ITU-R REPORT M 2141-2009 Study of the isolation between VHF land mobile radio antennas in close proximity《近距离甚高频(VHF)陆地移动无线电天线之间的隔离研究》.pdf
《ITU-R REPORT M 2141-2009 Study of the isolation between VHF land mobile radio antennas in close proximity《近距离甚高频(VHF)陆地移动无线电天线之间的隔离研究》.pdf》由会员分享,可在线阅读,更多相关《ITU-R REPORT M 2141-2009 Study of the isolation between VHF land mobile radio antennas in close proximity《近距离甚高频(VHF)陆地移动无线电天线之间的隔离研究》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、 Report ITU-R M.2141(06/2009)Study of the isolation between VHF land mobile radio antennasin close proximityM SeriesMobile, radiodetermination, amateurand related satellite servicesRep. ITU-R M.2141 ii Foreword The role of the Radiocommunication Sector is to ensure the rational, equitable, efficient
2、 and economical use of the radio-frequency spectrum by all radiocommunication services, including satellite services, and carry out studies without limit of frequency range on the basis of which Recommendations are adopted. The regulatory and policy functions of the Radiocommunication Sector are per
3、formed by World and Regional Radiocommunication Conferences and Radiocommunication Assemblies supported by Study Groups. Policy on Intellectual Property Right (IPR) ITU-R policy on IPR is described in the Common Patent Policy for ITU-T/ITU-R/ISO/IEC referenced in Annex 1 of Resolution ITU-R 1. Forms
4、 to be used for the submission of patent statements and licensing declarations by patent holders are available from http:/www.itu.int/ITU-R/go/patents/en where the Guidelines for Implementation of the Common Patent Policy for ITU-T/ITU-R/ISO/IEC and the ITU-R patent information database can also be
5、found. Series of ITU-R Reports (Also available online at http:/www.itu.int/publ/R-REP/en) Series Title BO Satellite delivery BR Recording for production, archival and play-out; film for television BS Broadcasting service (sound) BT Broadcasting service (television) F Fixed service M Mobile, radiodet
6、ermination, amateur and related satellite services P Radiowave propagation RA Radio astronomy RS Remote sensing systems SA Space applications and meteorology SF Frequency sharing and coordination between fixed-satellite and fixed service systems SM Spectrum management Note: This ITU-R Report was app
7、roved in English by the Study Group under the procedure detailed in Resolution ITU-R 1. Electronic Publication Geneva, 2009 ITU 2009 All rights reserved. No part of this publication may be reproduced, by any means whatsoever, without written permission of ITU. Rep. ITU-R M.2141 1 REPORT ITU-R M.2141
8、*Study of the isolation between VHF land mobile radio antennas in close proximity (Question ITU-R 7/5) (2009) 1 Introduction This Report provides information on calculation and measurement techniques for isolation of VHF land mobile antennas located in close proximity. A major challenge is the manag
9、ement of co-site interference between various radio systems operating in close proximity. In this Report the isolation between antennas are investigated and quantified. The antenna isolation is theoretically analysed, numerically simulated and experimentally verified for the case of separation in th
10、e order of 1 to 7.6 m. 2 Scope This Report provides information on the determination of isolation for mobile radio antennas separated horizontally less than a few wavelengths in the 30 to 108 MHz bands. The study presents analytical and experimental isolation results for two antennas. The impact of
11、isolation to the operation of radio systems and effect of the physical characteristics of the antenna platform are not studied. 3 Related ITU-R Recommendations Recommendation ITU-R SM.337 Frequency and distance separations. 4 Abbreviations NEC Numerical electromagnetics code EZNEC The electromagneti
12、cs simulation program based on NEC USUL Unmatched source-unmatched load model MSUL Matched source-unmatched load model AWG American wire gauge VSWR Voltage standing wave ratio. 5 Approach used to compute antenna coupling This study is specifically aimed at investigating the horizontal isolation betw
13、een a two-vertical-antenna configuration. Of particular interest here is the canonical problem of two antennas separated by a specified distance and how the coupling between the two antennas varies with carrier frequency. *This Report should be brought to the attention of Radiocommunication Study Gr
14、oup 1. 2 Rep. ITU-R M.2141 Mutual impedance between antennas was evaluated on the basis of theoretical techniques used in electromagnetics and applied to the two antenna configuration. Coupled power was computed using standard circuit theory governing voltage, current and power. The theoretical pred
15、ictions were validated against accepted theoretical results in the literature. Following this first order confirmation, independent calculations using an electromagnetic simulation package based on the numerical electromagnetics code (NEC) was employed to further confirm the validity of the theoreti
16、cal results. The benefit of using the theoretical techniques over the NEC package is that: the expressions are in closed form; and relationships between electrical and physical parameters to impedance are seen clearly in the expressions. Based on the theoretical and simulation results, experiments w
17、ere then devised to investigate predictions of coupled power levels. 6 Determination of self and mutual impedance The problem under consideration is that of evaluating the power coupled between two antennas separated by a distance d, as illustrated in Fig. 1. Fortunately, this problem is addressed i
18、n books dealing with electromagnetics and antenna systems Jordan and Balmain, 1968. Closed form expressions and simulation of self mutual impedance between antennas are presented in this section. FIGURE 1 Geometry for fields near the antennas Report 2141-01dAnt 1No. Ant 2No. H2zdHorizontal isolation
19、Antenna 1No. Antenna No. 2H2H1H1r1r0r26.1 Theoretical expressions for mutual impedance In Fig. 2, with the terminals at antenna 2 open circuit, the impedance seen looking into the terminals at antenna 1 is simply the self-impedance of antenna 1 in isolation, Z11. Similarly, the impedance seen lookin
20、g into the terminals of antenna 2 with the terminals of antenna 1 open circuit, the impedance seen is simply the self-impedance of antenna 2 in isolation, Z22. By inspection: Rep. ITU-R M.2141 3 FIGURE 2 Definitions of quantities used for derivation of self and mutual impedance Report 2141-02+-+-Z1Z
21、2I2V2V1I1ZZ ZZZ Z1 11 2 22 =MMZMThe mutual impedance of the pair 2112ZZZM= is computed by solving: )()(,1211,12ininZZZZZZZM+=iteratively for ZM. Here Z1,inis the Norton equivalent impedance at the terminal of antenna 1 when antenna 2 is short circuited: MMMinZZZZZZZZZ+=22121,1and is a non-linear fun
22、ction of ZM. Finally, the notation used for resistance and reactance is: MMMjXRZ += Once these impedances are known, the quantities of interest such as the input impedance, VSWR, and isolation can be computed. What remains for analytical purposes is to determine Z1, Z2and ZMfor a 2-element monopole
23、antenna using the problem geometry in Fig. 1, which shows two element monopoles, with each element of height H1= H2= H. The general mutual impedance expressions for the two monopole antennas on a perfect reflecting plane and separated by distance d are taken from Jordan and Balmain, 1968. Mutual res
24、istance is: +=)()(2)()()()(2)(2)(222cos)(2)(2)()(cossin30101221011122vCiuCiuCivCiuCivCiuCiuCiHuSivSivSiuSiHHRMand mutual reactance is: +=)()(2)()()()(2)(2)(22cos)()2()(2)(2cossin3010122101211vSiuSiuSivSiuSivSiuSiuSiHuCivCiuCivCiHHXM4 Rep. ITU-R M.2141 where: d: distance between antennas H: height of
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