ETSI TR 103 181-2-2014 Electromagnetic compatibility and Radio spectrum Matters (ERM) Short Range Devices (SRD) using Ultra Wide Band (UWB) Transmission characteristics Part 2 UWB _1.pdf
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1、 ETSI TR 103 181-2 V1.1.1 (2014-06) Electromagnetic compatibility and Radio spectrum Matters (ERM); Short Range Devices (SRD) using Ultra Wide Band (UWB); Transmission characteristics Part 2: UWB mitigation techniques TECHNICAL REPORT ETSI ETSI TR 103 181-2 V1.1.1 (2014-06)2Reference DTR/ERM-TGUWB-0
2、07-2 Keywords DAA, radar, radio, SRD, testing, UWB ETSI 650 Route des Lucioles F-06921 Sophia Antipolis Cedex - FRANCE Tel.: +33 4 92 94 42 00 Fax: +33 4 93 65 47 16 Siret N 348 623 562 00017 - NAF 742 C Association but non lucratif enregistre la Sous-Prfecture de Grasse (06) N 7803/88 Important not
3、ice The present document can be downloaded from: http:/www.etsi.org The present document may be made available in electronic versions and/or in print. The content of any electronic and/or print versions of the present document shall not be modified without the prior written authorization of ETSI. In
4、 case of any existing or perceived difference in contents between such versions and/or in print, the only prevailing document is the print of the Portable Document Format (PDF) version kept on a specific network drive within ETSI Secretariat. Users of the present document should be aware that the do
5、cument may be subject to revision or change of status. Information on the current status of this and other ETSI documents is available at http:/portal.etsi.org/tb/status/status.asp If you find errors in the present document, please send your comment to one of the following services: http:/portal.ets
6、i.org/chaircor/ETSI_support.asp Copyright Notification No part may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm except as authorized by written permission of ETSI. The content of the PDF version shall not be modified without th
7、e written authorization of ETSI. The copyright and the foregoing restriction extend to reproduction in all media. European Telecommunications Standards Institute 2014. All rights reserved. DECTTM, PLUGTESTSTM, UMTSTMand the ETSI logo are Trade Marks of ETSI registered for the benefit of its Members.
8、 3GPPTM and LTE are Trade Marks of ETSI registered for the benefit of its Members and of the 3GPP Organizational Partners. GSM and the GSM logo are Trade Marks registered and owned by the GSM Association. ETSI ETSI TR 103 181-2 V1.1.1 (2014-06)3Contents Intellectual Property Rights 5g3Foreword . 5g3
9、Modal verbs terminology 5g3Introduction 5g31 Scope 7g32 References 7g32.1 Normative references . 7g32.2 Informative references 7g33 Definitions, symbols and abbreviations . 10g33.1 Definitions 10g33.2 Symbols 11g33.3 Abbreviations . 12g34 Overview of UWB Applications and Regulation in ECC/EC 13g34.1
10、 Summary of UWB application defined in Europe 13g34.2 Summary of mitigation techniques allowed for UWB applications . 16g35 Active Mitigation Techniques 18g35.1 Listen Before Talk (LBT) . 19g35.1.1 General description . 19g35.1.2 Technical parameters and implementation in ECC/EC regulation . 19g35.1
11、.2.1 Building material analysis (BMA) 19g35.1.2.2 Material Sensing devices other than BMA (e.g. ODC) . 22g35.2 Detect and Avoid (DAA) . 25g35.2.1 General description . 25g35.2.2 Technical parameters and implementation in ECC/EC regulation . 30g35.2.2.1 Non-specific applications 30g35.2.2.2 Location
12、tracking type 1 (LT1) . 30g35.2.2.3 Location tracking type 2 (LT2) . 30g35.2.2.4 Location Application for emergency Services (LAES) . 31g35.2.2.5 Automotive and Railway . 31g35.3 Total (or Transmitter) Power Control (TPC) 31g35.3.1 General description . 31g35.3.2 Technical parameters and implementat
