ITU-T H 130-1988 FRAME STRUCTURES FOR USE IN THE INTERNATIONAL INTERCONNECTION OF DIGITAL CODECS FOR VIDEOCONFERENCING OR VISUAL TELEPHONY《国际连接使用的会议电视或可视电话数字编解码器的帧结构特性》.pdf
《ITU-T H 130-1988 FRAME STRUCTURES FOR USE IN THE INTERNATIONAL INTERCONNECTION OF DIGITAL CODECS FOR VIDEOCONFERENCING OR VISUAL TELEPHONY《国际连接使用的会议电视或可视电话数字编解码器的帧结构特性》.pdf》由会员分享,可在线阅读,更多相关《ITU-T H 130-1988 FRAME STRUCTURES FOR USE IN THE INTERNATIONAL INTERCONNECTION OF DIGITAL CODECS FOR VIDEOCONFERENCING OR VISUAL TELEPHONY《国际连接使用的会议电视或可视电话数字编解码器的帧结构特性》.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 ( TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU,).%G0G042!.3-)33)/./ amended at Melbourne, 1988)IntroductionVideoconferencing and visual telephony are new services which require greater bit rates than telephony. In thestudies in CCITT on the ISDN and on i
2、nternational interworking, 384 kbit/s is emerging as an important channelcapacity for wideband services. On this basis it is recommended that the videoconferencing and visual telephoneservices should be based on multiples of 384 kbit/s.It is noted that both the 2048 kbit/s and 1544 kbit/s primary di
3、gital levels can be expressed by the formulay + (n 384) kbit/s, where n = 5 or 4 and y = 128 or 8 kbit/s, respectively.While this Recommendation covers only frame structures for transmission at the primary digital rates, it is notintended to suggest that transmissions using other frame structures or
4、 formats at primary rates or lower are precluded.In the future, frame structure based on other multiples and/or sub-multiples of 384 kbit/s may also be considered.1 Characteristics of a 2048 kbit/s (n = 5) frame structure for use in codecs described in 1 ofRecommendation H.1201.1 General characteris
5、ticsThe multiplex structure described under 1 is suitable for use on digital paths and connections whichinterconnect video codecs for videoconferencing or visual telephony using 2048 kbit/s transmission. The connectionsmay either be direct or via higher-order digital multiplex equipment compatible w
6、ith the primary PCM multiplexequipment defined in Recommendation G.732.Some of the characteristics of this multiplex structure are identical to those in Recommendation G.704 and arecovered by cross-references to that Recommendation.The main features of the multiplex structure are that it provides: o
7、ne 64 kbit/s channel for frame alignment, alarm signals and other signals as required; one 64 kbit/s channel reserved for the transmission of the sound signal; one 32 kbit/s channel for codec-to-codec information; the option of one or two 64 kbit/s channels and/or one 32 kbit/s channel for stereopho
8、nic sound, facsimile,data, etc.; the possibility of end-to-end and subscriber-to-network signalling; the remaining capacity (between 1664 and 1888 kbit/s) is used for the encoded video signal.1.1.1 Fundamental characteristicsThe multiplex structure contains 32 time slots, each of 64 kbit/s.1.1.2 Bit
9、 rateThe nominal bit rate is 2048 kbit/s. The tolerance on this rate is 50 parts per million (ppm).1.1.3 Timing signalThe timing signal is a 2048-kHz signal from which the bit rate is derived. It should be possible to derive thetiming signal from an internal source or from the network.1.1.4 Interfac
10、esThe interfaces should comply with Recommendation G.703.2 Fascicle III.6 - Rec. H.1301.2 Frame structure and time slot allocationsThe frame structure is in accordance with Recommendation G.704, 3.3. The time slot (TS) allocations withinthe frame are given in Table 1/H.130, two options are shown acc
11、ording to whether or not the network is switched(under control of signals within the frame structure).1.3 Codec-to-codec informationThis information is transmitted in the 32 kbit/s channel corresponding to odd frames of TS2 (frame parity isgained from the multiframe alignment in the 8th bit of alter
