CEPT ERC REPORT 15-1992 Compatibility Study between Radar and RLANs Operating at Frequencies Around 5 5 GHz (Madrid October 1992)《在大约5 5 GHz频率条件下运行的雷达和RLAN之间的兼容性研究 马德里1992年10月》.pdf
《CEPT ERC REPORT 15-1992 Compatibility Study between Radar and RLANs Operating at Frequencies Around 5 5 GHz (Madrid October 1992)《在大约5 5 GHz频率条件下运行的雷达和RLAN之间的兼容性研究 马德里1992年10月》.pdf》由会员分享,可在线阅读,更多相关《CEPT ERC REPORT 15-1992 Compatibility Study between Radar and RLANs Operating at Frequencies Around 5 5 GHz (Madrid October 1992)《在大约5 5 GHz频率条件下运行的雷达和RLAN之间的兼容性研究 马德里1992年10月》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、STD-CEPT ERC REPORT 35-ENGL 3992 E 2326434 00151s32 333 I ERC REPORT 15 v European Radiocommunications Committee (ERC) within the European Conference of Postai and Telecommunications Administrations (CEPT) COMPATIBILITY STUDY BETWEEN RADAR AND RLANs OPERATING AT FFU3QUENCIES AROUND 5.5 GHz Madrid, O
2、ctober 1992 STDnCEPT ERC REPORT 15-ENGL 1992 II 2326414 00151L3 058 I Copyright 1992 the European Conference of Postal and Telecommunications Admuiistrations (0 STD=CEPT ERC REPORT 35-ENGL 3992 I 2326434 00351i14 T94 I Interference Required C/I Receiver Threshold ERC REPORT 15 Page 1 level. Based on
3、 parameter for KAN at 17 GHz. Calculated from other assumed parameters. 20 dB -80 dBm COMPATIBILITY STUDY BETWEEN RADAR AND RLANs OPERATING AT FREQUENCIES AROUND 5.5 GHz 1 INTRODUCTION This reprt examines the prospect of Co-channel sharing between radar and Radio Local Area Networks (RLANs) operatin
4、g in the frequency bands around 5.5 GHz. Due to lack of information, the interference potential from the RLAN to the radar is not assessed. Results in this report show that if harmful interference to the RLAN is to be avoided no more than 6 radar can be permitted within a 50 km radius of any RLAN. 2
5、 ASSUMED WAN PARAMETERS At the time of writing (September 1992) very little information is available for the RLANs being proposed for sharing with radars at frequencies around 5.5 GHz. Under these circumstances some assumptions have been made regardhg the values of key RLAN parameters for use in the
6、 sharing study. These parameters are listed in the table below: PARAMETEN I VALUE I COMMENT Maximum eirp I 30dBm I Based on DECT Tx. Power of 24 dBm with an extra I I I 6 dB allowance for increased prop“ loss. Value I I I technology limited. I O dBi typical for mobile at 1 8 GHz. extra 2 dB for Ante
7、nna Gain IZdBi I I I higher frequency and to overcorn prop“ loss. Low I I cost antenna assumed. I Scaled fromDECT bandwidth and data rate ( 1.152 Channel Bandwidth I 20MHz I Mbitsk). Data rate of 1 5 Mbits/s assumed for RLAN. I Assumed interference level is equal to thermal noise Maximum Tolerable I
8、 -130 dBW/20 MHz The parameters given in the table are based on assumptions and they should be changed when information becomes available on the RLAN Characteristics and perfomce. 3 RADAR PERFORMANCE The following table (Table 2) gives information on the performance of example radar systems currentl
9、y operational in the band under investigation. The list of radars given is not exhaustive and is merely intended to provide some realistic examples for use in sharing calculation. The numbers and locations of the radars used are not available for use in this study. STD.CEPT ERC REPORT 35-ENGL 3992 I
10、 2326434 0035335 920 m WAR A B PEAKEIRP 98.6 dBW 26 dBW EMISSION 3MOOPON 15M5PON AN ERC REPORT 15 Page 2 C D E 60 dBW 93 dBw 97 dBw SOMOPON 14MOPON 3MOOPON I I I AIRBORNEUSE I NO I YES I NO I NO I NO Table 2. Radar parameters for use in sharing calculations. 4 METHODOLOGY The method used to calculat
11、e the potential for interference fromradar systems to the RLAN is based on estimates of the Minimum Couping Loss (MCL) required between radars and the RLAN. The MCL is defined as the minimum loss required to avoid adversely affecting receiver performance. This is measured between the antenna connect
12、or of the interfehg system and the antenna connector of the victimreceiver (i.e. feeder loss and antenna gain are not included). Quation 1 is used to that the MCL. L-L Equ. 1 MCL = P,+ 10 10g,o, Where, MCL Minimum Coupling Loss dB P, Bnoise BW, Transmitter Bandwidth (Radar) Hz I, It should be noted
13、that when the LAN receiver bandwidth is greater than the transmit bandwidth of the radar, the term 10 logl$mkJi3W, = O. Maximm Transmit Power, before antenna and feeders (Radar) dB Receiver Noise Bandwidth LAN) Hz Maximum Permissable Interference at Receiver, after antenna and feeder (KAN) dB Once t
14、he MCL has been calculated it may be converted to a required propagation loss by taking account of any antenna gain or feeder loss between the radar and the RLAN. Prop Loss = MCL + G, - Where, PropnLoss Required Propagation Loss G* L G, I4 Assuming free space propagation, then Equation 3 can be used
15、 to determine the required distance separation. + G, - L,+ Equ. 2 Gain of the radar antenna (see Table 2) Radar feeder loss (assumed = O dB) Gain of RLAN antenna (2 dBi) RLAN feeder loss (assumed = O dBi) - A. 1oProrrloss 4n 2o Equ. 3 d= Where all symbols have their previous meanings and, h Waveleng
16、th (evaluated at 5.5 GHz) d Required separation distance It should be noted that use of free space propagation formula to calculate required separation distances gives the worse case situation. ERC REPORT 15 Page 3 5 RESULTS Using the methodology outlined above and the parameters in Sections 2 and 3
17、 the foliowing table of results is produced. FEEDER LOSS see CCIR REC. 238 Table 3. Required distance separations for RLAN sharing with various radar system. If the distance to the radio horizon is taken as the limiting factor in determining the range over which a radar can cause interference to the
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