60 14.508 (36.850) 10.747 (27.
13、297) 16.508 (41.930) 14.107 (35.832) 1.970 15.5 1.700 / 14.5 2.600 / 17.2 2.60 3.95 12.760 (32.410) 9.450 (24.003) 18.682 (47.452) 16.593 (42.146) 3.000 18.0 2.600 / 17.0 3.950 / 19.7 3.95 - 5.88 8.507 (21.608) 6.300 (16.002) 12.462 (31.653) 11.062 (28.097) 4.500 18.0 3.950 / 17.1 5.880 / 19.6 5.88
14、8.33 11.360 (28.854) 8.415 (21.374) 20.014 (50.836) 18.700 (47.498) 6.315 22.1 5.880 / 21.8 8.330 / 22.9 Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TIA-329-C 8 Table 4 - Microwave r
15、ectangular waveguide reference Dimensions, Interior Frequency Band (GHz) EIA Waveguide Designation1WR ( ) RG ( ) /U* Designation Inches cm .750 1.12 975 204 4.875 x 9.750 12.383 x 24.765 .950 1.150 770 205 7.700 x 3.850 19.558 x 9.779 1.150 1.700 650 103 6.500 x 3.250 16.510 x 8.255 1.700 - 2.600 43
16、0 105 4.300 x 2.150 10.922 x 5.461 2.600 3.950 284 75 2.840 x 1.340 7.214 x 3.404 3.950 5.880 187 95 1.872 x 0.872 4.755 x 2.215 5.880 8.330 137 106 1.372 x 0.622 3.485 x 1.579 * Assumes aluminum construction 1This designation follows (now withdrawn) EIA Standard 261B 6. While the standard is no lon
17、ger in force, reference to it is kept here because these designations are still in common use. Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TTIA-329-C 9 3.4 Antenna test site The test
18、 site is the general vicinity of the antenna under test. Specific conditions for the test are stated in detail in 4.1.2 for VSWR and impedance tests and in 4.3.2 and 4.3.4 for pattern and gain measurements. 3.4.1 Effective antenna volume The effective antenna volume is the actual volume occupied by
19、the radiating part of the antenna plus one-half wavelength all the way around, taking into account all appropriate positions of the antenna under test. For certain applications, such as a side-mounted vertical antenna, the supporting structure is in the RF field. In this case, the supporting structu
20、re shall be included in the effective antenna volume. 3.4.2 Source antenna The source antenna is any antenna that illuminates the antenna under test for gain or radiation pattern within specified conditions. 3.4.3 Antenna test range The test range is the space occupied by the source antenna, the ant
21、enna under test, the space between them, and the equipment for gain and radiation pattern measurement. 3.5 Ambient conditions 3.5.1 Ambient weather Measurement of VSWR, radiation pattern and antenna power gain may be made at outdoor test sites and ranges under prevailing weather conditions. 3.5.2 Am
22、bient RF noise level The ambient noise level for any measurement under the standard shall be a minimum of 10 dB below RF parameters being measured. Should the nominal noise level be less than 10 dB a correction shall be applied to meet the 10 dB minimum. Copyright Electronic Industries Alliance Prov
23、ided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TTIA-329-C 10 3.6 Polarization The polarization of an antenna is the orientation of the electric vector of the wave radiated by the antenna.23.7 Omnidirectional antenna An omnidirecti
24、onal antenna is an antenna having a non-directive pattern in azimuth (within specified limits), at a specified elevation angle, and a directive pattern in elevation. 3.8 Bandwidth The INSTANTANEOUS (or also called the OPERATING) bandwidth of the antenna is the frequency range(s) over which it will p
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