WO2015051611A1 - 一种内容匹配方法、装置及系统 - Google Patents

一种内容匹配方法、装置及系统 Download PDF

Info

Publication number
WO2015051611A1
WO2015051611A1 PCT/CN2014/071367 CN2014071367W WO2015051611A1 WO 2015051611 A1 WO2015051611 A1 WO 2015051611A1 CN 2014071367 W CN2014071367 W CN 2014071367W WO 2015051611 A1 WO2015051611 A1 WO 2015051611A1
Authority
WO
WIPO (PCT)
Prior art keywords
program
sequence
scheduling
data
current
Prior art date
Application number
PCT/CN2014/071367
Other languages
English (en)
French (fr)
Inventor
胡常青
林五四
王晓晖
Original Assignee
深圳创维数字技术股份有限公司
深圳市创维软件有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳创维数字技术股份有限公司, 深圳市创维软件有限公司 filed Critical 深圳创维数字技术股份有限公司
Publication of WO2015051611A1 publication Critical patent/WO2015051611A1/zh

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/25Management operations performed by the server for facilitating the content distribution or administrating data related to end-users or client devices, e.g. end-user or client device authentication, learning user preferences for recommending movies
    • H04N21/262Content or additional data distribution scheduling, e.g. sending additional data at off-peak times, updating software modules, calculating the carousel transmission frequency, delaying a video stream transmission, generating play-lists
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/25Management operations performed by the server for facilitating the content distribution or administrating data related to end-users or client devices, e.g. end-user or client device authentication, learning user preferences for recommending movies
    • H04N21/262Content or additional data distribution scheduling, e.g. sending additional data at off-peak times, updating software modules, calculating the carousel transmission frequency, delaying a video stream transmission, generating play-lists
    • H04N21/26283Content or additional data distribution scheduling, e.g. sending additional data at off-peak times, updating software modules, calculating the carousel transmission frequency, delaying a video stream transmission, generating play-lists for associating distribution time parameters to content, e.g. to generate electronic program guide data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/47End-user applications
    • H04N21/482End-user interface for program selection
    • H04N21/4828End-user interface for program selection for searching program descriptors

Definitions

  • the method further includes: before processing the currently collected schedule data to obtain a current program schedule sequence of each channel, the method further includes:
  • the collected scheduling data is sent by the collecting device based on the Internet protocol after collecting the scheduling data from the cable television network.
  • the process of processing the currently collected scheduling data to obtain a current program scheduling sequence of each channel includes:
  • the scheduling data collected by the current collection device of the target channel is initialized to obtain a current program scheduling sequence of the target channel.
  • the initializing processing of the scheduling data collected by the current collecting device of the target channel includes:
  • the program information including the program name and the program set number in the currently collected schedule data is extracted by the regular expression, and the redundant information of the currently collected schedule data is deleted.
  • the storing, by the matching processing, the sequence of the program to be matched is stored in the database as a complete program scheduling sequence, including: Performing a program search according to the to-be-matched scheduling data of the to-be-matched program scheduling sequence, and acquiring program data that matches the scheduling data;
  • the complete program schedule sequence is stored to a database.
  • the method further includes:
  • an embodiment of the present invention further provides a content matching apparatus, including:
  • a sequence storage module configured to store, by the matching process, the sequence of the program to be matched as a complete program scheduling sequence to a database.
  • the device further includes:
  • the data receiving module is configured to receive the scheduling data collected by the collecting device according to the preset time interval, where the collected scheduling data is sent by the collecting device based on the Internet protocol after collecting the scheduling data from the cable television network.
  • sequence of the acquisition block includes: a source collection device of the data;
  • a level determining unit configured to discard the target channel when a level of the current collecting device of the scheduling data of the target channel in the target channel is lower than a level of the source collecting device in the target channel The schedule data collected by the current collection device;
  • An initialization processing unit configured to: when the current collection device of the schedule data of the target channel is in the When the level in the target channel is not lower than the level of the source collection device in the target channel, the scheduling data collected by the current collection device of the target channel is initialized to obtain a current program scheduling sequence of the target channel. .
  • the sequence combining module includes:
  • a time sorting unit configured to sort the scheduling data of the current program scheduling sequence of each channel according to a starting time
  • a merging processing unit configured to: in the current program scheduling sequence, the scheduling data is the same as the ranking data name in the stored complete program scheduling sequence, and the scheduling data in the current program scheduling sequence is stored
  • the combined sequence obtaining unit is configured to obtain the sequence of the program to be matched after the merged process, and the sequence of the program to be matched Includes merged schedule data and pending schedule data.
  • the sequence storage module includes:
  • a data loading unit configured to load the program data into the to-be-matched program scheduling sequence as a complete program scheduling sequence
  • a sequence storage unit configured to store the complete program scheduling sequence to a database.
  • the device further includes:
  • a sequence display module configured to display a complete program scheduling sequence currently stored in the database
  • an instruction receiving module configured to receive an editing processing instruction for the scheduled data of the displayed complete program scheduling sequence, and according to the instruction The scheduling data of the complete program scheduling sequence is modified
  • the data storage module is configured to store the modified complete program scheduling sequence into the database.
