ITU-T X 140-1992 General Quality of Service Parameters for Communication Via Public Data Networks (Study Group VII) 27 pp《经由公用数据网的通信的一般业务质量参数》.pdf
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1、INTERNATIONAL TELECOMMUNICATION UNION CCITT TH E INTERNATIONAL TELEGRAPH AND TELEPHONE CONSULTATIVE COMMITTEE DATA COMMUNICATION NETWORKS NETWORK ASPECTS X.140 (09/92) GENERAL QUALITY OF SERVICE PARAMETERS FOR COMMUNICATION VIA PUBLIC DATA NETWORKS Recommendation X.140 CCITT RECMN*X.140 72 4862591 0
2、57b853 820 m FOREWORD The CCITT (the International Telegraph and Telephone Consultative Committee) is a permanent organ of the International Telecommunication Union (ITU). CCITT is responsible for studying technical, operating and tariff questions and issuing Recommendations on them with a view to s
3、tandardizing 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 of CCIT between Plenary Assemblies is covered b
4、y the procedure laid down in CCITT Resolution No. 2 (Melbourne, 1988). Recommendation X.140 was revised by Study Group VI1 and was approved under the Resolution No. 2 procedure on the 10th of September 1992. CCITT NOTES 1) relecommunication adminisiration and a recognized private operating agency, 2
5、) 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 D. O IT 1993 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, elec
6、uoriic or mechanical, including photocopying and microfilm, without permission in writing from the ITU. CCITT RECMN*X*L40 92 4Bb259L 057b854 7b7 Recommendation X.140 GENERAL QUALITY OF SERVICE PARAMETERS FOR COMMUNICATION VIA PUBLIC DATA NETWORKS (Malaga-Torremolinos, 1984; amended at Melbourne, 198
7、8; revised 1992) The CCIT, considering (a) that users of data transmission services need general parameters which express their quality of service requirements without reference to any particular service or the means of its provision; (b) that providers of data transmission services need similar gen
8、eral parameters for representing offered services, and for relating user quality of service requirements to network performance capabilities; (c) that Recommendations X.130 and X.131 define protocol-specific performance parameters and objec- tives for circuit-switched public data networks; (d) that
9、Recommendation X.134 specifies portion boundaries and packet-layer reference events for defining packet- sw itched performance parameters; (e) that Recommendations X.135, X.136 and X.137 define protocol-specific performance parameters and values for packet-switched public data networks; (f) that Rec
10、ommendation X.200 defines the Reference Model of Open Systems Interconnection (OSI) for CCIT applications; (8) that Recommendation X.213 defines the OS1 network service; (h) that Recommendation X.300 defines general principles and arrangements for interworking among public data networks, and between
11、 public data networks and other networks, ununimously recommends that the general parameters defined below be used in specifying the end-to-end quality of public data network services as seen from the users point of view. 1 Scope and application 1.1 (PDNs). The parameters have two essential characte
12、ristics: This Recommendation defines a set of general quality of service (QOS) parameters for public data networks 1) they focus on performance efsects which are observable at the network interfaces, rather than their causes within the network; and 2) their definitions are based on protocol-independ
13、ent events (e.g. access request) rather than protocol- specific interface events (e.g. issuance of an X.21 call request signal). These characteristics m or 2) by the fact that at least one bit of user information is input to the system before access timeout, in networks that do not provide a readyfo
14、r data or equivalent signal. In connection-oriented services, there is the additional requirement that the intended called user must have been contacted and committed to the data communication session during the access attempt. This requirement distinguishes successful access outcomes from incorrect
15、 access outcomes, as discussed in Q 2.1.2 below. Access delay is divided into user-dependent and network-dependent components. Values for the network- dependent components are specified in network-specific Recommendations (e.g. Recommendation X. 135). 2.1.2 Incorrect access probability Incorrect acc
16、ess probability is the ratio of total access attempts that result in incorrect access to total access attempts in a specified sample. Incorrect access is essentially the case of a “wrong number”. It occurs when the nehvork establishes a physical or virtual circuit connection to a user other than the
17、 one intended by the call originator, and then does not correct the error before the start of user infomation transfer. Incorrect access can only occur in connection-oriented services, since the network does not establish a connection between users in connectionless services. Incorrect access is dis
18、tinguished from successful access (in connection-oriented services) by the fact that the intended called user is not contacted and committed to the data communication session during the access attempt. Values for network-specific parameters corresponding to incorrect access probability are contained
19、 in nehvork-specific Recommendations (e.g. X.136). 2.1.3 Access denial probability attempts in a specified sample.1) communication session. access outcome is indicated in one of two ways: Access denial probability is the ratio of total access attempts that result in access denial to total access Acc
20、ess denial (also termed network blocking) can occur in two ways: 1) 2) the network issues a blocking signal to the originating user during the access period (preventing the start of user information transfer); or the network delays excessively in responding to user actions during the access period,
21、with the result that user information transfer is not initiated before access timeout. Access denial is distinguished from service outage by the fact that some active response (Le. interface signal) is issued by the network during the access attempt. This ratio and all other probability ratios efine
22、d in this Recommendation are actually estimates of the true probability values. G Recommendation X.140 (09/92) -_-_ -_ CCITT RECMN*X=340 92 4862591 0576860 TbO An access attempt can also fail as a result of user blocking. Such failures are excluded from network performance measurement. User blocking
23、 is defined as any case where an access attempt fails as a result of incorrect performance or non-performance on the part of a user. Examples of user blocking include the following: a) either the originating or the called user issues a termination (or blocking) signal to the network during the acces
24、s period (preventing the start of the user information transfer); or b) the originating or the called user delays excessively in responding to network actions during the access period, with the result that user information transfer is not initiated before access timeout. An example of the latter is
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