WO2006013767A1 - 情報記録装置、情報記録プログラム、情報記録プログラムを記録した記録媒体、記録媒体、情報記録方法、情報再生装置、情報再生方法、情報再生プログラム、および情報再生プログラムを記録した記録媒体 - Google Patents
情報記録装置、情報記録プログラム、情報記録プログラムを記録した記録媒体、記録媒体、情報記録方法、情報再生装置、情報再生方法、情報再生プログラム、および情報再生プログラムを記録した記録媒体 Download PDFInfo
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- WO2006013767A1 WO2006013767A1 PCT/JP2005/013803 JP2005013803W WO2006013767A1 WO 2006013767 A1 WO2006013767 A1 WO 2006013767A1 JP 2005013803 W JP2005013803 W JP 2005013803W WO 2006013767 A1 WO2006013767 A1 WO 2006013767A1
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- WIPO (PCT)
- Prior art keywords
- recording
- information
- data
- stream data
- recording medium
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Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/76—Television signal recording
- H04N5/91—Television signal processing therefor
- H04N5/92—Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback
- H04N5/9201—Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving the multiplexing of an additional signal and the video signal
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- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B27/00—Editing; Indexing; Addressing; Timing or synchronising; Monitoring; Measuring tape travel
- G11B27/10—Indexing; Addressing; Timing or synchronising; Measuring tape travel
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B27/00—Editing; Indexing; Addressing; Timing or synchronising; Monitoring; Measuring tape travel
- G11B27/10—Indexing; Addressing; Timing or synchronising; Measuring tape travel
- G11B27/19—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier
- G11B27/28—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier by using information signals recorded by the same method as the main recording
- G11B27/32—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier by using information signals recorded by the same method as the main recording on separate auxiliary tracks of the same or an auxiliary record carrier
- G11B27/322—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier by using information signals recorded by the same method as the main recording on separate auxiliary tracks of the same or an auxiliary record carrier used signal is digitally coded
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B2220/00—Record carriers by type
- G11B2220/20—Disc-shaped record carriers
- G11B2220/25—Disc-shaped record carriers characterised in that the disc is based on a specific recording technology
- G11B2220/2537—Optical discs
- G11B2220/2541—Blu-ray discs; Blue laser DVR discs
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/76—Television signal recording
- H04N5/84—Television signal recording using optical recording
- H04N5/85—Television signal recording using optical recording on discs or drums
Definitions
- the present invention relates to an information recording apparatus that records a plurality of stream data such as video data and sub data on a recording medium such as an optical disk, and a recording medium recorded by such an information recording apparatus.
- the present invention relates to an information reproducing apparatus that reproduces a plurality of stream data, and a method and a program thereof.
- Video data and sub-data are each recorded on an optical disc in the MPEG-2 TS (Transport Stream) format.
- MPEG-2 TS of video data (hereinafter referred to as video TS) has a structure in which HD video compressed with MPEG-2 video format and main audio compressed with AC-3 format are multiplexed.
- the sub-data MPEG-2 TS (hereinafter referred to as “audio TS”) has a structure in which sub-audio compressed by the AC-3 method is multiplexed in the same way as the main audio.
- management information related to a stream will be described.
- a time address conversion table is recorded on the optical disc to enable accurate random access playback and special playback.
- This table stores a pair of a time stamp (Presentation Time Stamp) at a point where decoding can be started and a relative address from the head of TS data.
- Fig. 17 (a) it is assumed that the head of each of the partial data VI, V2, V3, and V4 of the video TS is a decoding start possible point.
- the time stamps indicating the decoding start possible points are Tl, ⁇ 2, ⁇ 3, ⁇ 4 and the relative addresses from the head are Pl, ⁇ 2, ⁇ 3, ⁇ 4, the time address conversion table is shown in Fig. 17 ( The tape is as shown in b). The same applies to audio TS, and the time address conversion table is as shown in Fig. 17 (c).
- the optical disc power in which the audio TS as the sub data is recorded corresponds to the recording / playback editing of the sub data
- the editing is performed on the device, and the video TS is partially deleted.
- a mismatch occurs in the playback section between the video TS and the audio TS to be played back synchronously.
- a device that supports recording / playback editing of sub-data needs to delete the audio TS section corresponding to the deleted section in the video TS.
- the current technology has a problem that complicated processing is required to search the corresponding section. Disclosure of the invention
- the present invention has been made in view of the above problems, and an object of the present invention is to record a plurality of stream data to be reproduced in synchronization with each other on a recording medium.
- Information recording apparatus, information recording program, recording medium recording information recording program, recording medium, information recording method, information reproducing apparatus, information reproducing method, capable of reducing amount of memory used when reproducing stream data, An information reproducing program and a recording medium on which the information reproducing program is recorded are provided.
- an information recording apparatus includes a recording unit that records information on a recording medium.
- a recording unit that records information on a recording medium.
- a plurality of pieces of stream data having partial data power are recorded on the recording medium.
- Table recording control means for performing control to record a table indicating a combination of information on the recording medium, and the data recording control means includes a plurality of stream data to be reproduced at least partially in synchronization with each other.
