ITU-T G 711 1-2012 Wideband embedded extension for ITU-T G 711 pulse code modulation (Study Group 16)《(预发布)G 711脉冲编码调制用宽带嵌入式扩展》.pdf
《ITU-T G 711 1-2012 Wideband embedded extension for ITU-T G 711 pulse code modulation (Study Group 16)《(预发布)G 711脉冲编码调制用宽带嵌入式扩展》.pdf》由会员分享,可在线阅读,更多相关《ITU-T G 711 1-2012 Wideband embedded extension for ITU-T G 711 pulse code modulation (Study Group 16)《(预发布)G 711脉冲编码调制用宽带嵌入式扩展》.pdf(218页珍藏版)》请在麦多课文档分享上搜索。
1、 International Telecommunication Union ITU-T G.711.1TELECOMMUNICATION 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 Wideband embedded extension for ITU-T G.711 pulse code mo
2、dulation Recommendation ITU-T G.711.1 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 CHARACTERIST
3、ICS 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 TRANSMISSIO
4、N 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.740G.749 Pr
5、incipal 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 equipment
6、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 CHARACTERISTICS G.6000G.
7、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.711.1 (09/2012) i Recommendation ITU-T G.711.1 Wideband embedded extension for ITU-T G.71
8、1 pulse code modulation Summary Recommendation ITU-T G.711.1 describes an ITU-T G.711 embedded wideband speech and audio coding algorithm operating at 64, 80 and 96 kbit/s. The encoder input and decoder outputs are sampled at 16 kHz by default, but 8-kHz sampling is also supported. When sampled at 1
9、6 kHz, the output of the ITU-T G.711.1 coder can encode signals with a bandwidth of 50-7000 Hz at 80 and 96 kbit/s, and for 8-kHz sampling the output may produce signals with a bandwidth ranging from 50 up to 4000 Hz, operating at 64 and 80 kbit/s (the bandwidth of the narrowband signal output from
10、the decoder is characterized by the built-in split-band filterbank which has a frequency cut-offs at 4000 Hz). At 64 kbit/s, Recommendation ITU-T G.711.1 is compatible with Recommendation ITU-T G.711; hence an efficient deployment in existing ITU-T G.711-based voice over IP (VoIP) infrastructures is
11、 foreseen. The coder operates on 5 ms frames, has a maximum algorithmic delay of 11.875 ms, and has a worst-case computational complexity of 8.70 weighted million operations per second (WMOPS). The encoder produces an embedded bitstream structured in three layers corresponding to three available bit
12、 rates: 64, 80 and 96 kbit/s. The bitstream can be truncated at the decoder side or by any component of the communication system to adjust the bit rate to the desired value, but since it does not contain any information on which layers are contained, an implementation would require outband signallin
13、g on which layers are available. The underlying algorithm has a three-layer coding structure: log companded pulse code modulation (PCM) of the lower band including noise feedback, embedded PCM extension with adaptive bit allocation for enhancing the quality of the base layer in the lower band, and w
14、eighted vector quantization coding of the higher band based on modified discrete cosine transformation (MDCT). Annex A defines an alternative implementation of the ITU-T G.711.1 algorithm using floating-point arithmetic to facilitate its use on hardware optimized for floating-point operations. The a
15、ccompanying floating-point C-code is fully interoperable with the fixed-point C-code and provides equivalent quality. Annex B contains the RTP payload format, capability identifiers and parameters for signalling of ITU-T G.711.1 capabilities using Recommendation ITU-T H.245. The packet format is ful
16、ly compatible with the corresponding ITU-T G.711.1 RTP definitions to allow seamless interoperability. Annex C describes an algorithm applying ITU-T G.711.0 lossless compression algorithm to ITU-T G.711.1. As Recommendation ITU-T G.711.0 is more efficient when applied to large frame sizes, to achiev
17、e efficient compression rate as many ITU-T G.711.1 frames as possibly supported by ITU-T G.711.0 are encoded together. The use of this extension introduces no quality degradation when compared to Recommendation ITU-T G.711.1, as it is a lossless encoding of the ITU-T G.711 portion of the ITU-T G.711
18、.1 bitstream. Furthermore, there is no additional algorithmic delay; the delay will be the same as the one of ITU-T G.711.1, plus the selected size of the packet minus five milliseconds. It keeps the same robustness against packet losses as Recommendation ITU-T G.711.1 and no error propagation in ca
19、se of frame errors. The proposed scheme can easily be transcoded to ITU-T G.711.1 or ITU-T G.711.0 at minimum complexity. ii Rec. ITU-T G.711.1 (09/2012) Annex D describes a scalable superwideband (SWB, 50-14000 Hz) speech and audio coding algorithm operating from 96 to 112 kbit/s for ITU-T G.711.1
20、80 kbit/s core, and operating from 112 to 128 kbit/s for ITU-T G.711.1 96 kbit/s core. The ITU-T G.711.1 superwideband extension codec is interoperable with both ITU-T G.711 and ITU-T G.711.1. The output of the ITU-T G.711.1 SWB coder has a bandwidth of 50-14000 Hz. The coder operates with 5 ms fram
21、es, has an algorithmic delay of 12.8125 ms and a worst case complexity of 21.498 MOPS. By default, the encoder input and decoder output are sampled at 32 kHz. The superwideband encoder produces an embedded bitstream structured in two layers corresponding to two available bit rates from 96 to 112 kbi
22、t/s or from 112 to 128 kbit/s with a step size of 16 kbit/s depending on the chosen ITU-T G.711.1 core. The bitstream can be truncated at the decoder side or by any component of the communication system to instantaneously adjust the bit rate to the desired value with no need for out-of-band signalli
23、ng. At ITU-T G.711.1 80 kbit/s mode or 96 kbit/s mode, ITU-T G.711.1 SWB is fully interoperable with ITU-T G.711.1. The underlying algorithm includes three main parts: higher band enhancements, bandwidth extension (BWE) and transform coding in modified discrete cosine transform (MDCT) domain based o
24、n algebraic vector quantization (AVQ). Annex E describes a proposed draft of an alternative implementation of ITU-T G.711.1 Annex D based on floating-point arithmetic. While Annex D provides a bit-exact, fixed-point specification with the fixed-point C-source code available from the ITU-T, alternati
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