  • an embodiment of the present invention further provides a content matching system, including a server and at least one collection device, where
  • the collecting device is configured to collect scheduling data from a cable television network according to a preset time interval, and send the scheduling data to the server according to an internet protocol;
  • the server is configured to process the currently collected scheduling data to obtain the current of each channel. a program scheduling sequence; combining the current program scheduling sequence of each channel with the stored complete program scheduling sequence to obtain a merged program scheduling sequence to be matched; performing the implementation of the present invention through matching
  • a program scheduling sequence combining the current program scheduling sequence of each channel with the stored complete program scheduling sequence to obtain a merged program scheduling sequence to be matched
  • the invention processes the currently collected scheduling data to obtain a current program scheduling sequence of each channel, and combines and matches the current program scheduling sequence of the respective channels with the stored complete program scheduling sequence.
  • the process obtains a complete program scheduling sequence, and provides users with relatively complete navigation data content, which is convenient for the user to perform reliable program content search and timely acquire the program, thereby improving the program search efficiency.
  • FIG. 1 is a schematic flow chart of a first embodiment of a content matching method of the present invention
  • FIG. 2 is a schematic flow chart of a second embodiment of a content matching method of the present invention.
  • FIG. 3 is a schematic structural view of an embodiment of a content matching device of the present invention
  • FIG. 4 is a schematic structural view of one of the components of the sequence of FIG. 3 of the present invention
  • FIG. 5 is a view of FIG.
  • FIG. 6 is a schematic diagram showing one of the structural components of the sequence storage module of FIG. 3 of the present invention
  • FIG. 7 is a structural diagram of an embodiment of a content matching system of the present invention. Composition diagram. detailed description
  • S101 Process the currently collected scheduling data to obtain a current program scheduling sequence of each channel.
  • the scheduling data refers to the electronic program menu EPG data collected by the collecting device connected to the cable television network. Specifically, a time interval may be preset, for example, 24 hours, according to the time interval from the cable television network every 24 hours.
  • the EPG data is collected once, and the EPG data is encapsulated and sent to the server based on the Internet protocol.
  • the EPG data sent by the collection device can be in xml format or json format, and can be compressed by gzip format, and the compressed EPG data is sent to the server to reduce the amount of data transmission.
  • the server may perform sorting processing on the scheduling data, and organize according to the channel to form a current program scheduling sequence of each channel. Since the collection device can be multiple, and the collection device sets different levels according to the region, according to the level of the collection device, the over-collection device that organizes the current program scheduling sequence of each channel according to the channel is organized. If the level of the current collecting device of the scheduling data of the target channel in the target channel is lower than the level of the source collecting device in the target channel, discarding the current collecting device of the target channel Scheduling data; otherwise, the scheduling data collected by the current collection device of the target channel is initialized to obtain a current program scheduling sequence of the target channel.
  • Extracting, to the target channel, the currently collected schedule data includes program information such as a program name and a program set number, and deleting redundant information of the currently collected schedule data.
  • the regular expression may refer to filtering the scheduled data string by using a preset rule string, that is, the number of program sets included in the program name of the scheduled data, such as the number of episodes of the TV series, and the redundancy may be eliminated.
  • Program information such as "replay”, “special program”, "first theater” and other programmatic redundancy information such as guide content, so as to leave a clear program name.
  • the redundant information of the deleted program name can be configured by the system, and the redundant character string of the program name is listed according to a certain rule, and the redundant information of the program name is matched by the regular expression.
  • TV programs such as "Shenzhen TV Station” can be collected by collection devices set up in Shenzhen or Guangdong province, or collected by collection devices set up in Beijing, and for "Shenzhen TV Station", obviously set in Shenzhen or The authority of EPG data collected by collection equipment in Guangdong province The sex is higher than the authority of the EPG data collected by the collection device set in Beijing. At this time, the level of the collection device in Shenzhen or Guangdong province is set to be relatively high for the channel, and the level of the collection device in Beijing is relatively low. .
  • the current collection device that collects the schedule data of "Shenzhen TV Station” is the collection device of Beijing, discard the schedule data collected by the collection device; if the "Shenzhen TV station” is collected
  • the current collection device of the schedule data is the collection device of Shenzhen or Guangdong province, which can indicate that the schedule data is relatively reliable, and the schedule data collected by the current collection device of the channel is initialized to obtain the current program schedule of the channel. sequence.
  • multiple collection devices may be set according to the region. At this time, each collection device is repeatedly uploaded, and needs to be merged with the scheduled data in the stored complete program scheduling sequence.
  • the scheduling data of the current program scheduling sequence of each channel may be sorted according to the starting time. After comparing the current program schedule sequence of each channel with the stored complete program schedule sequence, if the schedule data in the current program schedule sequence of each channel is scheduled and the stored complete program schedule sequence is scheduled.
  • the data program names are the same, and the scheduling data in the current program scheduling sequence of each channel differs from the starting time of the scheduling data in the stored complete program scheduling sequence by a preset time range, for example, within one hour. And merging the current schedule data with the schedule data in the stored complete program schedule sequence.
