CEPT ERC REPORT 100-2000 Compatibility Between Certain Radiocommunications Systems Operating in Adjacent Bands Evaluation of DECT GSM 1800 Compatibility (Naples)《某些在邻近频段中运行的无线电通讯系.pdf
《CEPT ERC REPORT 100-2000 Compatibility Between Certain Radiocommunications Systems Operating in Adjacent Bands Evaluation of DECT GSM 1800 Compatibility (Naples)《某些在邻近频段中运行的无线电通讯系.pdf》由会员分享,可在线阅读,更多相关《CEPT ERC REPORT 100-2000 Compatibility Between Certain Radiocommunications Systems Operating in Adjacent Bands Evaluation of DECT GSM 1800 Compatibility (Naples)《某些在邻近频段中运行的无线电通讯系.pdf(56页珍藏版)》请在麦多课文档分享上搜索。
1、 STD-CEPT ERC REPORT LOO-ENGL 2000 232b414 0017154 455 = ERC REPORT 100 European Radiocommunications Committee (ERC) within the European Conference of Postal and Telecommunications Administrations (CEPT) COMPATIBILITY BETWEEN CERTAIN RADIOCOMMUNICATIONS SYSTEMS OPERATING IN ADJACENT BANDS EVALUATION
2、 OF DECT / GSM 1800 COMPATIBILITY Naples, February 2000 STD.CEPT ERC REPORT LOO-ENGL 2000 H Z32b4L4 OOL7L55 391 ERC REPORT 100 EXECUTIVE SUMMARY 1.1 This report details the findings of the SE7 Project Team study into the compatibility issues between DECT and GSM 1800. This report supersedes all earl
3、ier JFT reports relating to DECTIGSM 1800. 1.2 Several interference scenarios were analysed to identify the scenarios that exhibited significant interference ranges. Compared to earlier reports DECT WLL and GSM 1800 indoor BTS scenarios have been added Two main interference mechanisms were identifie
4、d: (i) (ii) Interference of DECT from GSM 1800 base station carrier power (blocking) Interference of GSM mobile stations by DECT out of band emissions For the WLL scenarios one more interference mechanisms was identified: (iii) Interference of DECT from GSM 1800 base stations out-of-band emissions 1
5、3 The means for reducing the compatibility problems are given in detail below. Error correction and the possible escape mechanisms (dynamic channel selection, power control, hand over algorithms) for both systems to avoid local interference problems and the consequent reduction in capacity are also
6、considerd in the discussions leading the recommendations. 1.4 The important scenarios are when DECT and GSM operate in the same local environment. Important scenarios for the recommendations are when a GSM 1800 MS operates in the same indoor environment as a DECT indoor system, and when above roofio
7、p DECT WLL systems and GSM macro cell systems operate in the same local outdoor environment. From studying the critical scenarios it is observed and / or recommended that: 1.4.1 A guard band is not required, but specific restrictions should apply locally to the GSM sub-band 1878 - 1880 MHz. See Sect
8、ion 7. 1.4.2 Co-ordinated site engineering and system planning will be required to minimise interference from above roof -top GSM BTSs to DECT WLL systems. 1.4.3 DECT WLL applications would suffer less potential risk of range reduction due to GSM interference if installed DECT WLL equipment have imp
9、roved blocking performance above minimum specification. 1.4.4 ETSI Project DECT should make sure that the provisions for DECT to detect interference from a single GSM bearer are properly defined. STD-CEPT ERC REPORT LOO-ENGL 2000 H 232b4L4 OOL7L5b 228 II ERC REPORT 100 INDEX TABLE 1 INTRODUCTION 1 1
10、.1 THEDECT AND GSM 1800 DECT SYSTEMS . 1 1.2 EVOLUTION OF DECT AND GSM 2 1.3 THE INTERFERENCE SCENARIOS . 2 1.4 DECISIONS ON SPECTRUM FOR DECT AND GSM 2 1.5 PREVIOUS REPORT . 3 2 BACKGROUND . 3 3 METHODOLOGIES .-_ 4 MINIMUM COUPLING Loss (MCL) 4 ENHANCED MINIMUM COUPLING Loss (E-MCL) . 4 MONTE CARLO
11、 SIMULATION . 5 STUDY AND RESULTS OF THE INVESTIGATION 5 4.1 INTERFERENCE SCENARIOS . 5 4.1.1 Antenna gain and transmitter power levels 6 4.2 PROPAGATION MODELS 6 4.3 INTERFERENCE MECHANISMS 7 4.4 INTERFERENCE CALCULATIONS . 8 GSM 1800 BTS interferes with DECT WU systems. BTSs and CTAs. Case7 . 9 4.
