ITU-T E 712-1992 USER PLANE TRAFFIC MODELLING《用户平台话务模型(研究2组)16pp》.pdf
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1、CCITT THE INTERNATIONAL TELEGRAPH AND TELEPHONE CONSULTATIVE COMMITTEE TELEPHONE NETWORK AND ISDN QUALITY OF SERVICE, NETWORK MANAGEMENT AND TRAFFIC ENGINEERING E.712 (1 0/92) _- = - CCITT RECMN*E.732 92 = 4862593 0576535 274 = INTERNATIONAL TELECOMMUNICATION UNION USER PLANE TRAFFIC MODELLING Recom
2、mendation E.712 CCITT RECMN*E-7L2 92 m 486259L 0576536 LOO m FOREWORD The CCITT (the International Telegraph and Telephone Consultative Committee) is a permanent organ of the International Telecommunication Union (RU). CCITT is responsible for studying technical, operating and tariff questions and i
3、ssuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The Plenary Assembly of CCITT which meets every four years, establishes the topics for study and approves Recommendations prepared by its Study Groups. The approval of Recommendations by the members
4、of CCITT between Plenary Assemblies is covered by the procedure laid down in CCITT Resolution No. 2 (Melbourne, 1988). Recommendation E.712 was prepared by Study Group II and was approved under the Resolution No. 2 procedure on the 30th of October 1992. CCIIT NOTES 1) telecommunication administratio
5、n and a recognized private operating agency. 2) In this Recommendation, the expression “Administration” is used for conciseness to indicate both a A list of abbreviations used in this Recommendation can be found in Annex A. O ITU 1993 All rights reserved. No part of this publication may be reproduce
6、d or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from the ITU. - - _ r CCITT RECMN*E=712 92 = 4862593 0576517 047 Recommendation E.712 USER PLANE TRAFFIC MODELLING (1 992) 1 Introduction In Recommendation E.711 t
7、he user demand is characterized by means of his call demands and by the description of each type of call demand. On the basis of the information provided by this user characterization, Recommendation E.712 derives the values of the traffic parameters required for dimensioning the 1 to 3 layer resour
8、ces of ISDN user plane. The resources involved by the user plane traffic are: - - - mnkgroups. customer accesses (Basic, Primary and their multiplexes): B- and D-channels; resources of ISDN Exchanges: switching networks, packet handlers, etc.; 2 General approach In ISDN, call demands with different
9、connection characteristics can be offered to the same group of resources. Depending on the kind of resources, dimensioning may require to separately characterize the traffic components corresponding to call demands with some different connection characteristics. First, there is a distinction of two
10、main traffic components according to the connection characteristic information transfer mode. Each of these two components (circuit switched and packet switched) may be further split up into new components, according to the other connection characteristics of their call demands. Thus, the approach f
11、or the modelling of the traffic offered to a group of resources is: - - to identify the call demands which make use of this group of resources; to identify the connection characteristics which imply the split up of the traffic due to these call demands into traffic components; to describe and quanti
12、fy these traffic components by means of a set of parameters derived from those defined in Recommendation E.7 11. - This approach will be followed in 0 3 to model the circuit switched traffic and in 0 4 for the packet switched traffic. 3 Modelling of circuit switched traffic 3.1 Observations on the c
13、oncept of group of resoiirces In the first implementations of the ISDN, the number of channels or circuits reserved per call will be the same for both directions of the information flow. This number is given for each call by the direction in which the information transfer rate is higher. In this sit
14、uation, the B-channels of an ISDN access or the channels (slots) of a trunk group are referred here as a group of resources, with independence of the direction of the information flow. Recommendation E.712 (10/92) 1 CCITT RECMN*E-712 92 4862571 0576518 T83 In further implementations of the ISDN, whe
15、n the connection characteristic Symmetry” of the call pattern takes the values unidirectional or bidirectional asymmetric, the number of channels reserved per call may be different in each direction of the information flow. In this situation, the channels carrying each direction of the information f
16、low have to be separately dimensioned (the final dimensioning being given by the direction in which the required number of channels is higher). Thus, the channels of each direction should be considered, in the context of this Recommendation, as a different group of resources. 3.2 Identijcution of cu
17、ll demands using a group of resources To identify the call demands using a group of resources the following connection characteristics should be considered: - communication configuration: This characteristic, in the wide sense considered in Recommen- dation E.711, d 2.2, defines the position of the
18、endpoints involved in the communication; this, together with the routing strategy, determines if a certain group of resources may be used by a call demand. - information transfer capability; - establishment of communication; - information transfer rate. The last three characteristics should be consi
19、dered since different groups of resources may be provided for call demands with certain values of these connection characteristics (e.g. resources only used for single channel connections or only traffic on demand). 3.3 Split up into trafJic components When call demands with different connection cha
20、racteristics share the same group of resources, different components of the offered traffic have to be separately characterized. For circuit switched traffic these components are distinguished according to the following criteria: the number of resources required per call: the connection characterist
21、ics of the call demand determining this number are: a) - the information transfer rate: in the first situation of 0 3.1, it is the rate in the direction in which the rate is higher; in the second situation, it is the rate in the direction under consideration. When this rate is n x 64 kbit/s, ii B-ch
22、annels of the ISDN access or n channels of a trunk group are required for each call; the communication configuration: in multipoint connections several resources of the same group can be required by a call, depending on the place where the information is split; Figure 1E.712 gives two examples of a
23、three points communication; if the information transfer rate is it x U4 kbit/s, II resources are required in each trunk group in example a), while in example b), 2 x ti resources are required in the trunk group between the local exchange A and the transit exchange, and n resources in each of the oth
24、er two trunk groups; - b) the existence of any restriction on the allocation of several resources for the same call; time-slot sequence integrity (TSSI) is required for ti x 64 kbit/s communications when the values of the information transfer capability is unrestricted or 8 kHz structured; one techn
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