- the table recording control means force The table corresponding to at least two stream data Control is performed to record the table corresponding to each stream data on the recording medium in a state in which the reproduction time lists in the file match each other.
- the recording medium according to the present invention includes a plurality of pieces of stream data having partial data power, a reproduction time list indicating the timing at which each partial data is to be reproduced, and the reproduction of each of the reproduction time lists.
- the table corresponding to each stream data is recorded in a state where the reproduction time lists in the table corresponding to at least two stream data are matched with each other.
- the information recording method is an information recording method for recording information on a recording medium, wherein the stream data including a plurality of partial data is recorded on the recording medium.
- a table recording step for recording on a recording medium, and in the data recording step, at least a part of the stream data to be reproduced in synchronization with each other is recorded on the recording medium, the table recording step
- the table corresponding to each stream data is recorded on the recording medium in a state where the reproduction time lists in the table corresponding to at least two stream data are matched with each other.
- the reproduction time lists in the table corresponding to at least two stream data match each other. Will do.
- the force playback time lists to be read to the table force memory corresponding to each stream data match. It is possible to reduce the amount of memory used.
- the information reproducing apparatus provides stream data composed of a plurality of partial data in an information reproducing apparatus including a reproducing unit that reproduces information recorded on a recording medium!
- Data reproduction control means for controlling the reproduction unit to read data from the recording medium, a reproduction time list indicating the timing for reproducing each partial data, and partial data corresponding to each reproduction time of the reproduction time list
- Table reproduction control means for performing control to read out a table indicating a combination of specific information for identifying the recording medium from the recording medium by the reproduction unit and store it in a memory, wherein the data reproduction control means is at least partially synchronized with each other.
- the table playback control means uses the playback time lists in the table corresponding to at least two stream data. Read the table corresponding to each stream data that matches In this case, the playback time list corresponding to one stream data is stored in the memory, and the playback time list corresponding to the remaining stream data is not stored in the memory.
- the information reproducing method is an information reproducing method for reproducing information recorded on a recording medium, and a data reproducing step of reading a plurality of pieces of stream data having partial data power from the recording medium.
- a table indicating a combination of specific information for specifying a reproduction time list indicating the timing at which each partial data should be reproduced and partial data corresponding to each reproduction time of the reproduction time list is read from the recording medium.
- a table step for reading out and storing in a memory In the data reproduction step, the table reproduction is performed when a plurality of the stream data to be reproduced at least partially from each other is read out from the recording medium. In the step, the reproduction in the table corresponding to at least two stream data is performed. When reading the table corresponding to each stream data whose raw time lists match each other, the playback time list corresponding to one stream data is stored in the memory, and the playback time corresponding to the remaining stream data is stored. The list is not stored in memory.
- each stream is performed.
- the table power corresponding to the data is read out to the S memory, but it is possible to reduce the amount of memory usage by using the fact that the playback time lists match. More specifically, for example, if the table corresponding to the first stream data has been read, when reading the table corresponding to the second stream data, only specific information should be read. It will be good. In other words, since it is not necessary to read the playback time list of the table corresponding to the second stream data, it is possible to reduce the amount of memory used during playback.
- FIG. 1 is a block diagram showing a functional configuration of a control unit provided in a video disc recorder according to an embodiment of the present invention.
- FIG. 2 is a block diagram showing a schematic configuration of the video disk recorder.
- FIG. 3 is a block diagram showing a schematic configuration of a recording unit provided in the video disc recorder.
- FIG. 4 is a block diagram showing a schematic configuration of a playback unit provided in the video disc recorder.
- FIG. 5 (a) is a diagram showing an arrangement configuration of data recorded on an optical disc
- FIG. 5 (b) is a diagram showing an arrangement configuration of data in a stream area.
- FIG. 6A is a diagram showing an example of the data structure of PlayList
- FIG. 6B is a table showing an example of PlayList data.
- FIG. 7 is a diagram showing a data structure of ClipInformation.
- FIG. 8 is a diagram showing an example of the relative address and playback time of each data block in the video TS as video data and the audio TS as sub-data.
- FIG. 10C is a table showing an example of a time address conversion table for audio TS.
- FIG. 9 is a diagram showing an example of a file 'directory structure for managing streams and management information.
- FIG. 10 is a flowchart showing the flow of playback processing.
- FIG. 11 is a flowchart showing the flow of PlayItem playback processing.
- FIG. 12 is a flowchart showing the flow of recording processing.
- FIG. 13 is a flowchart showing a flow of Clip TS formation processing for video TS.
- FIG. 14 is a flowchart showing a flow of audio TS Cliplnformation creation processing.
- FIG. 15 is a flowchart showing a flow of matching processing.
- FIG. 16 is a flowchart showing the flow of inconsistency status grasp processing.
- FIG. 17 (a) is a diagram showing an example of the relative address and playback time of each data block in the video TS as video data and the audio TS as sub data.
- FIG. 10C is a table showing an example of a conventional time address conversion table for audio TS.
- FIG. 2 shows a basic system configuration of the video disc recorder (information recording device, information reproducing device) 1 according to the present embodiment.