  • the reference program information of the schedule data in the current program schedule sequence of each channel may be extracted based on the schedule data in the current program schedule sequence of each channel, such as a program name, a program album attribute, such as a program.
  • the ID, program description data, program picture data, program editor, and program editing time are combined.
  • S103 Store the sequence of the program to be matched that has undergone matching processing as a complete program scheduling sequence to the database.
  • the scheduling data of the program scheduling sequence is to be matched.
  • the scheduling data to be matched may include the scheduling data that has not been merged or the scheduling data that is merged but the program information is incomplete, for example, in the scheduling data.
  • the program name, program category, and the like in the schedule data may be used to perform a matching search to the system program database, and the schedule is obtained.
  • Program data matching the program such as program ID, program description data, and program picture data, can provide a reference for later editing work.
  • the program data is loaded into the to-be-matched program schedule sequence as a complete program schedule sequence and the complete program schedule sequence is stored to a database.
  • the server When the server receives the newly collected EPG data according to the preset time interval, the server repeats steps S101 to S103 to obtain a new complete program scheduling sequence, and updates the stored program scheduling sequence stored in the database.
  • the editing worker can edit the scheduling data therein, which may include manual proofreading, editing program detailed information, providing program image data information, program actor information, program related introduction information, and Edit processing operations such as related web page link addresses and the like.
  • the system can provide a unified Internet access interface protocol to provide users with up-to-date and complete guide data in a timely manner.
  • the content matching method includes:
  • S201 Receive scheduling data collected by the collecting device according to a preset time interval.
  • the scheduling data refers to an electronic program menu EPG data that is periodically collected by an acquisition device connected to the cable television network. Specifically, a time interval may be preset, for example, 10 hours, according to the time.
  • the EPG data is collected once every 10 hours from the cable television network, and the EPG data is encapsulated and sent to the server based on the Internet protocol.
  • the EPG data sent by the collection device may be in an xml format or a json format, and may be compressed by using a gzip format, and the compressed EPG data is sent to the server to reduce the amount of data transmission.
  • S202 Determine a source collection device of the scheduling data of the target channel in the stored complete program scheduling sequence.
  • the server may perform sorting processing on the scheduling data, and organize according to the channel to form a current program scheduling sequence of each channel. Since the collection device may be multiple, and the collection device sets different levels according to the region, according to the level of the collection device, the over-collection device that forms the current program scheduling sequence of each channel according to the channel is organized, and according to the row of the comparison target channel The current acquisition device of the period data performs corresponding processing of the ranking data in the target channel and the level of the source collection device in the target channel.
  • S203 Determine whether a level of the current collection device of the scheduling data of the target channel in the target channel is lower than a level of the source collection device in the target channel. After the device, the processing of the scheduling data is selected by determining whether the level of the current collecting device of the scheduling data of the target channel in the target channel is lower than the level of the source collecting device in the target channel.
  • the level of the current collection device of the scheduling data of the target channel in the target channel is lower than the level of the source collection device in the target channel, it may be stated that the scheduling data is not reliable enough, and the device may be discarded.
  • the scheduling data collected by the current collection device of the target channel is not reliable enough, and the device may be discarded.
  • S205 Perform initialization processing on the currently collected scheduling data to obtain a current program scheduling sequence of each channel.
  • the scheduling data collected by the current collection device of the target channel is initialized to obtain a current program scheduling sequence of the target channel.
  • performing initialization processing on the scheduling data collected by the current collection device of the target channel may include extracting, by using a regular expression, program information including a program name and a program set number in the currently collected scheduling data, and deleting the current collection. Redundant information about the scheduled data.
  • the regular expression may refer to filtering the scheduled data string by using a preset rule string, that is, extracting the number of program sets included in the program name of the scheduled data, such as the number of episodes of the TV series, and eliminating redundant Program information, such as "replay", “special program”, “first theater”, and the like, programmatic redundancy information such as guide content, so as to leave a clear program name.
  • a preset rule string that is, extracting the number of program sets included in the program name of the scheduled data, such as the number of episodes of the TV series, and eliminating redundant Program information, such as "replay”, "special program”, “first theater”, and the like, programmatic redundancy information such as guide content, so as to leave a clear program name.
  • the redundant information of the deleted program name may be configured by the system, and the redundant character string of the program name is listed according to a certain rule, and the redundant information of the program name is matched by the regular expression.
  • TV programs such as "Shenzhen TV Station” can be collected by collection devices set up in Shenzhen or Guangdong province, or collected by collection devices set up in Beijing, and for "Shenzhen TV Station", obviously set in Shenzhen or
  • the authority of the EPG data collected by the collection equipment in Guangdong province is higher than the authoritativeness of the EPG data collected by the collection equipment set up in Beijing.
  • the level of the collection equipment of Shenzhen or Guangdong province is relatively high for the channel.
  • set the level of the collection device in Beijing to be relatively low.
  • S206 Sort the schedule data of the current program scheduling sequence of each channel according to the start time.
  • multiple collection devices may be set according to the region. At this time, each collection device is repeatedly uploaded, and needs to be merged with the scheduled data in the stored complete program scheduling sequence.
