SMPTE ST 314M-2005 for Television - Data Structure for DV-Based Audio Data and Compressed Video - 25 and 50 Mb s.pdf
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1、SMPTE 314M Page 1 of 52 pages Table of contents 1 Scope 2 Normative references 3 Acronyms 4 Interface 5 Video compression Annex A Differences between IEC 61834 and SMPTE 314M Annex B Bibliography 1 Scope This standard defines the DV-based data structure for the interface of digital audio, subcode da
2、ta, and compressed video with the following parameters: 525/60 system 4:1:1 image sampling structure, 25 Mb/s data rate 525/60 system 4:2:2 image sampling structure, 50 Mb/s data rate 625/50 system 4:1:1 image sampling structure, 25 Mb/s data rate 625/50 system 4:2:2 image sampling structure, 50 Mb/
3、s data rate The standard does not define the DV-compliant data structure for the interface of digital audio, subcode data, and compressed video with the following parameters: 625/50 system 4:2:0 image sampling structure, 25 Mb/s data rate The compression algorithm and the DIF structure conform to th
4、e DV data structure as defined in IEC 61834. The differences between the DV-based data structure defined in this standard and IEC 61834 are shown in annex A. 2 Normative references The following standards, through reference in this text, constitute provisions of this standard. All standards are subj
5、ect to revision, and parties to agreements based on this standard are encouraged to investigate the possibility of applying the most recent edition of the standards indicated below. IEC 61834-1 (1997), Recording Helical-Scan Digital Video Cassette Recording System Using 6,35 mm Magnetic Tape for Con
6、sumer Use (525-60, 625-50, 1125-60, and 1250-50 Systems) Part 1: General Specifications IEC 61834-2 (1997), Recording Helical-Scan Digital Video Cassette Recording System Using 6,35 mm Magnetic Tape for Consumer Use (525-60, 625-50, 1125-60, and 1250-50 Systems) Part 2: SD Format for 525-60 and 625-
7、50 Systems Page 1 of 52 pages SMPTE 314M-2005Revision ofSMPTE 314M-1999Copyright 2005 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue, White Plains, NY 10601 (914) 761-1100 Approved September 5, 2005 SMPTE STANDARD for Television Data Structure for DV-Based Audio, Data and
8、Compressed Video 25 and 50 Mb/s SMPTE 314M-2005 Page 2 of 52 pages SMPTE 12M-1999, Television, Audio and Film Time and Control Code ITU-R BT.470-6 (11/98), Conventional Television Systems ITU-R BT.601-5 (10/95), Studio Encoding Parameters of Digital Television for Standard 4:3 and Wide-Screen 16:9 A
9、spect Ratios 3 Acronyms AAUX Audio auxiliary data AP1 Audio application ID AP2 Video application ID AP3 Subcode application ID APT Track application ID Arb Arbitrary AS AAUX source pack ASC AAUX source control pack B/W Black-and-white flag CGMS Copy generation management system CM Compressed macro b
10、lock DBN DIF block number DCT Discrete cosine transform DIF Digital interface DRF Direction flag Dseq DIF sequence number DSF DIF sequence flag DV Identification of a compression family EFC Emphasis audio channel flag EOB End of block FR Identification for the first or second half of each channel FS
11、C Identification of a DIF block in each channel LF Locked mode flag QNO Quantization number QU Quantization Res Reserved for future use SCT Section type SMP Sampling frequency SSYB Subcode sync block STA Status of the compressed macro block STYPE Signal type (see note) Syb Subcode sync block number
12、TF Transmitting flag VAUX Video auxiliary data VLC Variable length coding VS VAUX source pack VSC VAUX source control pack NOTE STYPE as used in this standard is different from that in ANSI/IEEE 1394. 4 Interface 4.1 Introduction As shown in figure 1, processed audio, video, and subcode data are out
13、put for different applications through a digital interface port. SMPTE 314M-2005 Page 3 of 52 pages 4.2 Data structure The data structure of the compressed stream at the digital interface is shown in figures 2 and 3. Figure 2 shows the data structure for a 50 Mb/s structure, and figure 3 shows the d
14、ata structure for a 25 Mb/s structure. In the 50 Mb/s structure, the data of one video frame are divided into two channels. Each channel is divided into 10 DIF sequences for the 525/60 system and 12 DIF sequences for the 625/50 system. In the 25 Mb/s structure, the data of one video frame are divide
15、d into 10 DIF sequences for the 525/60 system and 12 DIF sequences for the 625/50 system. Each DIF sequence consists of a header section, subcode section, VAUX section, audio section, and video section with the following DIF blocks respectively: Header section: 1 DIF block Subcode section: 2 DIF blo
16、cks VAUX section: 3 DIF blocks Audio section: 9 DIF blocks Video section: 135 DIF blocks As shown in figures 2 and 3, each DIF block consists of a 3-byte ID and 77 bytes of data. DIF data bytes are numbered 0 to 79. Figure 4 shows the data structure of a DIF sequence for a 50 or 25 Mb/s structure. F
17、igure 1 Block diagram on digital interface Audio, Video and Subcode Processing Digital Interface Formatting Digital Interface Subcode In Video In Audio In SMPTE 314M-2005 Page 4 of 52 pages Figure 2 Data structure of one video frame for 50 Mb/s structure Figure 3 Data structure of one video frame fo
18、r 25 Mb/s structure DIF sequence 1,0 Second channel DIF sequence n-1,0 DIF sequence 0,0 DIF sequence 1,1 DIF sequence n-1,1 DIF sequence 0,1 Subcode section Header section Audio and 54 DIF blocks (9 DIF blocks 6 DIF sequences) for the 625/50 system. 4.6.2.1.2 Emphasis Audio encoding is carried out w
19、ith the first order preemphasis of 50/15 s. For analog input recording, emphasis shall be off in the default state. 4.6.2.1.3 Audio error code In the encoded audio data, 8000hshall be assigned as an audio error code to indicate an invalid audio sample. This code corresponds to negative full-scale va
20、lue in ordinary twos complement representation. When the encoded data includes 8000h, it shall be converted to 8001h. 4.6.2.1.4 Relative audio-video timing The audio frame duration equals a video frame period. An audio frame begins with an audio sample acquired within the duration of minus 50 sample
21、s relative to zero samples from the first pre-equalizing pulse of the vertical blanking period of the input video signal. The first pre-equalizing pulse means the start of line number 1 for the 525/60 system, and the middle of line number 623 for the 625/50 system. 4.6.2.1.5 Audio frame processing T
22、his standard provides audio frame processing in the locked mode. The sampling frequency of the audio signal is synchronous with the video frame frequency. Audio data are processed in frames. For an audio channel, each frame contains 1602 or 1600 audio samples for the SMPTE 314M-2005 Page 18 of 52 pa
23、ges 525/60 system or 1920 audio samples for the 625/50 system. For the 525/60 system, the number of audio samples per frame shall follow the five-frame sequence as shown below: 1600, 1602, 1602, 1602, 1602 samples. The sample audio capacity shall be capable of 1620 samples per frame for the 525/60 s
24、ystem or 1944 samples per frame for the 625/50 system. The unused space at the end of each frame is filled with arbitrary values. 4.6.2.2 Audio shuffling The 16-bit audio data word is divided into two bytes; the upper byte which contains MSB, and the lower byte LSB, as shown in figure 9. Audio data
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