- the video disk recorder 1 includes a host CPU 1010, RAM 1020, ROM 1030, user interface 1040, bus 1050, recording unit 1060, playback unit 1070, counter 1080, clock 1090, and drive 1100. It has become.
- the host CPU 1010 is a CPU (Central Processing Unit) that executes operation control processing in the video disk recorder 1.
- the RAM 1020 is a RAM (Random Access Memory) that functions as a work memory when arithmetic processing by the host CPUIOIO is performed.
- the ROM 1030 is a ROM (Read Only Memory) that stores various programs used for control processing and various data. That is, when the control process is executed, the program stored in the ROM 1030 is read into the RAM 1020, and the host CPU 1010 executes this program.
- FIG. 1 shows a control process realized by a calculation process by the host CPU 1010 as a functional configuration.
- the control processing realized by the host CPU 1010 is executed.
- the control unit 1500 is assumed as a configuration to be performed.
- the control unit 1500 includes a matching processing unit 1510, a playback control unit 1520, a Cliplnfo creation unit 1530, and a recording control unit 1540.
- the playback control unit 1520 is a block that controls playback processing in the playback unit 1070.
- the playback control unit 1520 includes a data playback control unit (data playback control unit) 1521 that controls playback processing of stream data, and a table playback control unit (table playback control unit) 1522 that controls playback processing of Cliplnformation described later. It has.
- the matching processing unit 1 510 is a block that performs matching processing to be described later.
- a recording control unit (data recording control means) 1540 is a block that controls recording processing in the recording unit 1060.
- the Cliplnfo creation unit (table recording control means) 1530 is a block for performing Cliplnformation creation processing described later. Details of processing in each of these functional blocks will be described later.
- the control unit 1500 may be configured by hardware logic such as ASIC.
- the user interface 1040 is an interface that receives an instruction input from a user.
- This user interface 1040 is realized by, for example, various buttons provided on the surface of the video disc recorder 1 or a remote controller.
- the user interface 1040 force S may be realized by a GUI (Graphical User Interface) using a display screen of a display device connected to the video disk recorder 1, and is not limited to a display device, but may be an arbitrary one.
- the user interface 1040 may be realized by the terminal device.
- the drive 1100 performs a recording process and a reproducing process with respect to the optical disc (recording medium) 1110.
- the recording unit 1060 encodes an externally input video / main audio signal and sub audio signal, multiplexes them into MPEG-2 TS (hereinafter simply referred to as TS), and sends the resultant to the drive 1100. It is. Further, the playback unit 1070 decodes the TS sent from the drive 1100, and outputs a video, a main audio signal, and a sub audio signal. Details of the recording unit 1060 and the reproduction unit 1070 will be described later.
- Counter 1080 is used for adding a time stamp for synchronization to stream data in recording unit 1060 and controlling output timing of stream data in playback unit 1070.
- the time information is provided to the recording unit 1060 and the playback unit 1070.
- the clock 1090 generates a clock signal used for processing in the recording unit 1060 and the reproduction unit 1070 and generates a clock signal used for counting up the counter 1080.
- the host CPU 1010, RAM 1020, ROM 1030, user interface 1040, recording player 1060, playback player 1070, and drive 1100 power node 1050 are connected. That is, the instruction input from the user received by the user interface 1040 is transmitted to the host CPU 1010 via the bus 1050, and the recording unit 1060, the playback unit 1070, and the drive 1100 are controlled according to the control based on the calculation of the host CPU 1010. Will work.
- the recording unit 1060 includes a switching unit 1061, a video TS buffer 1062, a video TS encoder 1063, an audio TS buffer 1064, and an audio TS encoder 1065.
- the input video 'main audio signal is encoded into TS by the video TS encoder 1063 and sent to the video TS buffer 1062 as video TS (stream data).
- the input sub audio signal is encoded into TS by the audio TS encoder 1065 and sent to the audio TS buffer 1064 as audio TS (stream data).
- Both the video TS buffer 1062 and the audio TS buffer 1064 operate as a FIFO (First In First Out).
- the switching unit 1061 switches the transmission source of data to be transmitted to the drive 1100 between the video TS buffer 1062 and the audio TS buffer 1064 in accordance with control from the host CPU 1010.
- the playback unit 1070 includes a switching unit 1071, a video TS buffer 1072, a video TS decoder 1073, an audio TS buffer 1074, and an audio TS decoder 1075.
- Switching section 1071 switches TS sent from optical disk 1110 between video TS buffer 1072 and audio TS buffer 1074 according to a command from host CPU 1010, and sends it out. Both the video TS buffer 1072 and the audio TS buffer 1074 operate as FIFOs.
- the video TS decoder 1073 and the audio TS decoder 1075 decode the video TS and audio TS, and output the video main audio signal and sub audio signal, respectively.
- the video TS decoder 1073 and the audio TS decoder 1075 respectively read the video TS and audio TS from the video TS buffer 1072 and the audio TS buffer 1074 as necessary.
- the decode 'output timing in video TS decoder 1073 and audio TS decoder 1075 is determined based on the time stamp given to each access unit (Access Unit) in the read TS. . Specifically, the video TS decoder 1073 and the audio TS decoder 1075 constantly monitor the value of the counter 1080, and perform decoding and output of the access unit when it matches the time stamp.