  • the scheduling data of the current program scheduling sequence of each channel may be sorted according to the starting time, which is the current program scheduling sequence and the stored complete program scheduling sequence. Prepare for the consolidation of the scheduling data. If the start time of the schedule data differs within a preset time range, the current schedule data and the schedule data in the stored complete program schedule sequence are combined.
  • the current program scheduling sequence of each channel has the scheduled data and the stored complete program scheduling sequence
  • the schedule data program names are the same, and the schedule data in the current program schedule of each channel differs from the start time of the schedule data in the stored complete program schedule sequence in a preset time range, for example, at 1 Within the hour, the current schedule data and the schedule data in the stored complete program schedule sequence are merged.
  • the complete program schedule sequence currently stored in the database is displayed for data editing.
  • S214 Receive an edit processing command for the schedule data of the displayed complete program schedule sequence, and modify the schedule data of the complete program schedule sequence according to the instruction.
  • the system After reviewing and verifying the editorial work by the editorial reviewer, the system provides a unified Internet access interface protocol to provide users with up-to-date and complete guide data in a timely manner.
  • the invention processes the currently collected scheduling data to obtain a current program scheduling sequence of each channel, and combines and matches the current program scheduling sequence of the respective channels with the stored complete program scheduling sequence.
  • the process gets a complete program schedule.
  • FIG. 3 is a schematic structural diagram of an embodiment of a content matching apparatus according to the present invention, where the content matching apparatus includes:
  • the data receiving module 10 is configured to receive scheduling data collected by the collecting device according to a preset time interval.
  • the collected scheduling data is sent by the collecting device based on an Internet protocol after collecting the scheduling data from the cable television network.
  • the scheduling data refers to the electronic program menu EPG data collected by the collection device connected to the cable television network. Specifically, a time interval may be preset, for example, 10 hours, according to the time interval, every 10 hours from the cable television network.
  • the EPG data is collected once, and the data receiving module 10 receives the EPG data that is sent after the encapsulation process and is sent by the collection device based on the Internet protocol.
  • the EPG data sent by the collection device can be in xml format or json format, and can be compressed in gzip format to send compressed EPG data to the server to reduce the amount of data transmission.
  • the sequence obtaining module 20 is configured to process the currently collected scheduling data to obtain a current program scheduling sequence of each channel.
  • one of the structural components of the sequence obtaining module 20 may be as shown in FIG. 4, and includes: a source collection device of period data.
  • the collection device may be multiple, and the collection device sets different levels according to the region, according to the level of the collection device, the source collection device for the process data of the current program scheduling sequence of each channel is organized according to the channel, which is convenient for level judgment.
  • the unit 22 performs corresponding processing of the scheduling data according to the level of the current collecting device of the scheduling channel of the comparison target channel in the target channel and the level of the source collecting device in the target channel.
  • the level determining unit 22 when the current collecting device of the scheduling data of the target channel is lower than the level of the source collecting device in the target channel, discarding the target channel The schedule data collected by the current acquisition device. After the source of the data is collected by the device, the level judging unit 22 judges the scheduling data of the target channel by The current acquisition device selects whether the level in the target channel is lower than the level of the source collection device in the target channel to select a processing manner for the schedule data. If the level of the current collecting device of the scheduling data of the target channel in the target channel is lower than the level of the source collecting device in the target channel, it may be stated that the scheduling data is not reliable enough, and the level determining unit 22 The scheduling data collected by the current collection device of the target channel may be discarded.
  • multiple collection devices may be set according to the region. At this time, each collection device is repeatedly uploaded. At this time, the current program scheduling sequence of each channel and the stored complete program scheduling sequence may be used by the sequence combining module 30. The scheduling data is merged.
  • the time sorting unit 31 is configured to sort the scheduling data of the current program scheduling sequence of each channel according to the starting time.
  • the time sorting unit 31 may sort the scheduling data of the current program scheduling sequence of each channel according to the starting time, which is the current program scheduling sequence and the stored complete program. Prepare for the consolidation of the scheduling data in the flight sequence.
  • the merging processing unit 32 is configured to: in the current program scheduling sequence, the scheduling data is the same as the scheduled data name in the stored complete program scheduling sequence, and the scheduling data in the current program scheduling sequence is stored The start time of the schedule data in the complete program schedule sequence is different within a preset time range. After the merge processing unit 32 compares the current program schedule sequence of each channel with the stored complete program schedule sequence. If the schedule data in the current program schedule sequence of each channel is the same as the schedule data program name in the stored complete program schedule sequence, and the schedule data in the current program schedule sequence of each channel is The starting time of the scheduling data in the stored complete program scheduling sequence If the difference is within a preset time range, such as within 1 hour, the current scheduled data is merged with the scheduled data in the stored complete program schedule sequence.
  • the sequence storage module 40 may be matched to match the program scheduling sequence. And matching the sequence of the program to be matched that is matched and processed to the database as a complete program scheduling sequence.
  • one of the structural components of the sequence storage module 40 may be as shown in FIG. 6, including:
  • the data matching unit 41 is configured to perform program search according to the to-be-matched scheduling data of the to-be-matched program scheduling sequence, and acquire program data that matches the scheduling data.
