ITU-T J 41-1988 CHARACTERISTICS OF EQUIPMENT FOR THE CODING OF ANALOGUE HIGH QUALITY SOUND PROGRAMME SIGNALS FOR TRANSMISSION ON 384 kbit s CHANNELS《用于编码在384kbit s通道中传输的高质量模拟声音节目信号.pdf
《ITU-T J 41-1988 CHARACTERISTICS OF EQUIPMENT FOR THE CODING OF ANALOGUE HIGH QUALITY SOUND PROGRAMME SIGNALS FOR TRANSMISSION ON 384 kbit s CHANNELS《用于编码在384kbit s通道中传输的高质量模拟声音节目信号.pdf》由会员分享,可在线阅读,更多相关《ITU-T J 41-1988 CHARACTERISTICS OF EQUIPMENT FOR THE CODING OF ANALOGUE HIGH QUALITY SOUND PROGRAMME SIGNALS FOR TRANSMISSION ON 384 kbit s CHANNELS《用于编码在384kbit s通道中传输的高质量模拟声音节目信号.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 * TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU4%,%6)3)/.G0G0!.$G0G03/5.$G0G042!.3-)33)/.#(!2!#4%2)34)#3G0G0/ amended at Melbourne, 1988)1 General1.1 This Recommendation gives the characteristics of equipment for the coding of 15 kHz monophonic analogueso
2、und-programme signals into a digital signal of 384 kbit/s. For stereophonic operation, two monophonic digital codecscan be utilized. Two monophonic digital signals that form a stereophonic signal should be routed together over thesame transmission systems (path) to avoid any difference in transmissi
3、on delay.1.2 Equipment for coding of analogue sound-programme signals, as specified in this Recommendation, can be:a) A stand-alone encoder/decoder with a digital interface at 384 kbit/s. The encoder operation and the decoderoperation may be performed in two separate equipments or in the same equipm
4、ent.b) A combined encoder-multiplex/decoder-demultiplex with a digital interface at 1544 or 2048 kbit/s. Theencoder-multiplex operation and the decoder-demultiplex operation may be performed in two separateequipments or in the same equipment.In case b), it is not mandatory to provide an external dig
5、ital sound programme access port at 384 kbit/s.1.3 Two methods of encoding have been specified by the CMTT 1 and these form the basis for thisRecommendation.2 Transmission performanceThe transmission performance per encoder/decoder pair shall be such that the limits specified inRecommendation J.21 (
6、CCIR Recommendation 505) are not exceeded by three encoder/decoder pairs connected intandem at audio frequencies.Note When transmitting stereophonic sound programme signals, it is necessary that the encoder and decoderare designed such that they will meet the specified requirements for phase differe
7、nce.In order to avoid any unnecessary complexity, the sampling of channels A and B should be performedsimultaneously.3 Method of encoding3.1 The recommended encoding laws are as specified in 1.3.2 These encoding laws are based on a uniformly quantized 14-bit per sample PCM technique with compandinga
8、nd employ either:a) eleven-segment 14- to 11-bit instantaneous A-law companding, orb) five-range 14- to 10-bit near instantaneous companding.For provisional rules for through connection between the two companding methods, see Note 4 in 1.3.3 Other coding techniques which may be used by bilateral agr
9、eement of the Administrations concerned are alsolisted in Annex A. However, these techniques do not form part of this Recommendation.2 Fascicle III.6 - Rec. J.413.4 Equipment characteristics common to both methods of encoding are:Nominal audio bandwidth: 0.04 to 15 kHz.Audio interface: see Recommend
10、ation J.21, 2.Sampling frequency (CCIR Recommendation 606): 32 (1 5 105) kHz.Pre/de-emphasis: Recommendation J.17 with 6.5 dBattenuation at 800 Hz.Note Pre-emphasis and de-emphasis are not used by the Administrations of Canada, Japan and the UnitedStates on their national circuits and on internation
11、al circuits between each other, but are used on international circuits toother countries.4 Equipment using instantaneous companding4.1 Coding table4.1.1 The coding law is specified in Table 1/J.41.4.1.2 The allocation of character signals (PCM code words) is also given in Table 1/J.41. Two variants