- Video TS Decoder 1073 and Audio TS Decoder 1075 decode only access units read from Video TS Buffer 1072 and Audio TS Buffer 1074, respectively, that have a time stamp that is greater than the initial value and less than the end value. Output, skip otherwise.
- the access unit ⁇ ⁇ ⁇ picture
- the optical disk 1110 includes a management information area 1111 for recording management information.
- the stream area 1112 includes a video TS (# 1 to # ⁇ ) in which video and main audio are encoded and an audio TS (# 1 in which sub audio is encoded). ⁇ # k) is recorded. One video TS and one audio TS are recorded for each recording.
- PlayList (# 1 to #m) for storing playlist information and Cliplnformation (# 1 to #m) for storing information about TS are stored.
- n + k is recorded.
- Cliplnformation is created corresponding to each audio TS and video TS recorded in the stream area 1112.
- the corresponding TS and Clipln format ion pair is called a Clip.
- the video TS is obtained by multiplexing video data compressed by the MPEG-2 video system and main audio data compressed by the AC-3 system into the MPEG-2 TS.
- Audio TS is a sub-audio data compressed with the AC-3 method and multiplexed into MPEG-2 TS.
- the PlayList is information for managing the playback order of an arbitrary section of an arbitrary Clip, and each section is managed in a unit called “Playltem”.
- the start point (IN-time) and end point (OUT-time) of the section are specified by the time stamp (PTS: Presentation Time Stamp) attached to the clip.
- PTS Presentation Time Stamp
- Cliplnformation consists of general information (Cliplnfo), discontinuity information (STC_info), program information (Programfo), time-address conversion table (CPI), and mark information (ClipMark).
- attribute information for example, bit rate
- STC—info stores information related to time stamp discontinuities in the corresponding TS.
- Programlnfo stores attribute information (for example, resolution) related to ES (Elementary Stream) such as video data and audio data included in TS data and related information between ESs. CPI will be described later.
- FIG. 8 (a) shows an example of the relative address and playback time of each data block in the video TS as video data and the audio TS as sub data.
- FIG. 8 (b) shows an example of a video TS time address conversion table
- FIG. 8 (c) shows an example of an audio TS time address conversion table.
- the beginning of each of the partial data VI, V2, V3, and V4 of the video TS is a decoding start point.
- the time stamps indicating the decoding start points are Tl, ⁇ 2, ⁇ 3, and ⁇ 4, and the relative addresses from the beginning are Pl, ⁇ 2, ⁇ 3, and ⁇ 4.
- the beginning of each partial data ⁇ 1 to ⁇ 8 of the audio TS is a point where decoding can start.
- the time stamps indicating the decoding start possible points are S1 to S8, and the relative addresses from the head are Q1 to Q8.
- FIG. 8 (a) and FIG. 8 (b) are the same as FIG. 17 (a) and FIG. 17 (b) used in the description of the time-address conversion table in the background art. Yes, only Figure 8 (c) is different. In other words, the method of setting the time address conversion table value for audio TS in this embodiment is different from the background art.
- the audio TS time address conversion table is set as follows. First, (1) the number of entries is the same as the number of entries in the video TS time-address conversion table. Also, (2) the time stamp field value (playback time) is the same as the time stamp field value in the video time-one-address conversion table. Furthermore, (3) the relative address field value is larger than the corresponding time-stamp field (playback time list) value of the video TS time-address conversion table, and the relative address of the partial data with the smallest time stamp (specific Set to (Information) value.
- T2 is a time stamp of the partial data V2 of the video TS.
- S4 is detected.
- the relative address corresponding to S4 is searched for in the audio TS.
- Q4 is detected. Therefore, the pair of T2 and Q4 is the second in Fig. 8 (c). Registered in the entry.
- Audio TS time By assigning the above-mentioned attributes (1), (2), and (3) to the address conversion table, it is possible to reduce the amount of memory during playback and simplify the handling of inconsistencies, as will be described later. It becomes.
- the time stamp of the time address conversion table for audio TS does not match the time stamp assigned to the audio TS.
- the head part is only missing about several tens of milliseconds corresponding to one audio frame (partial data of audio TS), and the effect of the missing part that can be ignored in synchronization can be ignored audibly. .
- the partial data A4 of the audio TS is reproduced from the S4 force correctly, not from T2.
- the reason is that A4 is given S4 as a time stamp, and the audio TS decoder 1075 also checks the time stamp and has the power to operate to output A4 when the counter 1080 reaches S4. Therefore, no audio output is made between T2 and S4.
- Each stream and management information is recorded as a separate file.
- the file name of each file consists of a basic part and an extension.
- the file type can be distinguished by the extension. For example, the TS file has m2ts, the Cliplnformation file has clpi, the PlayList file has rpls, and the extension.
- Each file is stored in a different directory depending on the type.
- the PlayList file is stored in the ZDVRZPLAYLIST directory
- the video TS Cliplnformation is stored in the / DVR / CLIPINF directory
- the video TS file is stored in the ZDVRZM2TS directory
- the audio TS file is stored in the ZEXTZM2TS directory
- the audio TS ClipInformation is stored in the ZEXTZCLPI directory.