  • the data loading unit 42 is configured to load the program data into the to-be-matched program schedule sequence as a complete program schedule sequence.
  • the data loading unit 42 loads the program data, such as the program ID, the program description data, the program picture data, and the like, which are acquired by the data matching unit 41 and matches the program in the schedule data, into the program sequence to be matched, and The sequence of the program to be matched after the loading operation is performed as a complete program scheduling sequence.
  • program data such as the program ID, the program description data, the program picture data, and the like
  • the sequence storage unit 43 is configured to store the complete program scheduling sequence to a database.
  • the sequence storage unit 43 simultaneously updates and replaces the complete program scheduling sequence when it is stored in the database. A complete sequence of scheduled programs that have been stored in the database.
  • the sequence display module 50 is configured to display a complete program scheduling sequence currently stored in the database. After the sequence storage module 40 stores the complete program schedule sequence to the database and replaces the completed program schedule sequence stored in the database, the sequence display module 50 displays the complete program schedule sequence currently stored in the database for data editing. jobs.
  • the instruction receiving module 60 is configured to receive an edit processing instruction for the scheduled data of the displayed complete program scheduling sequence, and modify the scheduling data of the complete program scheduling sequence according to the instruction.
  • the instruction receiving module 60 accepts an editing processing instruction of the scheduling data of the editing worker therein.
  • the editing processing instruction may include manual proofreading and editing the program.
  • the detailed information, the program picture data information, the program actor information, the program related introduction information, and the related webpage link address, etc., the instruction receiving module 60 simultaneously accepts the editor's confirmation processing of the editing work.
  • the data storage module 70 is configured to store the modified complete program scheduling sequence into the database.
  • the system can provide a unified Internet access interface protocol to provide the user with the latest and complete navigation data in a timely manner.
  • the present invention processes the currently collected schedule data to obtain a current program schedule sequence of each channel, and through the current program schedule sequence of each channel and the stored complete program schedule sequence.
  • the merge processing and matching processing process obtains a complete program scheduling sequence.
  • the content matching system includes a server 1 and at least one collection device 2, where
  • the collecting device 2 is configured to collect the scheduling data from the cable television network according to a preset time interval, and send the scheduling data to the server according to an internet protocol.
  • a plurality of collection devices 2 can be set according to a region.
  • the collecting device 2 collects the electronic program menu EPG data from the cable television network according to the preset time interval. Specifically, a time interval, for example, 24 hours, may be preset, and the time interval is collected from the cable television network every 24 hours.
  • the EPG data is collected by the collection device 2 and sent to the server based on the Internet protocol after the EPG data is encapsulated.
  • the EPG data sent by the collection device 2 can be in xml format or json format, and can be compressed by using the gzip format, and the compressed EPG data is sent to the server to reduce the amount of data transmission.
  • the server 1 is configured to process the currently collected scheduling data to obtain a current program scheduling sequence of each channel; and merge the current program scheduling sequence of each channel with the stored complete program scheduling sequence Processing, obtaining a sequence of the program to be matched after the merged processing; after matching the server 1 to receive the scheduling data collected by the collecting device, that is, the EPG data, the scheduling data may be sorted, and Organize according to the channel to form a current program scheduling sequence for each channel. Since the collection device can be multiple, and the collection device is set to different levels according to the region.
  • the currently collected schedule data of the target channel includes program information such as the number of program episodes, and deletes redundant information of the currently collected schedule data, such as "replay" and "special program".
  • the first theater "equal information such as program-oriented content is redundant so that a clear program name is left.
  • multiple collection devices may be set according to a region.
  • each collection device is repeatedly uploaded, and needs to be merged with the scheduled data in the stored complete program scheduling sequence.
  • the scheduling data of the current program scheduling sequence of each channel may be sorted according to the starting time, if the current program scheduling sequence of each channel is scheduled The data is the same as the scheduled data program name in the stored complete program schedule sequence, and the schedule data in the current program schedule sequence of each channel differs from the start time of the schedule data in the stored complete program schedule sequence. In a preset time range, such as within 1 hour, the current schedule data and the schedule data in the stored complete program schedule sequence are merged.
  • the reference program information of the schedule data in the current program schedule sequence of each channel may be extracted based on the schedule data in the current program schedule sequence of each channel, such as a program name, a program album attribute, such as a program.
  • the ID, program description data, program picture data, program editor, and program editing time are combined.
  • the scheduled matching data in the merged program scheduling sequence may include the unprocessed row.
  • Period data or schedule data with merged but incomplete program information such as when there is no matching program ID, program description data, program picture data, etc. in the schedule data in the schedule data
  • the schedule data may be passed through
  • the program name, program category and other information are matched to the program database of the system for matching search, and program data matching the program in the schedule data, such as program ID, program description data, and program picture data, can be obtained for later editing.
  • Work provides a reference.
  • the program data is loaded into the program sequence to be matched as a complete program schedule sequence and the complete program schedule is stored in a database, while the stored program schedules stored in the database are updated and replaced.
  • the editing worker can edit the scheduling data therein, which may include manual proofreading, editing program detailed information, providing program image data information, program actor information, program related introduction information, and Related web page link address, etc. Work.
