ITU-T G 108 NOTE-2000 Application of the E-model A planning guide《E模型的应用 规划指南》.pdf
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1、Union internationale des tlcommunications Place des Nations 1211 GENVE 20 Suisse Switzerland Suiza COVERING NOTE GENERAL SECRETARIAT INTERNATIONAL TELECOMMUNICATION UNION Subject: Erratum Geneva, 7 December 2000 Recommendation ITU-T G.108 (09/99) TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU ITU-T
2、 Recommendation G.108 (09/99) Application of the E-model: A planning guide 1. The following Table of Figures and Table of Tables should be inserted under “Contents“. TABLE OF FIGURES Page Figure 1/G.108 Basic configuration for the interconnection between private and public network. 12 Figure 2/G.108
3、 Standard configuration with a fully digital routing within the private network. 13 Figure 3/G.108 Private Network with 4-wire/2-wire Conversion. 14 Figure 4/G.108 Digitally connected wireless telephone set 14 Figure 5/G.108 Basic connection between the PSTN and an IP network with its H.323 terminal
4、 and a PBX connected via an IWF . 15 Figure 6/G.108 The E-Model in the environment of subjective and objective testing 17 Figure 7/G.108 General configuration for calls via public networks 17 Figure 8/G.108 Example for the addition of impairments on a “Psychological scale“ . 18 Figure 9/G.108 Relati
5、on between OLR and E-Model Rating R . 21 Figure 10/G.108 E-Model Rating R due to talker echo 22 Figure 11/G.108 Relation between absolute delay (Ta) and E-Model Rating R. 23 Figure 12/G.108 Relation between the number of qdu and E-Model Rating R 26 Figure 13/G.108 Reference connection for the calcul
6、ation of SLR and RLR. 36 Figure 14/G.108 Reference connection for echo calculations with one echo path . 39 Figure 15/G.108 Reference connection for echo calculations with two echo paths 40 Figure 16/G.108 Details inside a cordless telephone with respect to echo control . 41 Figure 17/G.108 Basic re
7、ference configuration of the E-Model. 44 Figure 18/G.108 Working configuration for 2-wire/2-wire connections 45 Figure 19/G.108 Working configuration for 4-wire/2-wire connections 47 2 Figure 20/G.108 Working configuration for 2-wire/4-wire connections 48 Figure 21/G.108 Working configuration for fu
8、lly digital connections . 48 Figure 22/G.108 Echo canceller 55 Figure 23/G.108 Application of a pair of echo cancellers within the private network 57 Figure 24/G.108 Options for the location of an echo canceller 58 Figure 25/G.108 Use of echo cancellers in an internetwork or international connection
9、 . 59 Figure 26/G.108 Judgement of a connection on a linear quality scale 63 Figure A.1/G.108 Echo cancellers in a private network and their echo paths. 74 Figure A.2/G.108 Access and routing in public networks 76 Figure A.3a/G.108 Configurations and transmission characteristics for the far-end term
10、ination Europe . 79 Figure A.3b/G.108 Configurations and transmission characteristics for the far-end Termination North America 81 Figure B.1/G.108 Basic structure of the private network 83 Figure B.2/G.108 Reference configuration 1 84 Figure B.3/G.108 Reference configuration 2 84 Figure B.4/G.108 R
11、eference configuration 3 85 Figure B.5/G.108 Use of low bit-rate equipment for a leased line 87 Figure B.6/G.108 Basis for calculation of reference configuration 1 . 89 Figure B.7/G.108 Basis for calculation of reference configuration 2 . 93 Figure B.8/G.108 Basis for calculation of reference config
12、uration 3 . 95 Figure B.9/G.108 Application of echo control devices in the private network. 99 Figure B.10/G.108 Reference configuration 1 100 Figure B.11/G.108 Reference configuration 2 100 Figure B.12/G.108 Reference configuration 3 101 Figure B.13/G.108 Basis for calculation for reference configu
