ITU-T G 765-1992 PACKET CIRCUIT MULTIPLICATION EQUIPMENT (Study Group XV)《分组电路倍增设备》.pdf
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1、CCITT RECMN*G.765 92 W 4862591 0575787 335 INTERNATIONAL TELECOMMUNICATION UNION CCITT THE INTERNATIONAL TELEGRAPH AND TELEPHONE CONSULTATIVE COMMITTEE GENERAL ASPECTS OF DIGITAL TRANSMISSION SYSTEMS; TERMINAL EQUIPM ENTS G.765 (09/92) PACKET CIRCUIT MULTIPLICATION EQUIPMENT i Recommendation G.765 C
2、CITT RECMN*G=765 92 4862591 0575788 271 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 Recommendatio
3、ns 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 of CCITT between Ple
4、nary Assemblies is covered by the procedure laid down in CCITT Resolution No. 2 (Melbourne, 1988). Recommendation G.765 was prepared by Study Group XV and was approved under the Resolution No. 2 procedure on the Ist of September 1992. CCIT NOTES 1) telecommunication administration and a recognized p
5、rivate operating agency. In this Recommendation, the expression “Administration” is used for conciseness to indicate both a 2) 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 reproduced or utilized in any
6、 form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from the ITU. CCITT RECMN*G.765 92 48b259L 0575789 108 Recommendation G.765 PACKET CIRCUIT MULTIPLICATION EQUIPMENT (1992) 1 General considerations of packet circuit multiplication eq
7、uipment This Recommendation is intended as a base document for the specification and interconnection of packet circuit multiplication equipment (PCME) and packet circuit multiplication systems (PCMS) from various manufacturers. PCME provides for the compression and packetization of several types of
8、traffic. A PCME converts speech, voiceband data, facsimile, channel-associated (i.e. in-band) signalling, common channel signalling, video and digital data information rom primary rate channel formats or synchronous digital hierarchy (SDH) level 1 formats to link access procedure D-channel (LAPD)-li
9、ke frame format. The LAPD-like link layer protocol is used with unacknowledged operation to limit delay in the network. The LAPD-like frames are transported as packet streams in a wideband packet network over a full or fractional primary channel, or an SDH virtual tributary. Wideband packet technolo
10、gy, as used herein, refers to packet systems requiring transmission channels capable of supporting rates above 64 kbitls up to 150 Mbitls. Application-specific protocol at layers 3 and above are used to transport the various types of traffic. A functional representation of a PCME node is shown in Fi
11、gure 1/G.765. Originating endpoint Channel-oriented side L Packet side I- VI 1 I I A Terminating endpoint P HGURE 1/G.765 Endpoint node Recommendation G.765 (09/92) 1 I CCITT RECMN*G-7b5 92 = 4862593 0575790 92T On the channel-oriented (full-rate) side, 1544 kbii/s and/or 2048 kbits or SDH synchrono
12、us transport module (STM)-l interfaces are provided. A time slot interconnect function can connect any time slot or group of time slots to the proper processing function as required to packetize the incoming channel-oriented traffic. A frame cross-connect function transfers the layer 2 produced by t
13、he processing functions to the appropriate packetized side interface. On the packetized side, 1544 kbits and/or 2048 kbitfs or SDH STM-1 interfaces are provided to carry the bit-serial packet streams. PCME aliows networking in both the circuit and packet domains, offers bandwidth on demand, and achi
14、eves graceful degradation of voice quality during congestion. A reference model for a PCME network is shown in Figure 2/G.765. Originating endpoint/ terminating endpoint Packetized side Channel-oriented side FIGURE 2/G.765 Reference Model for a PCME network 1.1 Speech processing For speech traffic,
15、the input speech samples may be coded at the originating endpoint of the access node before packetization by one of several coding methods. The stream of coded speech is transformed into packets with the format specified in Recommendation G.764. The samples are collected over a period of 16 ms and d
16、ivided into blocks, as defined in Recommendation G.764. The blocks are arranged to facilitate block dropping, as explained below. Periods of activity and inactivity are respectively called ?bursts? and ?gaps?. It is not necessary to transmit packets during gaps and silent intervais may be removed. T
17、he terminating endpoint at the far side reconstructs a continuous stream of speech from the incoming packets using the information in the packet header: the time stamp (TS) value and the sequence number. The time stamp field stores tbe value of the total accumulated variable delay that a packet has
18、experienced. Each node adds to the time stamp value, the time it took to serve the packet using its local clock as a reference. 2 Recommendation 6.765 (091p2) CCITT RECMNxG-7b5 72 4Bb259L 0575793 Bbb Recommendation 6.765 (09D2) 3 I Build-out procedures compensate for the variable delay that packets
19、may experience within the network. These procedures apply for the first packet of a voiceband spurt, for ail signalling packets and for the first packet after a missing packet is detected. When any of the above packets arrive within the time stamp value less than the value of the build-out., they ar
20、e stored for the following duration: Time before play-out = Build-out - Time stamp value If they arrive with a time stamp value that exceeds the build-out, they are discarded. Other packets are placed in the play-out queue in the order of their 3) an LAPD specific procedure; 4) a V. 120 specific pro
21、cedure. Interconnection with digital data on 64 kbit/s clear channels may involve ways to increase the compression gain, such as removing HDEC flags and/or network idle codes. 1.5 Facsimile For group 3 facsimile transport, the V.21 handshake signals may be transported as voiceband data in voice pack
22、ets defined in Recommendation G.764. The coded page information is demodulated to extract the baseband signais, which are transmitted in the facsimile frames described in P 12. There are three types of facsimile frames: 1) facsimile capability indication frames; 2) spurt header frames that contain m
23、odem control information; 3) facsimile page information frames that contain the T.4 coded image information UN unscrambled format. The PCME at the terminating end recombines the facsimile frames to reconstruct the original facsimile signal. 1.6 Video trunspolt Recommendation H.221 defines how video,
24、 audio signals of Recommendation H.261 at the rate of 64 kbit/s or less, and various data rates are framed, then submultiplexed, and combined with audiovisual control and indication signals for transmission over the multiple By multiple HO, H11 or H12 channels. In particular, the “information transf
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