- the basic parts of the file names of the corresponding TS and Clip Information are common so that the correspondence between TS and Cliplnformation can be understood. Also with video TS For the recorded audio TS, the basic part of the file name is shared with the video TS file so that the correspondence can be improved.
- the playback process of the disc video recorder in the present embodiment will be described with reference to the flowchart shown in FIG.
- the user power is received through the user interface 1040 and a specific playlist playback instruction is accepted.
- the following processing is executed by the table playback control unit 1522 of the playback control unit 1520 in the control unit 1500 unless otherwise specified.
- the contents of the PlayList file corresponding to the playlist specified by the user are read from the optical disk 1110 by the drive 1100 and written in the RAM 1020 (step 2010, hereinafter referred to as S2010). Then, by analyzing the Playltem included in the read PlayList, the Cliplnformation file to be read is specified. Based on the result, the required Cliplnformation file for video TS is read from the optical disk 1110 and written to the RAM 1020 (S2020).
- the clip file is written in the RAM 1020 (S20 30).
- the time stamp field is the same as the time-to-address conversion table for video TS, so there is no need to hold it.
- the field value of the time stamp is the same as the field value of the time stamp of the video time address conversion table”, which is a feature of the present invention.
- the specific processing of the consistency check is to compare the number of entries in the video TS and audio TS in the time-address conversion table.
- the number of entries in the time-address conversion table of the video TS is changed when the editing process is performed on a non-compatible device.
- the decoding start point of the video TS is generally about 0.5 seconds to 1 second, it is highly possible that the number of entries will change when recording or editing processing is performed. .
- the matching processing unit 1510 determines whether or not matching is achieved. If NO in S2050, that is, if it is determined that there is no matching, matching processing is performed by the matching processing unit 1510 (S2100). The matching process will be described later.
- Playtem playback processing is performed in the order of Playtems included in the Play List (S2060 to S2090).
- S2060 Next, in S2070, it is determined whether or not the i force ⁇ Pl ayltem is smaller than the number (num_of_Pl)! /.
- NO that is, if i is equal to or greater than the number of Playltems, the process ends.
- the playback unit 1070 performs playback processing of the i-th Playltem based on an instruction from the data playback control unit 1521 in S2080. Thereafter, in S2090, the variable i is incremented, and the process returns to S2070.
- the Playltem playback command issued by the data playback control unit 1521 includes the name of the Clip corresponding to the Playltem, the start point (IN-time) of the playback section, And information about the end point (OUT—time).
- Playltem playback processing exists in each of the video TS and audio TS, and is an independent task.
- the Play TS playback process for the video TS and the Play TV playback process for the audio TS are executed in a pseudo parallel manner.
- the table playback control unit 1522 acquires the name of Clip, IN-time, and OUT-time. Then, the table reproduction control unit 1522 refers to the time-address conversion table of the video TS and audio TS corresponding to the corresponding clip, and searches for the TS reading start address Ps and reading end address Pe. (S3010). At this time, IN-time'OUT-time is obtained as an initial value / end value from the data reproduction control unit 1521 to the reproduction unit 1070.
- the initial value of the read start address Px is set to Ps (S3020), and the video TS and audio TS specified by the Clip name are sequentially buffered (video TS in the case of video TS) until Px reaches Pe. Buffer 1072, audio TS, audio TS buffer 1074) is read (S3030 to S3060).
- S3030 it is determined whether Px is smaller than Pe. If NO in S3 030, that is, if the Px force SPe or more is reached, it is considered that the playback process associated with the Playltem playback command has been completed, and the process returns to S3000. On the other hand, if YES in S3030, that is, if it is smaller than the Px force SPe, in S3040, processing is first waited until an empty area is created in the buffer, and if there is an empty area in the buffer, the address indicated by Px The data is also read out and reproduction processing by the reproduction unit 1070 is performed (S3050). After that, in S3060, the time address conversion table is referenced and Px is updated to the next value, and the process returns to S3030.
- the recording process of the disc video recorder in the present embodiment will be described with reference to the flowchart shown in FIG.
- an instruction to record the video / main audio signal and sub audio signal input to the recording unit 1060 from the user through the user interface 1040 to the optical disk 1110 is received.
- a task for creating C1 iplnformation for each of the video TS and audio TS to be recorded is started in the Cliplnfo creating unit 1530 (S4000 and S4010).
- S4000 the creation process of the Cliplnformation for video TS is started in the Cliplnfo creation unit 1530
- S4010 the creation process of Cliplnformation for audio TS is started in the Cliplnfo creation unit 1530.
- the video TS buffer 1062 and the audio TS buffer 1064 are monitored, and a task for recording on the optical disc 1110 is also started in the recording control unit 1540 in accordance with the remaining buffer capacity.
- a recording start command is issued to the recording unit 1060 (S4020), and the process waits until there is a recording stop instruction from the user or recording is stopped due to the capacity of the optical disk 1110 being over, etc. (S4030) .
