ETSI ETR 300-3-2000 Terrestrial Trunked Radio (TETRA) Voice Plus Data (V+D) Designers- Guide Part 3 Direct Mode Operation (DMO)《陆地集群无线电(TETRA) 语音加数据(V+D) 设计人员指南 第3部分 直接模式运行(DMO)》.pdf
《ETSI ETR 300-3-2000 Terrestrial Trunked Radio (TETRA) Voice Plus Data (V+D) Designers- Guide Part 3 Direct Mode Operation (DMO)《陆地集群无线电(TETRA) 语音加数据(V+D) 设计人员指南 第3部分 直接模式运行(DMO)》.pdf》由会员分享,可在线阅读,更多相关《ETSI ETR 300-3-2000 Terrestrial Trunked Radio (TETRA) Voice Plus Data (V+D) Designers- Guide Part 3 Direct Mode Operation (DMO)《陆地集群无线电(TETRA) 语音加数据(V+D) 设计人员指南 第3部分 直接模式运行(DMO)》.pdf(72页珍藏版)》请在麦多课文档分享上搜索。
1、REPORT ETR 300-3 February 2000 Source: TETRA Reference: DTRTTETRA-O1 O1 1-3 ICs: 33.020 Key words: radio, TETRA Terrestrial Trunked Radio (TETRA); Voice plus Data (V+D); Designers guide Part 3: Direct Mode Operation (DMO) ETSI European Telecommunications Standards Institute ETSI Secretariat Postal a
2、ddress: F-O6921 Sophia Antipolis CEDEX - FRANCE Office address: 650 Route des Lucioles - Sophia Antipolis - Valbonne - FRANCE Internet: secretariat Qetsi.fr - http:/www.etsi.org Tel.: +33 4 92 94 42 O0 - Fax: +33 4 93 65 47 16 Copyright Notification: No part may be reproduced except as authorized by
3、 written permission. The copyright and the foregoing restriction extend to reproduction in all media. O European Telecommunications Standards Institute 2000. All rights reserved. Page 2 ETR 300-3: February 2000 Whilst every care has been taken in the preparation and publication of this document, err
4、ors in content, typographical or otherwise, may occur. If you have comments concerning its accuracy, please write to “ETSI Standards Making Support Dept.“ at the address shown on the title page. Page 3 ETR 300-3: February 2000 Contents Foreword 7 1 2 3 4 5 6 7 8 Scope 9 References 9 Definitions and
5、abbreviations 10 3.1 Definitions 10 3.2 Abbreviations . 12 What is direct mode and why do we need it? 13 4.1 General 13 4.2 Frequency of operation 14 4.3 Managed Direct Mode 15 4.4 Direct Mode on European shared harmonised spectrum 16 Direct mode services and facilities 16 5.1 Service definitions 16
6、 5.1.1 Teleservice 16 5.1.2 Bearer service . 17 5.1.3 Intrinsic service 17 5.1.4 Summary of tele/bearer services offered in TETRA DMO 17 Direct mode teleservices 18 5.2.1 Individual call . 18 5.2.2 Group call 18 5.3.1 Circuit mode unprotected bearer services . 18 5.3.2 Circuit mode protected bearer
7、services . 19 5.3.3 5.4.1 DM late entry . 20 5.4.2 Transmitting party identification . 20 5.4.3 Emergency calls 20 5.4.4 OTAR . 20 5.2 5.3 Direct mode bearer services 18 Short data service (SDS) . 19 5.4 Intrinsic services 20 Description of direct mode equipment types . 21 6.1 General 21 6.2 Direct
8、mode mobile station (DM-MS) . 22 6.3 Dual watch mobile station (DW-MS) 22 6.4 Direct mode repeater (DM-REP) 23 6.5 Direct mode gateway (DM-GATE) . 23 6.6 6.7 Direct mode power classes 24 6.8 Limitations imposed by the physical layer for direct mode type equipment . 25 Direct mode operational example
9、s 25 7.1 General 25 7.2 7.3 DMO communication via a repeater with Dual Watching 26 7.4 Gateway operation . 27 7.5 Direct mode repeatedgateway combination (DM-REP/GATE) 24 MS to MS communication with Dual Watching 26 Direct mode repeatedgateway operation . 29 Basic direct mode MS-MS protocol . 30 8.2
10、 DM protocol layering 31 8.3 8.1 Testable boundaries 30 Direct mode functionality 31 Page 4 ETR 300-3: February 2000 8.4 Physical resources 32 8.5 Slot timing diagrams 32 8.5.1 Constraints on the frame structure (including synchronisation) 32 8.5.2 Direct Mode operation . 33 Call set-up protocol . 3
11、3 8.6.1 Call set-up without presence check 33 8.6.2 Call set-up time (fundamental constraints) . 34 8.6.3 Call set-up with presence check . 35 8.6.5 Channel reservation and changeover in a call 36 8.6.6 Pre-emption of a DM call 37 8.6.7 8.7 Channel surveillance . 38 8.8 Battery economy 40 8.9 Freque