  • the system can provide a unified Internet access interface protocol to provide users with up-to-date and complete guide data in a timely manner.
  • the invention obtains a complete program scheduling sequence by screening, merging and matching processing the currently collected scheduling data, and provides the user with relatively complete guiding data content, which is convenient for the user to perform reliable program content search and obtain the timely.
  • the program has improved the efficiency of program search.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

Landscapes

  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Databases & Information Systems (AREA)
  • Human Computer Interaction (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)

Abstract

本发明实施例公开了一种内容匹配方法,包括:对当前采集到的排期数据进行处理,得到各频道的当前节目排期序列;对所述各频道的当前节目排期序列与已存储的完备节目排期序列进行合并处理,得到经过合并处理后的待匹配节目排期序列;将经过匹配处理的所述待匹配节目排期序列作为完备节目排期序列存储至数据库。本发明实施例还公开了一种内容匹配装置及系统。采用本发明,可以为用户提供较为完备的导视数据内容,方便用户进行可靠的节目内容搜索并及时获取到该节目,较好地提高了节目查找效率。

Description

一种内容匹配方法、 装置及系统 技术领域
本发明涉及数字电视领域, 尤其涉及一种内容匹配方法、 装置及系统。 背景技术
随着数字电视的普及以及数字电视技术的发展,人们可以收看的频道越来 越多,播放的节目也是各式各样。若用户想要在当前提供的电视节目中去搜索 自己想要观看的节目,则需要逐一更换频道进行搜索查看,操作过程非常繁瑣, 而且还往往搜索不到自己想要观看的节目。
EPG ( Electronic Program Guide, 电子节目菜单 )主要是为用户提供节目 单, 用户根据该节目单选择自己喜欢的组播频道、点播自己喜欢的视频节目或 查找 IPTV提供的各种信息等等。用户也可使用 EPG提供的节目单来订购自己 喜欢的节目, 利用 EPG菜单查看节目的附加信息, 例如对节目内容介绍、 对 演员及导演的介绍等。 因此, EPG在交互式网络电视 IPTV系统中起着十分重 要的作用。
现有技术中, 主要基于互联网网站, 比如湖南电视台网站、 中央电视台网 站等,去采集其公开的节目排期数据, 导致采集的节目排期数据不够及时而且 并不完整, 用户不能很好地获取想要的节目信息, 节目查找效率较低, 不能够 及时为用户提供较为完整的可靠导视数据源。 发明内容
本发明实施例所要解决的技术问题在于,提供一种内容匹配的方法、装置 及系统, 可为用户提供较为完备的导视数据内容。
为了解决上述技术问题,本发明实施例提供了一种内容匹配的方法,包括: 对当前采集到的排期数据进行处理, 得到各频道的当前节目排期序列; 并处理, 得到经过合并处理后的待匹配节目排期序列; 将经过匹配处理的所述待匹配节目排期序列作为完备节目排期序列存储 至数据库。
其中,在所 ^于当前采集到的排期数据进行处理,得到各频道的当前节目 排期序列之前, 所述方法还包括:
接收采集设备根据预设时间间隔采集的排期数据,所述采集的排期数据是 所述采集设备从有线电视网络中采集排期数据后基于互联网协议发送的。
其中, 所述对当前采集到的排期数据进行处理,得到各频道的当前节目排 期序列包括:
确定已存储的完备节目排期序列中目标频道的排期数据的来源采集设备; 若所述目标频道的排期数据的当前采集设备在所述目标频道中的级别低 于该来源采集设备在所述目标频道中的级别,则丟弃所述目标频道的当前采集 设备采集到的排期数据;
否则, 对所述目标频道的当前采集设备采集到的排期数据进行初始化处 理, 获得目标频道的当前节目排期序列。
其中,所述对所述目标频道的当前采集设备采集到的排期数据进行初始化 处理, 包括:
通过正则表达式提取当前采集到的排期数据中包括节目名与节目集数的 节目信息, 并删除所述当前采集到的排期数据的冗余信息。
其中 ,所述对所述各频道的当前节目排期序列与已存储的完备节目排期序 列进行合并处理, 得到经过合并处理后的待匹配节目排期序列包括:
将所述各频道的当前节目排期序列的排期数据按照起始时间排序; 若所述当前节目排期序列中排期数据与已存储的完备节目排期序列中排 期数据名称相同,且所述当前节目排期序列中排期数据与已存储的完备节目排 期序列中排期数据起始时间相差在预设的时间范围内,则合并所述当前排期数 据与所述已存储的完备节目排期序列中的排期数据;