- a recording stop instruction is detected, a recording stop command is issued to the recording unit 1060 (S4040).
- the Cliplnfo creation unit 1530 waits for the completion of creation of Cliplnformation (S 4050), and Cliplnformation and PlayList are recorded on the optical disc 1110 (S 4060).
- the time stamp T and the relative address P of the next partial data in the video TS are obtained from the recording unit 1060 (S5030). .
- the time stamp T and the relative address P acquired here are added as Ti and Pi in the i-th entry of the time-one address conversion table for video TS (S5040).
- the variable i is incremented and the processing returns to S5020 force.
- S5110 1 is stored in the variable j.
- S5120 it is determined whether or not the recording process in the recording unit 1060 is completed and j is smaller than n which is the number of entries in the video TS time-address conversion table. If YES in S5120, that is, if the recording process is completed and j is equal to or greater than n, it is notified in S5170 that the audio TS Clipln formation creation process has been completed, and the process ends.
- the process of grasping the inconsistency state between the audio TS and the video TS in S6100 will be described with reference to the flowchart shown in FIG.
- the flag exist indicating whether or not video data corresponding to each entry in the audio TS time-one address conversion table exists is initialized (S6110).
- i,; j which are pointers to the video TS and audio TS time-address conversion table entries, are each initialized to 1 (S6120).
- the audio TS matching process in S6200 and the audio TS time address conversion table matching process in S6300 are performed. Specifically, the audio TS corresponding to the entry for which no flag is set is deleted, and the entry itself is also deleted.
- the matching processing unit 1510 instructs the recording control unit 1540 to change the time address conversion table for audio TS, and based on this, the recording control unit 1540 performs the recording changing process to the recording unit 1060. Realized by giving instructions to do.
- the feature of the present invention is that “(2) The time stamp's finale value is also the same as the video time—time stamp field value of the address conversion table”. It is possible to eliminate the inconsistency with the algorithm.
- the inconsistency status grasping process (S6100) in the matching process (S2100) is a process for reading out Cliplnfomation of the audio TS in the force reproduction process (S2040, S2050) performed after the inconsistency is detected (S2040, S2050).
- S2030) may be done! Specifically, the inconsistency status grasping process is performed every time one entry of the time-address conversion table is read. This means that the consistency check (S2040) and the inconsistency status determination (S6100) are simultaneously performed in the reading process (S2030) of the Clip TS of the audio TS.
- the consistency check is performed every time one entry of the time-address conversion table is read, so that a deviation between the time stamp in the video TS and the time stamp in the audio TS can be detected. Therefore, inconsistencies can be detected even when editing on a non-compatible device does not involve a change in the number of entries (for example, when the first half and the second half of the video TS are swapped). It becomes.
- the number of entries in the audio TS time-one address table is the same as that of the video TS, and data indicating that there is no data is entered in the relative address field of the entry without the audio TS. It is possible to perform processing similar to that of the embodiment.
- the value of the time stamp field of the time address conversion table of the audio TS always matches that of the corresponding video TS. It is also possible to record without doing so. In this case, in order to distinguish it from deletion by a non-compatible device, a flag indicating that recording was made consistent is recorded in Clip Information for Audio TS. As a result, it is possible to avoid performing the matching process on the audio TS recorded without matching.
- the partial data to be registered in the audio TS time address conversion table has a minimum time stamp greater than or equal to the time stamp of the corresponding video TS. It may be the maximum time stamp below the stamp.
- the value of the relative address field is set to the value of the relative address of the partial data having the smallest time stamp larger than the value of the corresponding time stamp field”.
- the main effect of the present invention can be achieved without satisfying (3).
- the relative address value of partial data with a time stamp (referred to here as ⁇ ) is not 1S minimum, which is greater than the value of the corresponding time stamp field (referred to here as Tn)
- Tn the value of the corresponding time stamp field
- the audio TS decoder 1075 automatically skips the audio TS between Ty and Tm, so there is no particular problem in playback. Further, according to the present embodiment, the audio TS and the video TS use the same time axis (the same time stamp is given to data to be reproduced at the same time), and different time axes are used. It may be used.
- the difference in time axis between the audio TS and the video TS is obtained, and the time stamp of the audio TS is regarded as being obtained by subtracting this difference from those added to the TS. Should be created. At this time, if the difference value is recorded in the Cliplnformation of the audio TS, an approximate value of the time stamp attached to the TS can be obtained.
- any recording medium other than the force using the optical disk 1110 as the recording medium is not limited thereto.
- a hard disk, a flash memory, or the like may be used as the recording medium.
- the video / main audio and sub audio may be used in other combinations (eg, video and video, video and graphics)! /.
- a format other than 1S TS using TS as the format of stream data (eg, PES stream, Program Stream) may be used.
- stream data of three or more types of power which shows an example of using two stream data of a video TS and an audio TS, as stream data recorded on the optical disc 1110, is recorded on the optical disc 1110. Let's record it.
- the time stamp field values in at least two or more stream data it is possible to reduce the amount of memory during reproduction and to simplify the handling of inconsistencies.