13、ration 1a 102 Figure B.13a/G.108 Analogue set A & analogue set B as perceived side A. 105 Figure B.13b/G.108 Analogue set A & analogue set B as perceived side B. 106 Figure B.14/G.108 Basis for calculation of reference configuration 1b . 107 Figure B.14a/G.108 Digital set A & analogue set B as perce
14、ived side A . 110 Figure B.14b/G.108 Digital set A & analogue set B as perceived side B . 110 Figure B.15/G.108 Basis for calculation of reference configuration 2 . 111 Figure B.15a/G.108 Unlicensed: Wireless processing delay: 7 ms avg 115 Figure B.15b/G.108 Licensed: Wireless processing delay: 100
15、ms avg . 115 Figure B.16/G.108 Basis for calculation of reference configuration 3a 116 Figure B.16a/G.108 Unlicensed: Wireless processing delay: 7 ms avg 120 Figure B.16b/G.108 Licensed: Wireless processing delay: 100 ms avg . 120 Figure B.17/G.108 Basis for calculation of reference configuration 3b
16、 . 121 Figure B.17a/G.108 Unlicensed: Wireless processing delay: 7 ms avg 124 Figure B.17b/G.108 Licensed: Wireless processing delay: 100 ms avg . 125 Figure C.1/G.108 Possible echo paths for a cordless telephone 128 Figure C.2/G.108 Echo control devices in a DECT cordless telephone 129 Figure C.3/G
17、.108 TCLw and artificial echo loss 130 3 TABLE OF TABLES Page Table 1/G.108 Definition of categories of speech transmission quality 19 Table 2a/G.108 Provisional planning values for the equipment impairment factor (Ie) . 27 Table 2b/G.108 Provisional planning values for the equipment impairment fact
18、or (Ie) under conditions of packet loss, codecs G.729-A + VAD and G.723.1-A + VAD. 29 Table 2c/G.108 Provisional planning values for the equipment impairment factor (Ie) under propagation error conditions, GSM codecs 29 Table 3/G.108 Provisional examples for the advantage factor A 30 Table 4/G.108 A
19、ssumed analogue access characteristics 32 Table 5/G.108 Assumed digital access characteristics for lines terminated in digital sets 32 Table 6/G.108 Default values and recommended ranges for the parameters 54 Table A.1/G.108 Planning values for wireless telephones European region . 67 Table A.2/G.10
20、8 Planning values for wireless telephones North American region. 67 Table A.3/G.108 Switching equipment connection possibilities 68 Table A.4/G.108 Average values for TBRLw and echo loss (Europe). 70 Table B.1/G.108 Summary of the calculation results . 97 Table B.2a/G.108 E-Model input parameters fo
21、r configuration 1a as perceived at side A. 104 Table B.2b/G.108 E-Model input parameters for configuration 1a as perceived at side B. 105 Table B.3a/G.108 E-Model input parameters for configuration 1b as perceived at side A. 109 Table B.3b/G.108 E-Model input parameters for configuration 1b as perce
22、ived at side B. 109 Table B.4a/G.108 E-Model Input Parameters for Configuration 2 as perceived at side A . 114 Table B.4b/G.108 E-Model input parameters for configuration 2 as perceived at side B. 114 Table B.5a/G.108 E-Model input parameters for configuration 3a (analogue set B) as perceived at sid
23、e A 119 Table B.5b/G.108 E-Model input parameters for configuration 3a (analogue set B) as perceived at side B 119 Table B.6a/G.108 E-Model input parameters for configuration 3b (digital set B) as perceived at side A . 123 Table B.6b/G.108 E-Model input parameters for configuration 3b (digital set B
24、) as perceived at side B 124 Table B.7/G.108 Example E-Model calculations for IP telephony. 126 Table B.8/G.108 E-Model Ratings R for indicated combinations of Ie and end-to-end mean one-way delay 126 2. Item d) of the Introduction should read: “Planning of private networks is more complex than sing
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