ITU-T E 526-1993 Dimensioning a Circuit Group with Multi-Slot Bearer Services and No Overflow Inputs《无溢出输入和多时隙承载业务的电路群的容量设计 电话网络和综合业务服务网(ISDN)服务质量 网络管理》.pdf
《ITU-T E 526-1993 Dimensioning a Circuit Group with Multi-Slot Bearer Services and No Overflow Inputs《无溢出输入和多时隙承载业务的电路群的容量设计 电话网络和综合业务服务网(ISDN)服务质量 网络管理》.pdf》由会员分享,可在线阅读,更多相关《ITU-T E 526-1993 Dimensioning a Circuit Group with Multi-Slot Bearer Services and No Overflow Inputs《无溢出输入和多时隙承载业务的电路群的容量设计 电话网络和综合业务服务网(ISDN)服务质量 网络管理》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION ITU-T TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU E.526 (03193) TELEPHONE NETWORK AND ISDN QUALITY OF SERVICE, NETWORK MANAGEMENT AND TRAFFIC ENGINEERING DIMENSIONING A CIRCUIT GROUP AND NO OVERFLOW INPUTS WITH MULTI-SLOT BEARER SERVICES ITU-T Recommendation
2、 ES26 (Previously “CCIlT Recommendation“) STD-ITU-T RECMN E-52b-ENGL 1773 LiBb2571 Ob17731 272 M FOREWORD The IT Telecommunication Standardization Sector (IW-T) is a permanent organ of the Intemational Telecom- munication Union. The ITU-T is responsible for studying technical, operating and tariff q
3、uestions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Conference (WTSC), which meets every four years, established the topics for study by the ITU-T Study Groups which, in their turn, produce Rec
4、ommendations on these topics. ITU-T Recommendation ES26 was prepared by the IT-T Study Group II (1988-1993) and was approved by the WTSC (Helsinki. March 1-12, 1993). NOTES 1 As a consequence of a reform process within the International Telecommunication Union (), the KITT ceased to exist as of 28 F
5、ebruary 1993. In its place, the IT Telecommunication Standardization Sector (IT-T) was created as of 1 March 1993. Similarly, in this reform process, the CCIR and the IFRB have been replaced by the Radiocommunication Sector. In order not to delay publication of this Recommendation, no change has bee
6、n made in the text to references containing the acronyms “CCITT, CCIR or IFRB” or their associated entities such as Plenary Assembly, Secretariat, etc. Future editions of this Recommendation will contain the proper terminology related to the new IT stmcture. 2 telecommunication administration and a
7、recognized operating agency. In this Recommendation, the expression “Administration” is used for conciseness to indicate both a O ITU 1994 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical. including photocopying and
8、microfilm, without permission in writing from the ITU, CONTENTS Page 1 Introduction 1 2 Grade of Service objectives . 1 3 Dimensioning methods 1 3.1 Full availability group . 1 3.2 Trunk modularity 2 3.3 Service protection . 2 . Annex A - Blocking probabilities of a full availability group Annex B -
9、 Sample of the capacity table (full availability group) . 2 4 . 5 References Recommendation ES26 (03/93) I Recommendation ES26 DIMENSIONING A CIRCUIT GROUP WITH MULTI-SLOT BEARER SERVICES AND NO OVERFLOW INPUTS (Helsinki, 1993) 1 Introduction This Recommendation describes methods for calculating the
10、 number of circuits in a fia circuit group, which has no overflow inputs, carrying on demand circuit switched ISDN bearer services with differeia bit rates. Examples of channel classes and information transfer rates for the bearer services up to the primary rate interface are as follows (see Recomme
11、ndation 1.21 1). - B-channel: 64 kbit/s; - HO-channel: 384 kbit/s; - Hi I-channel: 1536 kbit/s; - H12-channel: i920 kbiVs. Different implementation providing these services is possik.3, such as dedicated circuit groups for each channel class or common circuit groups for two or more channel classes.
12、Choice of implementation depends on available switching architecture, network structure, operational simplicity and flexibility, required Grade of Service, traffic demand, accuracy of the demand forecasting and others. Recommendation ES20 provides a dimensioning method for a dedicated circuit group.
13、 This Recommendation deals with the dimensioning methods for a common circuit group that is shared by the bearer services at different bit rates. Definition A unit circuit is defined as a circuit with the lowest information transfer rate among the bearer service classes sharing a circuit group. A un
14、it circuit is the elementary unit for dimensioning a circuit group and, hereafter, it will simply be called “circuit”. A single call for a class i bearer service requires di circuits; di is called the bandwidth factor of this class i service. Example: If B, HO and HlZchannel rate bearer services sha
15、re a circuit group, the bandwidth factors are i, 6 and 30. If HO and Hi i -channel rate bearer services share a circuit group, the bandwidth factors are 1 and 4. 2 Grade of Service objectives The Grade of Service (GOS) objectives used in a first approach is that the individual blocking probability f
16、or each service class will not exceed 1% for a normal load and 7% for a high load. The normal and high load levels are defined in Recommendation ESO. It will be desirable to consider the differences of the busy-hour and day-to-day traffic variations for the service classes. A more complicated situat
17、ion with different GOS standards for each service class X,% and Yi%, respectively is for further study. 3 Dimensioning methods 3.1 Full availability group A full availability group is described as follows. If a class i call arrives when there are fewer than di circuits idle in the group, it is lost,
18、 otherwise it seizes di circuits, even if they are not adjacent. Recommendation ES26 (03/93) 1 STD-ITU-T RECMN E-52b-ENGL 1993 LiAb2591 Ob1993Li TA1 The number of circuits needed for the group may be calculated based on a product form solution (see Annex A). Annex B shows samples of the capacity tab
19、le. It is desirable to use a computer or a programmable calculator. Calculation algorithms for the blocking probabilities of a full availability group are presented in I, 2, 5 and 181. No comparative evaluation of different methods is currently available. , 3.2 Trunk modularity According to Recommen
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