- each functional block and each processing step provided in the control unit 1500 of the above-described embodiment execute a program stored in a storage means such as a calculation means power ROM or RAM such as a CPU, as described above.
- a storage means such as a calculation means power ROM or RAM such as a CPU
- This can be realized by controlling input means such as a keyboard, output means such as a display, or communication means such as an interface circuit. Therefore, various functions and various processes of the control unit 1500 according to the present embodiment can be realized simply by reading the recording medium on which the above-described program is recorded and executing the program. Also, remove the above program By recording on a simple recording medium, the above-mentioned various functions and various processes can be realized on any computer.
- a memory such as a ROM may be a program medium for processing by the microcomputer, and V not shown is an external storage device. It may be a program medium provided with a program reader and readable by inserting a recording medium into the program reader.
- the stored program is preferably configured to be accessed and executed by the microprocessor. Further, it is preferable that the program is read out, and the read program is downloaded to the program storage area of the microcomputer and the program is executed. Note that this download program is stored in advance in the main unit.
- the program medium is a recording medium configured to be separable from the main body, and includes a tape system such as a magnetic tape and a cassette tape, a magnetic disk such as a flexible disk and a hard disk, and a disk such as a CDZMOZMDZDVD.
- Disk system card system such as ic card (including memory card), mask ROM, EPROM (Erasable Programmable Read Only Memory), EEPROM (Electrically Erasable Programmable Read)
- the recording network is preferably a recording medium that carries the program in a fluid manner so as to download the program.
- the download program is stored in the main device in advance or installed with another recording medium strength.
- the information recording apparatus provides a plurality of pieces of stream data having partial data power to the recording medium, in addition to the information recording apparatus including a recording unit that records information on the recording medium.
- Data recording control means for controlling recording, a reproduction time list indicating the timing for reproducing each partial data, and reproduction of each of the reproduction time lists
- Table recording control means for performing control to record a table indicating a combination of specific information for specifying partial data corresponding to time on the recording medium, and the data recording control means are at least partially synchronized with each other.
- the table recording control means Forces the reproduction time lists in the table corresponding to at least two stream data to match each other Thus, control is performed to record the table corresponding to each stream data on the recording medium.
- the information recording apparatus has the above configuration so that it matches the reproduction time list in the table corresponding to one specific stream data of the table recording control means.
- the playback time list in the table corresponding to the remaining stream data is set.
- the table corresponding to one specific stream data is set to the playback time list corresponding to the stream data, while the playback time list of the correspondence table is set to the remaining stream data. Therefore, it is set according to the specific one stream data. Therefore, it is possible to eliminate the necessity of adjusting the playback time list for the one specific stream data, and to simplify the processing.
- the table recording control means when the table recording control means sets the table corresponding to the remaining stream data, the table recording control means reproduces the table.
- a configuration may be adopted in which specific information for specifying partial data to be reproduced in the vicinity of each reproduction time in the time list as partial data corresponding to the reproduction time is set in the table.
- the information recording apparatus further includes a data information recording control means for performing control for recording data information relating to the stream data on the recording medium in the configuration described above, and the table recording control means.
- the data information recording control means When powerful stream data is recorded, if the table is set by performing the process of matching the playback time list, the data information recording control means performs the data information corresponding to the stream data. It may be configured to include information indicating that processing for matching the playback time list is being performed.
- the data information includes the information indicating that the process of matching the playback time list is being performed. Therefore, the data recorded without matching and the incompatible device It becomes possible to distinguish what is not matched by being edited.
- stream data having no partial data corresponding to a specific reproduction time in the reproduction time list matched with the above table recording control means is provided in the above configuration.
- information indicating that there is no corresponding partial data may be set as the specific information corresponding to the reproduction time.
- the information recording apparatus and information reproducing apparatus can be applied to a video disk recorder that performs recording Z reproduction on an optical disk as described above, and for example, stream data for a node disk or a semiconductor memory. It can be applied to devices that perform recording Z playback. It can also be applied to recording Z playback processing on a recording medium in a terminal device such as a PC.