13、ion in ECC/EC regulation . 32g35.3.2.1 Material Sensing Devices other than BMA (fixed installations only) . 32g35.3.2.2 Level probing radars . 33g35.3.2.3 Automotive and railway 33g35.4 Difference between DAA and TPC 34g36 Passive Mitigation Techniques . 36g36.1 Low Duty Cycle (LDC) 36g36.1.1 Genera
14、l description . 36g36.1.2 Technical parameters and implementation in ECC/EC regulation . 37g36.1.2.1 Generic UWB usage 37g36.1.2.2 Location tracking equipment . 38g36.1.2.3 Automotive and railway vehicles 38g36.1.2.4 Material Sensing Devices other than BMA . 38g36.1.2.5 Tank level probing radar . 39
15、g36.1.2.6 Level Probing Radars 39g36.1.2.7 Trading LDC against transmitted power . 40g36.2 Radiation pattern mitigations . 41g36.2.1 Total Radiated Power (TRP) . 41g36.2.1.1 General description . 41g36.2.1.2 Technical parameters and implementation in ECC/EC regulation 43g3ETSI ETSI TR 103 181-2 V1.1
16、.1 (2014-06)46.2.1.2.1 Material Sensing Devices other than BMA, non-fixed installations . 43g36.2.1.2.2 Building Material Analysis 43g36.2.2 Restrictions on angular sectors of radiation 44g36.2.2.1 General description . 44g36.2.2.2 Technical parameters and implementation in ECC/EC regulation 44g36.2
17、.2.2.1 Automotive and railway 44g36.2.2.2.2 Location Tracking Type 2 (LT2, fixed outdoor installation only) . 46g36.2.2.2.3 Material Sensing Devices (fixed installations only) 46g36.2.3 Shielding . 48g36.2.3.1 General description . 48g36.2.3.2 Technical parameters and implementation in ECC/EC regula
18、tion 48g36.2.3.2.1 Tank Level Probing Radars (LPR) 48g36.2.3.2.2 Automotive and Railway . 48g3Annex A: Quantitative analysis for the technique of trading LDC against transmitted power . 52g3A.1 Executive summary 52g3A.2 Introduction: trading LDC against transmitted power 53g3A.3 Basic assumptions 54
19、g3A.3.1 Definitions and terms . 54g3A.3.2 Analyzed scenarios . 54g3A.4 Single interferer scenario analysis 55g3A.4.1 Fundamental remarks: benefits implied by a linear trading of duty cycle against transmitted power 55g3A.4.2 High level description of the mathematical model used for evaluating LDC tr
20、ading versus Ptxin the single interferer scenario 59g3A.4.3 Simulations results of trading LDC against TX power in single interferer scenario 60g3A.4.4 Conclusion about single interferer scenario . 62g3A.5 Aggregated scenario analysis . 63g3A.5.1 Introduction 63g3A.5.2 High level description of the
21、mathematical model used for evaluating LDC versus Ptxtrading in the aggregated interferer scenario 65g3A.5.3 Simulation results and analysis in high density scenario (grid) 66g3A.5.4 Simulation results and analysis in lower density scenario (rings) 67g3A.5.5 Conclusions for aggregated interferer sce
22、nario 69g3Annex B: Details on the mathematical models used for the evaluation of trading LDC against transmitted power . 70g3B.1 Mathematical model for the single interferer scenario . 70g3B.1.1 Model of interference between a single jammer transmission and a generic victim service 70g3B.1.2 Validat
23、ion of the model: matching and comparison with results of JRC report . 71g3B.2 Mathematical model for the aggregated scenario . 75g3B.2.1 Criterion for the evaluation of the trading of PSD against the LDC in an aggregated scenario . 75g3B.2.1 High density and low density aggregated scenarios . 77g3H
24、istory 79g3ETSI ETSI TR 103 181-2 V1.1.1 (2014-06)5Intellectual Property Rights IPRs essential or potentially essential to the present document may have been declared to ETSI. The information pertaining to these essential IPRs, if any, is publicly available for ETSI members and non-members, and can
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