12、4.1.1 Calculation results for case 7 9 4.4.1.2 Local site engineering with local external filters between BTS transmitters and antennas . 10 4.4.1.3 nie number of sites that may need site engineering 11 4.4.1.4 Means to reduce the Required Isolation 11 4.4.1.5 Requirements on DECT to detect interfer
13、ence from a GSM single bearer and requirements on GSM with implemented frequency hopping 12 4.4.1.6 Requirements on GSM BCCH broadcast channel . 13 4.4.1.7 Case 7 is also relevant for a limited number of DECT WLL CTAs 13 4.4.1.8 Proposal for requirements on the two operators for co-ordination of abo
14、ve roof-top system installations . 13 The DECT WLL system is already installed 14 The GSM 1800 system is already instailed 14 No GSM system and no DECT WLL system is instailed . 14 4.4.2 GSM 1800 BTS interferes with DECT WU CTAs. Cases 6 . 14 4.4.3 GSM1800 above rooftop BTS interferes with a private
15、 cordless telephone DECT FP in a neigh-bounng building . Case I . 1.5 4.4.4 DECT FP with 12 dBi gain antenna installed outdoors for a service like telepoint or DECT for WU DECT FP interferes with a GSM 1800 MS . Case 5. model F . 16 4.4.5 GSM above rooftop BTS interferes with DECT FP outdoors at str
16、eet level . Case 3 model E. . 16 4.4.6 DECT indoor system interferes with GSM 1800 MS in indoor usage . Case 2. model D 17 Locked to an outdoor GSM BTS . 17 Locked to an indoor GSM micro BTS 18 Indoor GSM 1800 micro BTS in interferes with DECT indoor system . Case 8 model D . 18 Effects of power red
17、uction for the GSM 1800 BTS on the interference to DECT 19 Monte Carlo Simulations for DECT CT as victim (Case 4) 19 Monte Carlo Simulations for DECT WLL as victim (Case 6) 20 5 PRACTICAL TESTS . 20 3.1 3.2 3.3 4 4.4.1 4.4.1.8.1 4.4.1.8.2 4.4.1.8.3 4.4.6.1 4.4.6.2 4.4.7 4.4.8 4.4.8.1 4.4.8.2 6 MEANS
18、 TO IMPROVE THE COMPATIBILIT . 21 6.1 INHERENT SYSTEM PROPERTIES . 21 6.2 IMPROVED PERFORMANCE . 21 6.3 PLANNING THE DEPLOYME NT 21 6.4 LOCAL SITE ENGINEERING . 22 6.5 FURTHER CONSERATIONS . 22 ERC REPORT 100 7 CONCLUSIONS 22 INTERFERENCE FROM DECT TO GSM 1800 . 23 Position of the GSM BCCH control c
19、hannel 23 GSM escape from DECT inte$erence by intra-cell handover . 23 7.1 7.1. I 7.1.2 7.2.1 7.2 INTERFERENCE FROM GSM 1800 TO DECT . 23 Above roof-top DECT WLL systems and GSM 1800 macro cell systems in the same local area 23 7.3 REQUIREMENTS To DETECT ASYNCHRONOUS MTERFERENCE FROM A SINGLE GSM CO
20、NNECTION . 24 APPENDIX 1: SYSTEM PARAMETERS FOR DECT 25 APPENDIX 2: SYSTEM PARAMETERS FOR GSM 1800 30 APPENDIX 3: PROPAGATION MODELS . 35 APPENDiX 4: OVERVIEW OF COMPATIBILITY CASE 37 APPENDIX 5: COMPATIBILITY CALCULATIONS . 38 APPENDIX 6: MARKET INFORMATION AND SYSTEM PROPERTIES FOR DECT AND GSM18
21、46 I STD*CEPT ERC REPORT LOO-ENGL 2000 2326434 0037L58 OTO ERC REPORT 100 Page i COMPATIBILITY BETWEEN CERTAIN RADIOCOMMUNICATIONS SYSTEMS OPERATING IN ADJACENT BANDS EVALUATION OF DECTIGSM 1800 COMPATIBILITY 1 INTRODUCTION The CEPT SE7 project team (PT) was set up to evaluate compatibility between
22、certain mobile radio communications systems operating in adjacent bands This report is a revision of the earlier reports of CEPT JPT FMlO/SE7 on the compatibility of DECT/GSM 1800 and provides a detailed technical study about the coexistence between DECT and GSM 1800. As with the past work of the PT
23、, both practical as well as theoretical studies were carried out in an attempt to assess the potential interference with real equipment, as well as with specification values on the basis of MCL (minimum coupling loss), E-MCL (enhanced minimum coupling loss) calculations and MC (Monte Carlo) analysis
24、. 1.1 DECT is the term used for the Digital Enhanced Cordless Telecommunications systems. DECT carriers are defined for the band 1880-1938 MHz. located between 1880 and 1930 MHz. Spectrum is available for DECT in about 80 countries. 1880 - 1900 MHz in Europe and Australia and in several African and
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