ITU-T G 722-2012 7 kHz audio-coding within 64 kbit s (Study Group 16)《64 kbit s内的7 KHz音频编码研究组16[作废 ITU-T G 722 应用3 西班牙语 ITU-T G 722 附件 A西班牙语ITU-T G 722西班牙语ITU-T G 722应用2 西班牙语ITU-T .pdf
《ITU-T G 722-2012 7 kHz audio-coding within 64 kbit s (Study Group 16)《64 kbit s内的7 KHz音频编码研究组16[作废 ITU-T G 722 应用3 西班牙语 ITU-T G 722 附件 A西班牙语ITU-T G 722西班牙语ITU-T G 722应用2 西班牙语ITU-T .pdf》由会员分享,可在线阅读,更多相关《ITU-T G 722-2012 7 kHz audio-coding within 64 kbit s (Study Group 16)《64 kbit s内的7 KHz音频编码研究组16[作废 ITU-T G 722 应用3 西班牙语 ITU-T G 722 附件 A西班牙语ITU-T G 722西班牙语ITU-T G 722应用2 西班牙语ITU-T .pdf(274页珍藏版)》请在麦多课文档分享上搜索。
1、 International Telecommunication Union ITU-T G.722TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU (09/2012) SERIES G: TRANSMISSION SYSTEMS AND MEDIA, DIGITAL SYSTEMS AND NETWORKS Digital terminal equipments Coding of voice and audio signals 7 kHz audio-coding within 64 kbit/s Recommendation ITU-T G.
2、722 ITU-T G-SERIES RECOMMENDATIONS TRANSMISSION SYSTEMS AND MEDIA, DIGITAL SYSTEMS AND NETWORKS INTERNATIONAL TELEPHONE CONNECTIONS AND CIRCUITS G.100G.199 GENERAL CHARACTERISTICS COMMON TO ALL ANALOGUE CARRIER-TRANSMISSION SYSTEMS G.200G.299 INDIVIDUAL CHARACTERISTICS OF INTERNATIONAL CARRIER TELEP
3、HONE SYSTEMS ON METALLIC LINES G.300G.399 GENERAL CHARACTERISTICS OF INTERNATIONAL CARRIER TELEPHONE SYSTEMS ON RADIO-RELAY OR SATELLITE LINKS AND INTERCONNECTION WITH METALLIC LINES G.400G.449 COORDINATION OF RADIOTELEPHONY AND LINE TELEPHONY G.450G.499 TRANSMISSION MEDIA AND OPTICAL SYSTEMS CHARAC
4、TERISTICS G.600G.699 DIGITAL TERMINAL EQUIPMENTS G.700G.799 General G.700G.709 Coding of voice and audio signals G.710G.729Principal characteristics of primary multiplex equipment G.730G.739 Principal characteristics of second order multiplex equipment G.740G.749 Principal characteristics of higher
5、order multiplex equipment G.750G.759 Principal characteristics of transcoder and digital multiplication equipment G.760G.769 Operations, administration and maintenance features of transmission equipment G.770G.779 Principal characteristics of multiplexing equipment for the synchronous digital hierar
6、chy G.780G.789 Other terminal equipment G.790G.799 DIGITAL NETWORKS G.800G.899 DIGITAL SECTIONS AND DIGITAL LINE SYSTEM G.900G.999 MULTIMEDIA QUALITY OF SERVICE AND PERFORMANCE GENERIC AND USER-RELATED ASPECTS G.1000G.1999 TRANSMISSION MEDIA CHARACTERISTICS G.6000G.6999 DATA OVER TRANSPORT GENERIC A
7、SPECTS G.7000G.7999 PACKET OVER TRANSPORT ASPECTS G.8000G.8999 ACCESS NETWORKS G.9000G.9999 For further details, please refer to the list of ITU-T Recommendations. Rec. ITU-T G.722 (09/2012) i Recommendation ITU-T G.722 7 kHz audio-coding within 64 kbit/s Summary Recommendation ITU-T G.722 describes
8、 the characteristics of an audio wideband (WB, 50 to 7 000 Hz) coding system which may be used for a variety of higher quality speech applications. The coding system uses sub-band adaptive differential pulse code modulation (SB-ADPCM) within a bit rate of 64 kbit/s. The system is henceforth referred
9、 to as 64 kbit/s (7 kHz) audio-coding. In the SB-ADPCM technique used, the frequency band is split into two sub-bands (higher and lower) and the signals in each sub-band are encoded using ADPCM. The system has three basic modes of operation corresponding to the bit rates used for 7 kHz audio-coding:
10、 64, 56 and 48 kbit/s. The latter two modes allow an auxiliary data channel of 8 and 16 kbit/s, respectively, to be provided within 64 kbit/s by making use of bits from the lower sub-band. Erratum 1 was incorporated in this new edition, as well as some additional typos identified within the main bod
11、y of ITU-T G.722. Annex A provides three frequency masks that can be used to simplify evaluation of the mass-produced equipment using ITU-T G.722 codecs, and make easier checks carried out during installation. The masks therein are specifically not intended to supplant any requirements of this Recom