Landscapes
- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Multimedia (AREA)
- Signal Processing For Digital Recording And Reproducing (AREA)
- Television Signal Processing For Recording (AREA)
- Management Or Editing Of Information On Record Carriers (AREA)
- Indexing, Searching, Synchronizing, And The Amount Of Synchronization Travel Of Record Carriers (AREA)
Abstract
Description
Claims
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2006531422A JP4286867B2 (ja) | 2004-08-03 | 2005-07-28 | 情報記録装置、情報記録プログラム、情報記録プログラムを記録した記録媒体、記録媒体、情報記録方法、情報再生装置、情報再生方法、情報再生プログラム、および情報再生プログラムを記録した記録媒体 |
EP05767234A EP1788572A4 (en) | 2004-08-03 | 2005-07-28 | INFORMATION RECORDING DEVICE, INFORMATION RECORDING PROGRAM, MEDIUM WITH RECORDED INFORMATION RECORDING PROGRAM, RECORDING MEDIUM, INFORMATION RECORDING METHOD, REPRODUCING DEVICE |
US11/658,851 US20080310817A1 (en) | 2004-08-03 | 2005-07-28 | Information Recording Apparatus, Information Recording Program, Recording Medium Recording Information Recording Program, Recording Medium, Information Recording Method, Information Reproducing Apparatus, Information Reproducing Method, Information Reproducing Program, and Recording Medium Recording Information Reproducing Program |
CN200580026198XA CN1993763B (zh) | 2004-08-03 | 2005-07-28 | 信息记录装置、信息记录方法、信息再生装置、再生方法 |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2004227144 | 2004-08-03 | ||
JP2004-227144 | 2004-08-03 |
Publications (1)
Publication Number | Publication Date |
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WO2006013767A1 true WO2006013767A1 (ja) | 2006-02-09 |
Family
ID=35787055
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2005/013803 WO2006013767A1 (ja) | 2004-08-03 | 2005-07-28 | 情報記録装置、情報記録プログラム、情報記録プログラムを記録した記録媒体、記録媒体、情報記録方法、情報再生装置、情報再生方法、情報再生プログラム、および情報再生プログラムを記録した記録媒体 |
Country Status (5)
Country | Link |
---|---|
US (1) | US20080310817A1 (ja) |
EP (1) | EP1788572A4 (ja) |
JP (1) | JP4286867B2 (ja) |
CN (1) | CN1993763B (ja) |
WO (1) | WO2006013767A1 (ja) |
Cited By (1)
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JP2015173335A (ja) * | 2014-03-11 | 2015-10-01 | 株式会社リコー | 情報処理装置、情報処理システム及びプログラム |
Families Citing this family (2)
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KR20120035406A (ko) * | 2010-10-05 | 2012-04-16 | 삼성전자주식회사 | 동영상 파일 재생 방법 및 장치 |
CN103501408B (zh) * | 2013-09-23 | 2017-09-26 | 广东欧珀移动通信有限公司 | 一种使用移动终端拍摄视频短片的方法和系统 |
Citations (2)
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JPH11191286A (ja) * | 1997-07-28 | 1999-07-13 | Sony Electron Inc | オーディオとビデオの同期方法及びデジタルビデオプロセッサ |
WO2004057613A1 (en) | 2002-12-19 | 2004-07-08 | Koninklijke Philips Electronics N.V. | Characteristic point information (cpi) for multilayer video |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
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GB2294173B (en) * | 1994-10-11 | 1998-12-09 | Mitsubishi Electric Corp | Disk media, and method of and device for recording and playing back information on or from a disk media |
CA2168327C (en) * | 1995-01-30 | 2000-04-11 | Shinichi Kikuchi | A recording medium on which a data containing navigation data is recorded, a method and apparatus for reproducing a data according to navigationdata, a method and apparatus for recording a data containing navigation data on a recording medium. |
WO2001082611A1 (fr) * | 2000-04-21 | 2001-11-01 | Sony Corporation | Procede et appareil de traitement d'informations, support enregistre, et programme |
JP4390701B2 (ja) * | 2002-06-24 | 2009-12-24 | エルジー エレクトロニクス インコーポレイティド | 多重再生経路ビデオデータの再生を管理するためのデータ構造を有する記録媒体とそれによる記録及び再生方法及び装置 |
US7664372B2 (en) * | 2002-11-20 | 2010-02-16 | Lg Electronics Inc. | Recording medium having data structure for managing reproduction of multiple component data recorded thereon and recording and reproducing methods and apparatuses |
US8055117B2 (en) * | 2003-02-15 | 2011-11-08 | Lg Electronics Inc. | Recording medium having data structure for managing reproduction duration of still pictures recorded thereon and recording and reproducing methods and apparatuses |
-
2005
- 2005-07-28 WO PCT/JP2005/013803 patent/WO2006013767A1/ja active Application Filing
- 2005-07-28 CN CN200580026198XA patent/CN1993763B/zh not_active Expired - Fee Related
- 2005-07-28 US US11/658,851 patent/US20080310817A1/en not_active Abandoned
- 2005-07-28 EP EP05767234A patent/EP1788572A4/en not_active Withdrawn
- 2005-07-28 JP JP2006531422A patent/JP4286867B2/ja not_active Expired - Fee Related
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
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JPH11191286A (ja) * | 1997-07-28 | 1999-07-13 | Sony Electron Inc | オーディオとビデオの同期方法及びデジタルビデオプロセッサ |
WO2004057613A1 (en) | 2002-12-19 | 2004-07-08 | Koninklijke Philips Electronics N.V. | Characteristic point information (cpi) for multilayer video |
Non-Patent Citations (1)
Title |
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See also references of EP1788572A4 * |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2015173335A (ja) * | 2014-03-11 | 2015-10-01 | 株式会社リコー | 情報処理装置、情報処理システム及びプログラム |
Also Published As
Publication number | Publication date |
---|---|
JP4286867B2 (ja) | 2009-07-01 |
EP1788572A4 (en) | 2012-01-04 |
US20080310817A1 (en) | 2008-12-18 |
CN1993763B (zh) | 2011-01-19 |
JPWO2006013767A1 (ja) | 2008-05-01 |
EP1788572A1 (en) | 2007-05-23 |
CN1993763A (zh) | 2007-07-04 |
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