得到经过合并处理后的待匹配节目排期序列,所述待匹配节目排期序列包 括已合并排期数据及待匹配排期数据。
其中 ,在将经过匹配处理的所述待匹配节目排期序列作为完备节目排期序 列存储至数据库, 包括: 根据所述待匹配节目排期序列的所述待匹配排期数据进行节目搜索,获取 与所述排期数据相匹配的节目数据;
将所述节目数据加载到所述待匹配节目排期序列中作为完备节目排期序 列;
将所述完备节目排期序列存储至数据库。
其中, 所述方法还包括:
显示当前在数据库中存储的完备节目排期序列;
接收对显示的完备节目排期序列的排期数据的编辑处理指令,并根据所述 指令对所述完备节目排期序列的排期数据进行修改;
将修改后的所述完备节目排期序列存储到所述数据库中。
相应地, 本发明实施例还提供了一种内容匹配装置, 包括:
序列获 莫块, 用于对当前采集到的排期数据进行处理,得到各频道的当 前节目排期序列;
序列合并模块,用于对所述序列获取模块得到的所述各频道的当前节目排 匹配节目排期序列;
序列存储模块,用于将经过匹配处理的所述待匹配节目排期序列作为完备 节目排期序列存储至数据库。
其中, 所述装置还包括:
数据接收模块, 用于接收采集设备根据预设时间间隔采集的排期数据, 所 述采集的排期数据是所述采集设备从有线电视网络中采集排期数据后基于互 联网协议发送的。
其中, 所述序列获耳 莫块包括: 据的来源采集设备;
级别判断单元,用于当所述目标频道的排期数据的当前采集设备在所述目 标频道中的级别低于该来源采集设备在所述目标频道中的级别时,丟弃所述目 标频道的当前采集设备采集到的排期数据;
初始化处理单元,用于当所述目标频道的排期数据的当前采集设备在所述 目标频道中的级别不低于该来源采集设备在所述目标频道中的级别时,对所述 目标频道的当前采集设备采集到的排期数据进行初始化处理,获得目标频道的 当前节目排期序列。
其中, 所述序列合并模块包括:
时间排序单元,用于将所述各频道的当前节目排期序列的排期数据按照起 始时间排序;
合并处理单元,用于在所述当前节目排期序列中排期数据与已存储的完备 节目排期序列中排期数据名称相同,且所述当前节目排期序列中排期数据与已 存储的完备节目排期序列中排期数据起始时间相差在预设的时间范围内时,合 序列获取单元, 用于获取经过合并处理后的待匹配节目排期序列, 所述待 匹配节目排期序列包括已合并排期数据及待匹配排期数据。
其中, 所述序列存储模块包括:
数据匹配单元,用于根据所述待匹配节目排期序列的所述待匹配排期数据 进行节目搜索, 获取与所述排期数据相匹配的节目数据;
数据加载单元,用于将所述节目数据加载到所述待匹配节目排期序列中作 为完备节目排期序列;
序列存储单元, 用于将所述完备节目排期序列存储至数据库。
其中, 所述装置还包括:
序列显示模块, 用于显示当前在数据库中存储的完备节目排期序列; 指令接收模块,用于接收对显示的完备节目排期序列的排期数据的编辑处 理指令, 并根据所述指令对所述完备节目排期序列的排期数据进行修改; 数据存储模块,用于将修改后的所述完备节目排期序列存储到所述数据库 中。
相应地, 本发明实施例还提供了一种内容匹配系统, 包括服务器及至少一 个采集设备, 其中,
所述采集设备, 用于根据预设时间间隔从有线电视网络中采集排期数据, 并将该排期数据基于互联网协议发送至所述服务器;
所述服务器,用于对当前采集到的排期数据进行处理,得到各频道的当前 节目排期序列;对所述各频道的当前节目排期序列与已存储的完备节目排期序 列进行合并处理,得到经过合并处理后的待匹配节目排期序列; 将经过匹配处 实施本发明实施例, 具有如下有益效果:
本发明通过对当前采集到的排期数据进行处理,得到各频道的当前节目排 期序列,并通过该各频道的当前节目排期序列与已存储的完备节目排期序列的 合并处理及匹配处理过程得到完备节目排期序列,为用户提供较为完备的导视 数据内容, 方便用户进行可靠的节目内容搜索并及时获取到该节目,较好地提 高了节目查找效率。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施 例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地, 下面描述 中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付 出创造性劳动的前提下, 还可以根据这些附图获得其他的附图。
图 1是本发明的内容匹配方法的第一实施例的流程示意图;
图 2是本发明的内容匹配方法的第二实施例的流程示意图;
图 3是本发明的一种内容匹配装置的实施例的结构组成示意图; 图 4是本发明的图 3中的序列获耳 莫块的其中一种结构组成示意图; 图 5是本发明的图 3中的序列合并模块的其中一种结构组成示意图; 图 6是本发明的图 3中的序列存储模块的其中一种结构组成示意图; 图 7是本发明的一种内容匹配系统的实施例的结构组成示意图。 具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清 楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是 全部的实施例。基于本发明中的实施例, 本领域普通技术人员在没有作出创造 性劳动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
