CEPT ERC REPORT 63-1998 Introduction of Radio Microphone Applications in the Frequency Range 1785 - 1800 MHz (Siofok)《1785-1800 MHz频率范围中引入无线电麦克风应用 西欧福克》.pdf
《CEPT ERC REPORT 63-1998 Introduction of Radio Microphone Applications in the Frequency Range 1785 - 1800 MHz (Siofok)《1785-1800 MHz频率范围中引入无线电麦克风应用 西欧福克》.pdf》由会员分享,可在线阅读,更多相关《CEPT ERC REPORT 63-1998 Introduction of Radio Microphone Applications in the Frequency Range 1785 - 1800 MHz (Siofok)《1785-1800 MHz频率范围中引入无线电麦克风应用 西欧福克》.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、 STD.CEPT ERC REPORT 63-ENGL L77 2326414 00L380b 40T M ERC REPORT 63 European Radiocommunications Committee (ERC) within the European Conference of Postal and Telecommunications Administrations (CEPT) INTRODUCTION OF RADIO MICROPHONE APPLICATIONS IN THE FREQUENCY RANGE 1785 - 1800 MHz Sifok, May 199
2、8 STDOCEPT ERC REPORT b3-ENGL 1998 2326414 0013807 3ib ERC REPORT 63 Copyright 1998 the European Conference of Postal and Telecommunications Administrations (CEPT) STD*CEPT ERC REPORT b3-ENGL 1998 232b414 0013808 282 = ERC REPORT 63 INTRODUCTION OF RADIO MICROPHONE APPLICATIONS IN THE FREQUENCY RANG
3、E 1785 - 1800 MHz 1 INTRODUCTION . 1 2 BASIC PARAMETERS 1 2.1 SYSTEM PARAMETERS . 1 2. I. I GSM 1800 . 1 2.1.2 Tactical radio re1 ay. . 3 2.1.3 TFTS 5 2. I. 4 Radio microphones . . 6 2.2 WANTED FIELD STRENGTH FOR RADIO MICROPHONES USING DIGITAL MODULATION . 7 2.3 RESULTS OF COMPATIBILITY ANALYSES .
4、. 8 2.4 OVERVIEW OF RESULTS 9 2.4. I Results porn the viewpoint of the other services uflected (i. e. microphones (is the interferer) . Y 2.4.2 2.4.3 Combined results . 9 RESULTS OF THE COMPATIBILITY ANALYSES 10 Results from the viewpoint of radio microphones ( .e. other services as the interferer)
5、9 3 4 CONCLUSIONS . 1 I ANNEX 1 MICROPHONE RECEIVER MASK 13 STD.CEPT ERC REPORT 63-ENGL 1998 232b414 0033809 119 ERC REPORT 63 STD=CEPT ERC REPORT b3-ENGL 1998 = 232b424 00138LO 930 = ERC REPORT 63 INTRODUCTION OF RADIO MICROPHONE APPLICATIONS IN THE FREQUENCY RANGE 1785 - 1800 MHz SUMMARY This stud
6、y considerd the compatibility between radio microphones and tactical radio relay systems in the frequency range 1785 - 1800 MHz taking account of the use of the adjacent bands by GSM 1800 (1 7 1 O - 1785 MHz) and TFTS (1 800 - 1805 MHz). The main results of this work are that the operation of radio
7、microphones within the frequency range 1785 - 1800 MHz is feasible provided that: a guard band of 700 kHz is implemented to avoid compatibility problems between radio microphones and GSM i 800 (Le. a guard band of 600 kHz is implemented to provide protection against interference from TFTS emissions
8、from airborne stations (.e. 1799.4 - 1800 MHz); coordination is needed to ensure a 200m separation distance between radiomicrophones and TFTS ground stations in the band 1797 - 1799.4 MHz, and use at airports (with TFTS in operation) should be prohibited; Co-channel sharing with tactical radio relay
9、 is feasible provided a separation distance of 1.4 - 2.8 km is observed, this can be achieved through a national licensing/coordination mechanism. 1785 - 1785.7 MHz); the radiated power of the radio microphones is restricted to 10 dBm (17 dBm for body - worn equipment) to minimize interference to ta
10、ctical radio relay systems. These conditions are achievable through a national licensing procedure; this would be necessary in any case for professional radio microphone usage to avoid intra-service interference. For analogue radio microphones the standard ETS 300 422 is applicable; however, if digi
11、tal equipment were to be developed then a new standard would be required. STD-CEPT ERC REPORT 63-ENGL 1998 232bq14 OOL381l 877 ERC REPORT 63 STDvCEPT ERC REPORT 63-ENGL 1S = 232bLil1i-i 0013BlZ 703 A f (Wz) 200 250 400 600 -1200 1200 -1800 Power level (dBc) - 30 - 33 - 60 - 60 - 60 ERC REPORT 63 Pag