12、ncy efficient operation 40 8.6 8.6.4 Late entry 35 Terminating a call . 38 9 . 1 o . 11 . Implementation and operation issues affecting dual watch 41 9.1 General 41 9.2 Basis for dual watch operation 41 9.3 Implementation of dual watch operation 41 9.3.1 Switching from idle to active . 42 9.3.2 Swit
13、ching from active to active 43 10.2 10.3 Security features . 44 10.1 Authentication 44 10.1.1 Mobile to mobile operation 44 10.1.2 Dual Watch Operation 44 10.1.3 Gateway mode operation 44 Confidentiality 44 10.2.1 Air Interface (AI) encryption 44 10.2.1.1 Cipher Key . 45 10.2.1.2 The Time Variant Pa
14、rameter (TVP) 45 10.2.2 End-to-end encryption . 45 Key Management 45 10.3.1 Air Interface Encryption keys 45 10.3.2 End to End Encryption keys 45 10.3.3 Over The Air Re-keying (OTAR) . 46 Secure Enable and Disable . 46 10.4 Radio AsDects . 46 11.1 11.2 11.3 11.4 11.5 11.6 11.7 11.8 11.9 11.10 11.11
15、DMO deployment constraints 46 Transmitter noise . 47 Blocking . 49 Effects of transmitter noise and blocking 49 Methodology 49 11 5.1 Assumptions . 50 11 5.2 Calculating the effect of transmitter noise . 50 11 5.3 Calculating the effect of blocking 51 11 5.4 Allowing for a noise floor uplift 51 11 5
16、.5 Translating path losses into distances 52 Example 1 - wanted signal at extremity of range, unwanted interferer close by . 53 11.6.1 Step 1 - Calculate allowable noise 53 11.6.2 Step 2 - Translate allowable noise into path loss and stay-away distance . 53 11.6.3 Step 3 - Calculate path loss and st
17、ay-away distance for blocking 53 Example 2 - wanted signal at close range, unwanted interferer close by . 54 11.7.1 Step 1 - Calculate noise floor uplift . 54 11.7.2 Step 2 - Calculate allowable noise 54 11.7.3 Step 3 - Translate allowable noise into path loss and stay-away distance . 54 11.7.4 Step
18、 4 - Calculate path loss and stay-away distance for blocking 54 Unwanted transmission noise versus blocking . 55 Variation of stay-away distance with transmitter power and frequency separation . 56 Effect of assumptions 56 Implementation issues . 57 Page 5 ETR 300-3: February 2000 Teleservices. bear
19、er and supplementary services supported by TMO/DMO . 59 Support of security features 60 Annex A (normative): Annex B (informative): B.l Time Variant Parameter 60 B.2 Synchronisation of end-to-end encryption . 60 Annex C (informative): Short range propagation models used in the co-existence studies 6
20、1 C.l Introduction 61 C.2 Free space propagation 61 C.3 Wickson model 62 C.4 CEPT SE21 model 62 C.5 Discussion . 63 Annex D (informative): RF channel selection. numbering and addressing . 65 D.l Background . 65 D.2 Numbering . 65 D.3 Addressing in repeater and gateway direct mode operation . 66 D.4
21、Summary . 66 Annex E (normative): TDMA frame and slot structure for direct mode operation . 67 E.l Frame structure . 67 E.2 Timeslots and bursts . 67 Annex F (normative): DM support for short data messages . 69 F.l DM short data call 69 F.2 F.3 Annex G (informative): Unacknowledged short data messag
22、e 69 Acknowledged short data message 69 Bibliography 71 History 72 Page 6 ETR 300-3: February 2000 Blank page Page 7 ETR 300-3: February 2000 Foreword This ETSI Technical Report (ETR) has been produced by the Terrestrial Trunked Radio (TETRA) Project of the European Telecommunications Standards Inst
23、itute (ETSI). ETRs are informative documents resulting from ETSI studies which are not appropriate for European Telecommunication Standard (ETS) or Interim European Telecommunication Standard (LETS) status. An ETR may be used to publish material which is either of an informative nature, relating to
24、the use or the application of ETSs or I-ETSs, or which is immature and not yet suitable for formal adoption as an ETS or an LETS. This ETR consists of 5 parts as follows: Part 1: “Overview, technical description and radio aspects“; Part 2: “Radio channels, network protocols and service performance“;
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