SMPTE ST 2041-3-2010 Format for Non-PCM Audio and Data in AES3 MPEG-4 AAC and HE AAC Compressed Digital Audio in ADTS and LATM LOAS Wrappers《AES3中非PCM音频和数据格式 ADTS和LATM LOAS封装器中的M.pdf
《SMPTE ST 2041-3-2010 Format for Non-PCM Audio and Data in AES3 MPEG-4 AAC and HE AAC Compressed Digital Audio in ADTS and LATM LOAS Wrappers《AES3中非PCM音频和数据格式 ADTS和LATM LOAS封装器中的M.pdf》由会员分享,可在线阅读,更多相关《SMPTE ST 2041-3-2010 Format for Non-PCM Audio and Data in AES3 MPEG-4 AAC and HE AAC Compressed Digital Audio in ADTS and LATM LOAS Wrappers《AES3中非PCM音频和数据格式 ADTS和LATM LOAS封装器中的M.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、 Copyright 2010 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue, White Plains, NY 10601 (914) 761-1100 Approved August 2, 2010 Table of Contents Page Foreword . 2 Intellectual Property 2 Introduction 3 1 Scope . 4 2 Conformance Notation . 4 3 Normative References . 4 4 Defi
2、nitions and Acronyms 5 4.1 Definitions 5 4.2 Acronyms . 6 5 MPEG-4 AAC Data in an ADTS Wrapper 6 5.1 Overview 6 5.2 Burst_preamble 7 5.3 AAC Burst Payload 8 5.4 AES3 Frame Rate (Sampling Frequency) . 8 5.5 AAC Reference Point . 8 5.6 AAC Standard Repetition Rate 8 5.7 AAC Decoding Latency (Professio
3、nal) . 9 5.8 AAC Reference Position 9 5.9 Use of Pause Data Bursts to Fill Gaps in AAC Data Streams . 9 6 MPEG-4 HE AAC Data in an ADTS Wrapper 9 6.1 Overview 9 6.2 Burst_preamble 10 6.3 HE AAC Burst Payload 11 6.4 AES3 Frame Rate (Sampling Frequency) . 11 6.5 HE AAC Reference Point . 11 6.6 HE AAC
4、Standard Repetition Rate 11 6.7 HE AAC Decoding Latency (Professional). 11 6.8 HE AAC Reference Position 12 6.9 Use of Pause Data Bursts to Fill Gaps in HE AAC Data Streams . 12 Page 1 of 18 pages SMPTE ST 2041-3:2010 SMPTE STANDARD Format for Non-PCM Audio and Data in AES3 MPEG-4 AAC and HE AAC Com
5、pressed Digital Audio in ADTS and LATM / LOAS Wrappers SMPTE ST 2041-3:2010 Page 2 of 18 pages 7 MPEG-4 AAC Data in an LATM/LOAS Wrapper 12 7.1 Overview . 12 7.2 Burst_preamble 13 7.3 AAC Burst Payload . 14 7.4 AES3 Frame Rate (Sampling Frequency) 14 7.5 AAC Reference Point . 14 7.6 AAC Standard Rep
6、etition Rate . 14 7.7 AAC Decoding Latency (Professional) . 14 7.8 AAC Reference Position . 14 7.9 Use of Pause Data Bursts to Fill Gaps in AAC Data Streams . 14 8 MPEG-4 HE AAC Data in an LATM/LOAS Wrapper 15 8.1 Overview . 15 8.2 Burst_preamble 16 8.3 HE AAC Burst Payload . 17 8.4 AES3 Frame Rate
7、(Sampling Frequency) 17 8.5 HE AAC Reference Point . 17 8.6 HE AAC Standard Repetition Rate . 17 8.7 HE AAC Decoding Latency (Professional) . 17 8.8 HE AAC Reference Position . 17 8.9 Use of Pause Data Bursts to Fill Gaps in HE AAC Data Streams . 17 Annex A Bibliography (Informative) . 18 Foreword S
8、MPTE (the Society of Motion Picture and Television Engineers) is an internationally-recognized standards developing organization. Headquartered and incorporated in the United States of America, SMPTE has members in over 80 countries on six continents. SMPTEs Engineering Documents, including Standard
9、s, Recommended Practices, and Engineering Guidelines, are prepared by SMPTEs Technology Committees. Participation in these Committees is open to all with a bona fide interest in their work. SMPTE cooperates closely with other standards-developing organizations, including ISO, IEC and ITU. SMPTE Engi
10、neering Documents are drafted in accordance with the rules given in Part XIII of its Administrative Practices. SMPTE ST 2041-3 was prepared by Technology Committee 32NF. Intellectual Property At the time of publication no notice had been received by SMPTE claiming patent rights essential to the impl
11、ementation of this Standard. However, attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. SMPTE shall not be held responsible for identifying any or all such patent rights. SMPTE ST 2041-3:2010 Page 3 of 18 pages Introduction This sec