12、e 1 1800 -6000 2 6000 - 71 - 79 1 INTRODUCTION A f (Wz) 400 600 Power level (dBm) -23 -26 The aim of this study is to investigate the possibility of using the frequency range 1785 - 1800 MHz for radio microphones. For this purpose some compatibility considerations have been done. 1200 1800 -32 -36 T
13、he radio microphones considered in this study are professional applications. Therefore the stringent requirements for broadcast quality are taken into account. Radio microphones are assumed to be operated mainly indoors, although outdoor use is not prohibited. This document describes the prerequisit
14、es for the introduction of radio microphones in the aforementioned tiequency range. 2 BASIC PARAMETERS 2.1 System parameters 2.1.1 CSM 1800 Source: Draft prETS 300 577 (GSM 05.05), May 1995 General parameters: Frequency band: Modulation: Transmission method: Carrier spacing: Channels: Mobile transmi
15、tters: Output power: 1710 - 1785 MHz GMSK TDMA 200 kHz Fu = I710 + 0.2 (n-512) where 512 I n I885 max. 1 W (30 dBm) f 2.5 dB min. 0.25 W (24 dBm) f 2.5 dB micro station 1 mW (O dBm) f 6 dB Level of spurious emissions given an output power of 1 W: Draft prETS 300 577, page 13, Table b) Intermodulatio
16、n attenuation: Feeder loss (cable loss): 50 dB at 800 kHz (fl-Q) from the carrier 2 dB Antenna gain: -2 dB STDOCEPT ERC REPORT b3-ENGL 1998 2326414 0013813 64T = Type designation Level (dBm) ERC REPORT 63 Page 2 Normal BTS BTS M1 BTS M2 BTS M3 (equivalent to 33 dB(pV/m) -104 -102 -97 -92 Fixed recei
17、vers: Receiver sensitivitv: A f (kHz) Power level (dBc) f200 +400 I600 -9 -4 1 -49 Co-channel rejection: 9 dB Maximum permissible interference levelshterfering field strength levels: Normal BTS: BTS M1: BTS M2: BTS M3: -1 13 dBm = 24 dB(pV/m) - 1 1 1 dBm = 26 dB(pV/m) -106 dBm = 3 1 dB(pV/m) -101 dB
18、m = 36 dB(pV/m) Blocking level dBm) Adjacent channel rejection: Af (kHz) 600 i: 800 I800 5 3000 Normal BTS M1 M2 M3 At dBc: Frequency offset from the centre frequency of the wanted signal Level relative to the wanted signal -3 5 -2 5 -40 -30 -3 5 -25 -30 -2 o Out-of-band blocking performance: O dBni
19、 Spurious emissions: Antenna gain: Feeder loss (cable loss): Average antenna height: Side lobe attenuation: Measurement bandwidth: see draft prETS 300 577, page 17 2 nW (-57 dBm) in the band 9 kHz - 1 GHz 20 nW (-47 dBm) in the band 1 - 12.75 GHz 18 dBi 2 dB 25 m 14 dB STDOCEPT ERC REPORT 63-ENGL 17
20、98 2326434 0013834 586 Transmission capacity 256J288 kbits 5 12/576 kbits ERC REPORT 63 Page 3 Bandwidth 600 kHz 980 kHz 2.1.2 Tactical radio relay Channel mode 12-channel operation 24-channel operation Source: National Radio Frequency Agency (NARFA), Germany System value 2 159 dB 2 154dB General pa
21、rameters: Frequency band: System designation: Modulation mode: Operation mode: Frequency spacing: Transmission capacity 2561288 kbits 5 12/576 kbits 10241 1 1 52 kbits Transmission range: Fade margin: System gain 2 128dB 2 127 dB 2 119dB Transmitters: Output power: OccuDied bandwidths for TDM oDerat
22、ion: 1785 - 1800 MHz FM 1000 FM FDM or TDM FDM: 125 kHz TDM: see occupied bandwidths Approx. 20 dB 50-60 km FDM and TDM 1.25 W (I dBW) I 102411 i52 kbits I 1030 kHz I Maximum system values: TDM oDeration (BER = 10-4): Wanted and out-of-band emissions: A f (kHz) 515 I1030 2060 I 2500 - 5000 Level dBc
23、) I O I - 50 1-60 I - 60 Afi dBc: Frequency offset from the centre frequency of the wanted signal Level relative to the wanted signal General value of spurious emissions: - 30 dBm STD *CEPT Bandwidth approx. 125 kHz (FDM) 600 kHz (TDM) 980 kHz (TDM) 1030 kHz (TDM) ERC REPORT 63 Page 4 Pn = 10 log (k
24、*“*B) + F -145 dBW -138 dBW -136 dBW -136 dBW Antenna hwe I Location of use: Gain: Side lobe attenuation: Front-to-back ratio: wo-4 PIO-7 ERC REPORT b3-ENGL L9W 232b414 OOL3815 412 Binary transmission: 12 dB Biternary transmission: 15 dB Binary transmission: 15 dB Primarily on manoeuvres 19.5 - 22 d
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