ITU-R REPORT BT 2138-2008 Radiation pattern characteristics of UHF television receiving antennas《超高频(UHF)电视接收天线的辐射模式特点》.pdf
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1、 Rep. ITU-R BT.2138 1 REPORT ITU-R BT.2138 Radiation pattern characteristics of UHF*television receiving antennas (2008) 1 Introduction This Report describes measurements of the radiation pattern characteristics of UHF television receiving antennas. The measurements were made to determine the perfor
2、mance of twelve UHF antennas used for TV reception. Though all antennas tested were designed for multiband operation, the antennas tested covered, inter alia, the frequency range of TV channels 40 to 60 for 8 MHz channel plans and TV channels 41 to 65 for 7 MHz plans. These frequency ranges are exte
3、nsively used for terrestrial television broadcasting services by most ITU administrations. 2 Background Many administrations currently operate digital and/or analogue broadcasting services in the UHF band. Recommendation ITU-R BT.419-3 contains a mask for receiving antenna directivity to be used in
4、the planning of terrestrial television services. This does not constitute a design specification for receiving antennas, but is an assumption about their directivity which affects the calculation of potential interference from other services into the broadcasting service. As part of its work in the
5、study period 2003-2007 in ITU-R, Australia provided representative data for the off-axis performance of UHF receiving antennas (in the elevation plane), noting that the performance may vary with the polarization of the receiving antenna. The results are in Annex 1. Within this study it is clear that
6、 a number of antennas fit well within the Recommendation ITU-R BT.419 mask, while others do not due to their broader patterns and lower gain. This is particularly evident at the lower frequencies. 3 Factors for consideration 3.1 Existing antenna population Statistics from antenna manufacturers indic
7、ate that the antenna types tested in this study represent a high percentage of antenna used in one administration. If these figures were extrapolated for a 10-year period (the estimated notional usable lifetime of a TV antenna) then, given the general commonality of TV antenna designs around the wor
8、ld, the characteristics found in Annex 1 may represent performance characteristics that are also valid for other administrations. * The terrestrial television broadcasting service is found in the UHF frequency range of 470 to 890 MHz (refer Article 5 of the Radio Regulations). Performance of the tel
9、evision receiving antennas in upper portion of the UHF band was the subject under study. 2 Rep. ITU-R BT.2138 3.2 Impulsive noise This Report states in Annex 1 that “a certain AUT (antenna under test) was susceptible to noise generated by the measurement rotator during a swept frequency measurement
10、using a broadband detector. Turning off the motor eliminated the noise so all further swept frequency measurements were conducted when the measurement rotator was turned off”. Impulse noise immunity is an important consideration for receiver performance and reception signal quality for both analogue
11、 and particularly for digital television reception. Interference being received via the antenna may consume level and quality margins. Impulse noise rejection is, amongst other things, dependent upon correct cable terminations and matching cables to the antenna. Annex 1 1 Antennas measured The anten
12、nas measured are listed in Table 1: TABLE 1 Antennas measured Antenna number Antenna design Antenna description Band Mounting location Feed connection 1 Yagi 9 elements IV/V Centre Saddle 2 Yagi 12 elements IV/V Centre F connector 3 Phased array 4 elements IV/V Rear Saddle 4 Phased array 4 elements
13、IV/V Rear Saddle 5 Yagi 18 elements IV/V Rear F connector 6 Yagi 20 elements IV/V Centre F connector 7 Combination UHF 8 elements VHF 4 elements I/II/III/IV/V Centre F connector 8 Combination UHF 10 elements VHF 4 elements IV/V(1)Centre F connector 9 Combination UHF 18 elements VHF 8 elements III/IV
14、/V Centre F connector 10 Combination UHF 10 elements VHF 6 elements III/IV/V Centre F connector 11 Cross-polarized UHF 10 elements VHF 6 elements I/II/III/IV/V(2)Centre Saddle 12 Cross-polarized UHF 10 elements VHF 6 elements I/II/III/IV/V(3)Centre F connector (1)Tuneable UHF frequency range of 526-
15、750 MHz. (2)Tuneable UHF frequency range of 526-750 MHz. (3)Tuneable UHF frequency range of 526-750 MHz. Rep. ITU-R BT.2138 3 2 Measurements undertaken For all antennas listed above the following system parameters were measured: 360 radiation patterns in the azimuth plane at two frequencies, 620 MHz
16、 and 790 MHz within the tunable UHF frequency range. Four radiation pattern cuts at = 0, 45, 90 and 135 were measured at each frequency. Gain-normalized1swept-frequency measurements over the range of 620 MHz to 790 MHz within the tunable UHF frequency range. 3 Measurement description The radiation p
17、atterns were measured on the CSIRO 40 metre outdoor antenna test range in Sydney, Australia, using an Agilent E4407B spectrum analyser as the receiver. The measurement system was set up with a standard gain horn (SGH) as the transmit horn allowing the gain of the antenna-under-test (AUT) to be calcu
18、lated. A linear-polarized WR1150 rectangular pyramidal horn, with a nominal gain of 16.4 dBi, was used for the SGH. Two 6 m RG6 quad-shield 75 cables were used to connect the AUTs to the measurement system. For the AUTs with an F-type balun input a cable with connectors at both ends was used. For th
19、e AUTs with saddle-type balun input a modified cable with one connector removed was used. These cables were then connected to a minimum loss pad used to match impedances between the 75 AUT and the measurement 50 system. The measurement procedure, listed below, was identical for each AUT at both meas
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