12、mendation, but rather to suggest the needs of acceptance testing for production quantities of equipment using ITU-T G.722 codecs. They concern the measure of the signal-to-total distortion ratio in a loop with SB-ADPCM. Thus, these specifications do not aim at taking the place of the test digital se
13、quences of the ITU-T G.722 algorithm, but rather to ensure, once these sequences have been checked on a first model, that the quality of the equipment using these codecs is maintained. Annex B describes a scalable superwideband (SWB, 50-14 000 Hz) speech and audio-coding algorithm operating at 64, 8
14、0 and 96 kbit/s. The ITU-T G.722 superwideband extension codec is interoperable with ITU-T G.722. The output of the ITU-T G.722 SWB coder has a bandwidth of 50-14 000 Hz. The coder operates with 5 ms frames, has an algorithmic delay of 12.3125 ms and a worst case complexity of 22.76 WMOPS. By defaul
15、t, the encoder input and decoder output are sampled at 32 kHz. The superwideband encoder for improved ITU-T G.722 64 kbit/s core produces an embedded bitstream structured in two layers corresponding to two available bit rates from 80 to 96 kbit/s. The superwideband encoder for improved ITU-T G.722 5
16、6 kbit/s core produces an embedded bitstream structured in one layer corresponding to one available bit rate of 64 kbit/s. This 64 kbit/s mode is also scalable with the 80 kbit/s and 96 kbit/s modes. The bitstream can be truncated at the decoder side or by any component of the communication system t
17、o instantaneously adjust the bit rate to the desired value (96 kbit/s 80 kbit/s 64 kbit/s) with no need for out-of-band signalling. The underlying algorithm includes three main parts: higher band enhancements, bandwidth extension (BWE) and transform coding in modified discrete cosine transform (MDCT
18、) domain based on algebraic vector quantization (AVQ). In this revised version, an update was done to the text vectors of Annex B, so they can better assist in checking compliance of implementations. Annex C describes an alternative implementation of ITU-T G.722 Annex B based on floating-point arith
19、metic. While Annex B provides a bit-exact, fixed-point specification with the fixed-point C-source code available from the ITU-T, alternative floating implementation is useful for platforms equipped with floating-point processors. This alternative floating-point arithmetic was found to be fully inte
20、roperable with Annex B in all configurations including the cross configurations. Annex D describes a stereo extension of the wideband codec ITU-T G.722 and its superwideband extension, ITU-T G.722 Annex B. It is optimized for the transmission of stereo signals with limited additional bitrate, while
21、keeping full compatibility with both codecs. Annex D operates from 64 to 128 kbit/s with four superwideband stereo bitrates at 80, 96, 112 and 128 kbit/s and two wideband stereo bitrates at 64 and 80 kbit/s. The wideband stereo modes are backward compatible with legacy ITU-T G.722, while the superwi
22、deband modes offer the backward compatibility with both mono ii Rec. ITU-T G.722 (09/2012) wideband ITU-T G.722 and superwideband ITU-T G.722 Annex B. The stereo codec operates on 5 ms frames with an algorithmic delay of 13.625 ms for wideband stereo and 15.9375 ms for superwideband stereo. The enco
23、der input and decoder output are sampled at 16 kHz and 32 kHz for wideband and superwideband operating modes respectively. The underlying algorithm includes three main parts: stereo parameter analysis and down-mix at the encoder and stereo synthesis at the decoder. The first stereo extension layer i
24、s an 8 kbit/s layer comprising the basic stereo parameters, wideband inter-channel time difference/inter-channel phase difference/inter-channel coherence and sub-band inter-channel level differences. The second stereo layer, also an 8 kbit/s layer, enhances the stereo image by encoding low frequency
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