12、(A and B) ofcharacter signals are allowed.Note In the case of digital interconnection between variants A and B, the conversion from one set of charactersignals to the other in Table 1/J.41 can be implemented without any performance degradation. In the case of analogueinterconnection, a small reducti
13、on in the S/N ratio, in the order of 3 dB, is expected.4.2 Bit ratesNominal source coding bit rate (32 kHz 11 bits/sample) 352 kbit/sError protection 32 kbit/sTransmission bit rate 384 kbit/s4.3 Overload levelThe overload level for a sine-wave signal at zero dB insertion loss frequency (2.1 kHz) of
14、the pre-emphasis is+ 15 dBm0s.4.4 Digital signal formatThe character signal bit sequences for variants A and B are shown in Figure 1/J.41.4.5 Bit error protectionOne parity bit is added to each 11-bit character signal.Fascicle III.6 - Rec. J.41 3TABLE 1/J.4111 segment, 14 to 11 bit instantaneous com
15、panding A-law PCM for sound-programme signals (positive half only)a)11 bit codingAllocation of character signalsNormalizedanalogueinputNormalizedanalogueoutputCompresseddigitalcodeSegmentNo.Effectiveresolution (bits)1 2 3 4Variant Ab)5 6 7 8 9 1011 S X Y ZVariant B c)A B C D E F G8160 to 81924096 to
16、 4128817641128957681 9 0 1 1 11 1 1 1 1 10 0 0 0 0 0100 1 1 01 1 1 1 1 1 10 0 0 0 0 0 04080 to 40962048 to 2064408820567676402 10 0 1 1 01 1 1 1 1 10 0 0 0 0 0100 1 0 11 1 1 1 1 1 10 0 0 0 0 0 02040 to 20481024 to 1032204410286395123 11 0 1 0 11 1 1 1 1 10 0 0 0 0 0100 1 0 01 1 1 1 1 1 10 0 0 0 0 0
17、01020 to 1024512 to 51610225145113844 12 0 1 0 01 1 1 1 1 10 0 0 0 0 0100 0 1 11 1 1 1 1 1 10 0 0 0 0 0 0510 to 512256 to 2585112573832565 13 0 0 1 11 1 1 1 1 10 0 0 0 0 0100 0 1 01 1 1 1 1 1 10 0 0 0 0 0 0255 to 256128 to 129255.5128.52551280 0 1 01 1 1 1 1 10 0 0 0 0 0100 0 0 11 1 1 1 1 1 10 0 0 0
18、 0 0 0127 to 1280 to 1127.50.51270614010001 1 1 1 1 10 0 0 0 0 0X00 0 0 01 1 1 1 1 1 10 0 0 0 0 0 0X 11th bit freely available in variant A.a)Character signals for the negative half are the same as those for the positive half except that the sign bits (bit 1 and S for variants A and B respe ctively)
19、 are inverted.b)Variant A is presently used with digital equipment based on a 2048 kbit/s hierarchy. After coding and before the parity bit is inserted, bits 1 to 5 are inverted.c)Variant B is presently used with digital equipment based on a 1544 kbit/s digital hierarchy. All bits, including the par
20、ity bit, are inverted and reformatted before transmission (see Figure 1/J.41).4 Fascicle III.6 - Rec. J.414.5.1 Variant AThe five most significant bits of each sample are protected against errors by means of a parity bit. In the converter ofthe transmitting part, the parity bit is added as the 12th
21、bit to each code word. Its value is fixed so that the 6 bit parity blockalways contains only an odd number of “one” values. In order that even bit error structures can also result in parityviolations, the protected and unprotected bits of each code word are interleaved in ascending and descending se
22、quence, asshown in Figure 1/J.41.4.5.2 Variant BThe added parity bit shall be based on the 7 most significant bits of the 11-bit PCM word. These are bits S, X, Y, Z,A, B, C. The parity of “ones” bit shall be even. Since the chord bits (X, Y, Z) always contain a one, the minimum number ofones per sam
23、ple is 2, resulting in a minimum ones density of 1/6.4.5.3 Error concealmentIf a parity violation is detected, an error concealment technique should be applied (for instance, replacement byinterpolation, extrapolation or repetition. For multiple parity violation (error bursts), a muting technique sh
24、ould be applied.4.6 Digital interface at 384 kbit/sUnder study (see Recommendations G.735 and G.737).Fascicle III.6 - Rec. J.41 54.7 SynchronizationThe coding equipment operates in synchronism with the clock of subsequent multiplex equipment or the networkclock. In cases where the digital interface
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