12、nate TS2, the frames are consecutively numbered 0 to 15,forming a multiframe).The 32 kbit/s channel is structured in a multiframe and supermultiframe derived from 128 consecutive 256 bitframes. The multiframe is composed of 8 octets numbered 1, 3, 5, ., 15, each from TS2 in an odd numbered 256 bitfr
13、ame. The supermultiframe corresponds to 8 consecutive multiframes which are numbered 0, 1, 2, ., 7.The use of the bits in each octet in the odd frames is as follows: Bit 1 for clock justification, Bit 2 for buffer state, Bit 3 for coding mode identification; the 8 consecutive bits 3 of TS2 in a mult
14、iframe will carry thefollowing information:Bit 3.1 1)Codec facilities (see below)Bit 3.3 Colour transmission (1 if provided)Bit 3.5 split-screen indicator (if required)Bit 3.7 Fast update request (1 if required)Bit 3.9 Advance warning of interruption (1 if required)Bit 3.11 Sound power signal, for u
15、se with encryptedmultipoint (under study)Bit 3.13 Data distribution (1 if required)Bit 3.15 Detection of looped ports (set to 1)Bit 3.1 is used to signal the availability of certain facilities in the decoder at supermultiframe rate, as follows:Bit 3.1.0 Graphics (mode 1) (1 if provided)Bit 3.1.1 Hig
16、h-quality speech (1 if provided)Bit 3.1.2 4 x 384 kbit/s capability (see Note 1) (1 if provided)Bit 3.1.3 Encryption (1 if provided)Bit 3.1.4 System M (1 if 525-line signal beingcoded)Bit 3.1.5 Graphics (mode 2) (1 if provided)Bit 3.1.6 Spare (set to 0)Bit 3.1.7 2 x 384 kbit/s capability (see Note 1
17、) (1 if provided)_1)The notation used here should be interpreted as in the following examples: Bit 3.1 means Bit 3 (in TS2) of frame No. 1 in eachmultiframe: Bit 3.1.0 means Bit 3 (in TS2) of frame No. 1 in multiframe No. 0 of each supermultiframe.Fascicle III.6 - Rec. H.130 3TABLE 1/H.130Timeslot a
18、llocation in 32 Timeslot frame structure of Recommendation G.704Timeslot allocation(within the 256-bit frame)Bit rate(kbit/s)Non switched(i)Switched(ii)Frame alignment, network alarms, etc. as in G.704 0 0Speech information 64 1 1Codec-to-codec information 32 2 2Signalling information(subscriber-net
19、work)64 - 16Fax, data, etc. (optional) up to2 6417and/or1817and/or18Encoded video information (minimum) (i) 27 64(ii) 26 643 to 16+19 to 313 to 15+19 to 31Note 1 Frame alignment, network alarms, etc.This information is transmitted in TSO with the same rules and characteristics as recommended in Reco
20、mmendationG.704. Additionally, bit 8 in odd frames is used as a synchronization bit which is required when the codec is used withsynchronous digital networks. On receipt of this bit set to zero, the transmission clock for the encoder will be derivedfrom the incoming data stream. This bit is always s
21、et to one in the encoder.Note 2 SpeechSpeech is transmitted at 64 kbit/s in TS1. The coding law is the A- law of Recommendation G.711 or, for future applications, thelaw that will be recommended by CCITT for higher quality speech. In the case of stereophonic transmission, the second speechchannel wi
22、ll be transmitted in TS17.Note 3 Codec-to-codec informationThis information requires a capacity of 32 kbit/s and is transmitted on odd frames of TS2. The remaining 32 kbit/s capacity on theeven frames of TS2 will be used for encoded video or data transmission. The detailed use and structure of the 3
23、2 kbit/s channel forcodec-to-codec information is described in 1.3.Note 4 Signalling (subscriber-to-network)A capacity of 16 kbit/s is considered adequate for videoconference as for basic access. The methods of switched access to the ISDNat 2048 kbit/s have not yet been formulated. Option (ii) avoid
24、s any problems in this respect, by leaving the whole of TS16 (64 kbit/s)clear of video information and available for subscriber signalling and call set-up information when switched access is required. Fornon-switched access, option (i) should be used.Note 5 Facsimile, data, etc.When required, this i
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