ITU-T G 728-2012 Coding of speech at 16 kbit s using low-delay code excited linear prediction (Study Group 16)《使用比特率为16 Kb s低延时代码激励线性预测的语音编码 16号研究组》.pdf
《ITU-T G 728-2012 Coding of speech at 16 kbit s using low-delay code excited linear prediction (Study Group 16)《使用比特率为16 Kb s低延时代码激励线性预测的语音编码 16号研究组》.pdf》由会员分享,可在线阅读,更多相关《ITU-T G 728-2012 Coding of speech at 16 kbit s using low-delay code excited linear prediction (Study Group 16)《使用比特率为16 Kb s低延时代码激励线性预测的语音编码 16号研究组》.pdf(212页珍藏版)》请在麦多课文档分享上搜索。
1、 333 International Telecommunication Union ITU-T G.728TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU (06/2012) SERIES G: TRANSMISSION SYSTEMS AND MEDIA, DIGITAL SYSTEMS AND NETWORKS Digital terminal equipments Coding of voice and audio signals Coding of speech at 16 kbit/s using low-delay code exci
2、ted linear prediction Recommendation ITU-T G.728 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 C
3、HARACTERISTICS OF INTERNATIONAL CARRIER TELEPHONE 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
4、TRANSMISSION MEDIA AND OPTICAL SYSTEMS CHARACTERISTICS 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.
5、740G.749 Principal characteristics of higher 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
6、 equipment for the synchronous digital hierarchy 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 CHARACTERISTI
7、CS G.6000G.6999 DATA OVER TRANSPORT GENERIC ASPECTS 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.728 (06/2012) i Recommendation ITU-T G.728 Coding of speech at 16 kbit/s using
8、 low-delay code excited linear prediction Summary Recommendation ITU-T G.728 contains the description of an algorithm for the coding of speech signals at 16 kbit/s using low-delay code excited linear prediction (LD-CELP). The main description is found in the main body of the Recommendation, where th
9、e floating-point implementation of LD-CELP is described. Annexes A, B, C and D contain tables of constants used by the LD-CELP algorithm. In Annex E, the sequencing of variable adaptation and its use is given and Annex F lists the abbreviations used in this Recommendation. Annex G contains the alter
10、native16 kbit/s (16-bit) fixed-point specification of ITU-T G.728. The purpose of this Annex is to describe in sufficient detail how ITU-T G.728 operating at 16 kbit/s can be implemented on a fixed-point arithmetic device. A fixed-point implementation based on this description should be capable of f
11、ully interworking with a floating-point version of ITU-T G.728 and producing an output signal of equivalent quality, whether that signal is speech or an in-band data signal. ITU-T G.728 LD-CELP can operate at three bitrates other than 16 kbit/s, as defined in Annexes H and J. These additional operat
12、ing modes are particularly useful for applications such as digital circuit multiplication equipment (DCME). Annex H contains the modifications to ITU-T G.728 LD-CELP speech coding algorithm needed to reduce the coding bit rate down to 12.8 and 9.6 kbit/s. These modifications include the modification
13、s to the shape and gain codebooks. Operation at lower rates can assist DCME in handling increased voice traffic while showing a graceful quality degradation. Annex I is concerned with how to conceal the loss of bitstream information due to frame erasure or packet loss in the communications channel.
14、During normal operation, the decoder performs in a manner identical with the ITU-T G.728 main body or its Annex G when operating at 16 kbit/s, or with Annex H when operating at 12.8 or 9.6 kbit/s. The modification described in Annex I only involves changing the decoder during times when the bitstrea
15、m is unavailable. It is presumed that this loss of the bitstream is indicated to the decoder by some external means. Annex I is not essential for normal operation of ITU-T G.728. Annex J defines a 40 kbit/s extension that is optimized for voiceband data (VBD). The algorithmic delay is five samples l
16、ong (0.625 ms), which is the same as the other LD-CELP modes of operation described in this Recommendation. The 40 kbit/s VBD algorithm in Annex J is intended for VBD signal compression transmission in applications such as DCME. The algorithm allows soft transition to and from the other ITU-T G.728
17、LD-CELP operating modes, and is also designed to maintain toll-quality speech. Annex J is an implementation-efficient alternative to the 40 kbit/s ADPCM mode (ITU-T G.726) in DCME systems that incorporate LD-CELP (ITU-T G.728). Appendix I contains information on the implementation verification proce
18、dures for LD-CELP operating at 16 kbit/s (both floating- and fixed-point operation). This Appendix describes the digital test sequences and the measurement software to be used for implementation verification of ITU-T G.728. Provision is included for both floating-point implementations, based on the
19、ITU-T G.728 main body, and bit-exact fixed-point implementations, based on Annex G. Appendix II gives a broad outline of the speech performance of the 16 kbit/s LD-CELP algorithm when interacting with other parts of the network. Some general guidance is also offered on voice-like and non-voice signa
20、ls. The performance of ITU-T G.728 is compared to that of 32 kbit/s operating mode of the ITU-T G.726 ADPCM) and of ITU-T G.711 (64 kbit/s PCM). ii Rec. ITU-T G.728 (06/2012) Appendix III provides information on the operation of the algorithm defined in Annex I when frame erasures occur. This Recomm
21、endation includes an electronic attachment containing programs and test sequences for verification of the floating point and fixed point implementations of the ITU-T G.728 LD-CELP algorithm. History Edition Recommendation Approval Study Group 1.0 ITU-T G.728 1992-09-01 1.1 ITU-T G.728 Annex G 1994-1
22、1-01 15 1.2 ITU-T G.728 App. I Software 1995-07-01 1.3 ITU-T G.728 App. II 1995-11-13 1.4 ITU-T G.728 Annex H 1997-07-11 16 1.5 ITU-T G.728 Annex H 1999-05-27 16 1.6 ITU-T G.728 Annex I 1999-05-27 16 1.7 ITU-T G.728 Annex J 1999-09-30 16 1.8 ITU-T G.728 Annex G (1994) Cor. 1 2000-02-17 16 1.9 ITU-T
23、G.728 (1992) Amd. 1 2006-05-29 16 2.0 ITU-T G.728 2012-06-29 16 Rec. ITU-T G.728 (06/2012) iii FOREWORD The International Telecommunication Union (ITU) is the United Nations specialized agency in the field of telecommunications, information and communication technologies (ICTs). The ITU Telecommunic
24、ation Standardization Sector (ITU-T) is a permanent organ of ITU. ITU-T is responsible for studying technical, operating and tariff questions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Assembly
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