ITU-R BT 1381-3-2007 Serial digital interface-based transport interface for compressed television signals and packetized data in networked television production based on Recommenda.pdf
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1、 Rec. ITU-R BT.1381-3 1 RECOMMENDATION ITU-R BT.1381-3*Serial digital interface-based transport interface for compressed television signals and packetized data in networked television production based on Recommendation ITU-R BT.656*(Question ITU-R 5/6) (1998-2001-2006-2007) Scope This Recommendation
2、 specifies a data stream used to transport packetized data within a studio/production centre environment. The data packets and synchronizing signals are compatible with Recommendation ITU-R BT.656 (see Fig. 1). The ITU Radiocommunication Assembly, considering a) that the so-called serial digital int
3、erface (SDI) is in widespread use in television production studios and that it is documented in Recommendation ITU-R BT.656; b) that Recommendation ITU-R BR.1356 User requirements for application of compression in television production, already exists; c) that maintaining video signals in compressed
4、 form as far as possible throughout the production and post-production process offers the potential of increased operating efficiency; d) that programme data composed of audio, compressed video, metadata and other packetized data should be streamed in a single or multiple container(s); e) that a tra
5、nsport mechanism must be established which allows point-to-point and point-to-multipoint routing of these data through a digital production and post-production chain; f) that the transport should allow synchronous data transfer to alleviate absolute and relative timing between programme data; g) tha
6、t the transport mechanism should allow non-real time transfer of programme data, recommends 1 that for applications based on the SDI infrastructure in networked production and post-production based on Recommendation ITU-R BT.656, the serial data transport interface (SDTI) described in Annex 1 should
7、 be used. *This Recommendation should be brought to the attention of the International Electrotechnical Commission (IEC). *Recommendation ITU-R BT.656-4 Interfaces for digital component video signals in 525-line and 625-line television systems operating at the 4:2:2 level of Recommendation ITU-R BT.
8、601. 2 Rec. ITU-R BT.1381-3 Annex 1 SDI-based transport interface for compressed television signals and packetized data in networked television production 1 Introduction The carriage of packetized data utilizing the serial digital interface as defined by Recommendation ITU-R BT.656 is defined in thi
9、s Recommendation. The formatting of the packetized data and the assigned values is covered by this Recommendation. Specific applications are covered by other Recommendations. 1.1 Parameters of the protocol are compatible with the 4:2:2 component SDI format as shown in Fig. 2. 1.2 The data stream is
10、intended to transport any packetized data signal over the digital active lines that have a maximum data rate up to (approximately) 200 Mbit/s. 1.3 Additional texts will describe specific applications of this Recommendation and will include details of data formatting and other parameters, such as com
11、pression and error correction, if applicable. Rec. ITU-R BT.1381-3 3 2 Normative references Recommendation ITU-R BT.656 Interface for digital component video signals in 525-line and 625-line television systems operating at the 4:2:2 level of Recommendation ITU-R BT.601. Recommendation ITU-R BT.1364
12、Format of ancillary data signals carried in digital component studio interfaces. 3 General specifications 3.1 This Recommendation describes the assembly of a stream of 10-bit words. The resulting word stream should be serialized, scrambled, coded, and interfaced according to Recommendation ITU-R BT.
13、656. 3.2 The word clock rate should be 27 MHz in accordance with Recommendation ITU-R BT.601. 3.3 The data word length should be 10 bits: B0 to B9. B9 is the most significant bit (MSB). The nominal data rate for the resulting serial data stream should be 270 Mbit/s. 3.4 The timing reference signals
14、(EAV and SAV) occur on every line, and should be as described in Recommendation ITU-R BT.656. 3.5 An ANC data packet forming the header data is placed after EAV, as specified in 4. All payload is placed between SAV and EAV. The space after the header data but before SAV is available for ANC data as
15、specified by Recommendation ITU-R BT.1364. 3.6 The signal levels and specifications should be as described in Recommendation ITU-R BT.656. 3.7 The connector shall have mechanical characteristics conforming to the standard BNC type (IEC 61169-8 (2007-2) Part 8: Sectional specification RF coaxial conn
16、ectors with inner diameter of outer conductor 6.5 mm (0.256 in) with bayonet lock-characteristic impedance 50 (type BNC). NOTE 1 IEC 61169-8 (2007-2) is available in electronic version at the following address: http:/www.itu.int/md/R03-WP6A-C-0142/en. 4 Header data The data structure for the header
17、data should conform to Recommendation ITU-R BT.1364 ancillary data packet (type 2). The header data should be located immediately after the EAV as shown in Fig. 3. Ancillary data flag (ADF) Data ID (DID) Secondary data ID (SDID) 53 words Data count (DC) Header data 46 words Checksum (CS) 4 Rec. ITU-
18、R BT.1381-3 The header data should include the following: Line number 2 words Line number CRC 2 words Code and authorized address identifier (AAI) 1 word Destination address 16 words Source address 16 words Block type 1 word CRC flag 1 word Reserved data 5 words Header CRC 2 words 4.1 Ancillary data
19、 formatting The ADF, DID, SDID, DC, and CS should conform to Recommendation ITU-R BT.1364. 4.1.1 Data ID (DID) The data ID should have the value of 40hfor B7 to B0. B8 is even parity for B7 to B0 B9 is the complement of B8. 4.1.2 Secondary data ID (SDID) The secondary data ID should have the value o
20、f 01hfor B7 to B0. B8 is even parity for B7 to B0 B9 is the complement of B8. 4.1.3 Data count (DC) The data count should represent 46 words for the header with the value 2Ehfor B7 to B0. B8 is even parity for B7 to B0 B9 is the complement of B8. Rec. ITU-R BT.1381-3 5 4.2 Line number 4.2.1 The line
21、 number should represent the number from 1 to 525 for 525-line systems, and 1 to 625 for 625-line systems in order to check the data continuity. 4.2.2 The line number should be contained within L9 to L0. R5 to R0 are reserved and set to zero (see Fig. 4). EP1 is even parity for L7 to L0 EP2 is even
22、parity for R5 to R0, L9, L8. 4.3 Line number CRC Following each line number, a line number CRC should be inserted. The line number CRC applies to the data ID through the line number for the entire ten bits (see Fig. 5). The generator polynomial for the line number CRC should be G(x) = x18+ x5+ x4+ 1
23、, which conforms to ITU-T Recommendation X.25 Interface between Data Terminal Equipment (DTE) and Data Circuit-Terminating Equipment (DCE) for terminals operating in the packet mode and connected to public data networks by dedicated circuit (see Fig. 6). Line number CRC should be contained in C17 to
24、 C0, and the initial value should be set to all ones. 4.4 Code and AAI Both code and AAI should consist of four bits (see Fig. 7). Code: B3 to B0 AAI: B7 to B4 B8 is even parity for B7 to B0 B9 is the complement of B8. 6 Rec. ITU-R BT.1381-3 4.4.1 Code The code is intended to identify the length of
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