12、tion is entirely informative and does not form an integral part of this Engineering Document. The MPEG Committee of ISO/IEC has produced a number of different audio compression technologies. Each of these is nominally an “emission” codec, which means that its design does not include consideration fo
13、r maintaining audio quality in multiple decode re-encode cycles. As a result, many operators will desire to keep the original compressed bitstream intact while routing, switching, and when other baseband manipulations are done with associated video signals. The first of these codecs, MPEG-1 Layer I
14、and II audio (documented in ISO/IEC 11172-3) and MPEG-2 Layers I, II, and III audio (documented in ISO/IEC 13818-3) were intended to be bit-wise compatible within Layers I and II, while MPEG-2 Layer III used “Non-Backwards Compatible” extensions. MPEG-2 Layer III audio has not been widely used in br
15、oadcast, however some recent extensions to it have been added via ISO/IEC 14496-3 Subpart 9 which may result in wider use. The second of these codecs, MPEG-2 AAC (documented in ISO/IEC 13818-7) is intentionally non-compatible with Layer I, II, or III, and is known as “Advanced Audio Coding.” A secon
16、d set of documents, which extended MPEG-2 AAC were documented as a part of MPEG-4 in ISO/IEC 14496-3. Although MPEG-4 AAC was intended to be backwards compatible with MPEG-2 AAC, no assumption should be made that an MPEG-2 decoder can decode an MPEG-4 AAC bitstream (largely due to the different tran
17、sport wrappers). When the SBR tool was added to AAC, creating “HE AAC,” it was documented in Amendments to both ISO/IEC 13818-7 and ISO/IEC 14496-3. It should be noted that there are two alternative “wrappers” standardized for AAC/HE AAC, one called ADTS (widely used in Japanese Digital Broadcasting
18、) and the other known as LATM/LOAS, since the MPEG-4 (ISO/IEC 14496-3) AAC codecs introduced new features and capabilities that require a transport format which can signal their contents. In order to be able to pass the audio bitstream without the necessity to do partial decoding to locate flags the
19、 wrapper was devised. LATM/LOAS is specified as the wrapper for MPEG-4 AAC/HE AAC audio streams within DVB transport stream broadcasting applications. As a result, this suite of SMPTE standards will document carriage of both. The following suite of SMPTE standards defines the carriage of MPEG compre
20、ssed audio bitstreams within an AES3 carrier bitstream: SMPTE ST 2041-1, Format for Non-PCM Audio in AES3 MPEG-1/MPEG-2 Layers I, II, and III Audio SMPTE ST 2041-2, Format for Non-PCM Audio in AES3 MPEG-2 AAC/HE AAC Audio in ADTS SMPTE ST 2041-3, Format for Non-PCM Audio and Data in AES3 MPEG-4 AAC
21、and HE AAC Compressed Digital Audio in ADTS and LATM/LOAS Wrappers The bitstreams defined in this standard can be carried independently of video as AES3 bitstreams or embedded into SDI or HD-SDI bitstreams in the normal manner specified by other SMPTE standards. SMPTE ST 2041-3:2010 Page 4 of 18 pag
22、es 1 Scope This Standard specifies the method of packing MPEG-4 AAC and MPEG-4 HE AAC data rate reduced audio streams contained in either an ADTS or an LATM/LOAS wrapper into an AES3 transport stream. It also specifies the content of the data_type_dependent field of the burst_info (Pc) word of the S
23、ynchronization preamble used to signal the wrapper type and other necessary information about the payload. The Standard specifies the repetition rate, reference point, decoding latency and use of Pause data bursts in interrupted streams. This Standard supports the MPEG-4 AAC Profile, the MPEG-4 High
24、 Efficiency AAC Profile, and the MPEG-4 High Efficiency AAC v2 Profile. This Standard is limited to carriage of a single audio elementary stream. 2 Conformance Notation Normative text is text that describes elements of the design that are indispensable or contains the conformance language keywords:
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