请参见图 1 , 是本发明的内容匹配方法的第一实施例的流程示意图, 所述 内容匹配方法包括:
S101 :对当前采集到的排期数据进行处理,得到各频道的当前节目排期序 列。
所述排期数据是指由接入有线电视网络的采集设备定时采集的电子节目 菜单 EPG数据, 具体的, 可以预设一个时间间隔, 比如 24小时, 根据该时间 间隔每 24小时从有线电视网络采集一次 EPG数据, 将所述 EPG数据经过封 装处理后, 基于互联网协议发送至服务器。 采集设备发送的 EPG数据可以是 xml格式或者 json格式, 并且可以采用 gzip格式进行压缩处理, 将压缩后的 EPG数据发送至服务器, 以减少数据的传输量。
所述服务器在接收到采集设备采集的排期数据, 即 EPG数据之后, 可以 对该排期数据进行分拣处理,并且根据频道进行组织形成各频道的当前节目排 期序列。由于采集设备可以是多个,并且采集设备按照地域设置了不同的级别, 根据采集设备的级别,在根据频道进行组织形成各频道当前节目排期序列的过 集设备。若所述目标频道的排期数据的当前采集设备在所述目标频道中的级别 低于该来源采集设备在所述目标频道中的级别,则丟弃所述目标频道的当前采 集设备采集到的排期数据; 否则,对所述目标频道的当前采集设备采集到的排 期数据进行初始化处理, 获得目标频道的当前节目排期序列。对所述目标频道 提取当前采集到的排期数据中包括节目名与节目集数等节目信息,并删除所述 当前采集到的排期数据的冗余信息。所述正则表达式可以指用预设的规则字符 串对排期数据字符串进行过滤处理,即可以提取排期数据的节目名中包含的节 目集数, 比如电视剧的集数, 并剔除冗余的节目信息, 比如 "重播"、 "特别节 目" "第一剧场"等类似引导性内容的节目冗余信息, 以使留下清晰的节目名。 具体的,删除节目名的冗余信息可以通过系统配置,按照一定的规则列举节目 名冗余字符串, 通过正则表达式进行匹配并删除该节目名的冗余信息。
具体的, 比如 "深圳电视台" 的电视节目, 可以由在深圳或者广东省设置 的采集设备采集得到, 也可以由在北京设置的采集设备采集得到, 而对于 "深 圳电视台",显然设置在深圳或者广东省的采集设备采集到的 EPG数据的权威 性要高于设置在北京的采集设备采集到的 EPG数据的权威性, 此时对于该频 道将深圳或者广东省的采集设备的级别相对设置为高,将北京的采集设备的级 别相对设置为低。 当接收到新采集的 EPG数据时, 若采集到 "深圳电视台" 的排期数据的当前采集设备为北京的采集设备,丟弃该采集设备采集的排期数 据; 若采集到 "深圳电视台" 的排期数据的当前采集设备为深圳或广东省的采 集设备, 可以表示该排期数据较为可靠,对该频道的当前采集设备采集到的排 期数据进行初始化处理, 获得该频道的当前节目排期序列。
S102:对所述各频道的当前节目排期序列与已存储的完备节目排期序列进 行合并处理, 得到经过合并处理后的待匹配节目排期序列。
具体实施例中, 可以根据地域设置多个采集设备, 此时每个采集设备上传 重复,需要与已存储的完备节目排期序列中的排期数据进行合并处理。具体的, 得到各频道的当前节目排期序列之后,可以将所述各频道的当前节目排期序列 的排期数据按照起始时间排序。在将各频道的当前节目排期序列与已存储的完 备节目排期序列进行对比之后,若所述各频道的当前节目排期序列中排期数据 与已存储的完备节目排期序列中排期数据节目名相同,且所述各频道的当前节 目排期序列中排期数据与已存储的完备节目排期序列中排期数据起始时间相 差在预设的时间范围, 比如在 1小时以内, 则合并所述当前排期数据与所述已 存储的完备节目排期序列中的排期数据。
在合并过程中, 可以以各频道的当前节目排期序列中排期数据为基准,提 取各频道的当前节目排期序列中排期数据的基准节目信息, 比如节目名、节目 辑属性, 比如节目 ID、 节目描述数据、 节目图片数据、 节目编辑人以及节目 编辑时间等等进行合并。在合并所述各频道的当前排期数据与所述已存储的完 备节目排期序列中的排期数据之后,得到经过合并处理后的待匹配节目排期序 列, 所述待匹配节目排期序列包括已合并排期数据及待匹配排期数据。
S103:将经过匹配处理的所述待匹配节目排期序列作为完备节目排期序列 存储至数据库。
在获得经过合并处理后的待匹配节目排期序列之后,对于合并后的待匹配 节目排期序列的待匹配排期数据, 具体的, 该待匹配排期数据可以包括未经过 合并处理的排期数据或者经过合并但节目信息不全的排期数据,比如当其中的 排期数据中有的节目信息没有匹配的节目 ID、 节目描述数据及节目图片数据 等等时, 可以通过该排期数据中的节目名、节目类别等信息到系统的节目数据 库进行匹配搜索, 获取与该排期数据中与该节目相匹配的节目数据如节目 ID、 节目描述数据及节目图片数据等, 可以为后期的编辑工作提供参考依据。将所 述节目数据加载到所述待匹配节目排期序列中作为完备节目排期序列并将所 述完备节目排期序列存储至数据库。
在将所述节目数据加载到所述待匹配节目排期序列中作为完备节目排期 序列并将所述完备节目排期序列存储至数据库时,同时更新并替换数据库中已 存储的完备节目排期序列。
当服务器接收到采集设备根据预设时间间隔新采集的 EPG数据时, 重复 步骤 S101至 S103 , 获得新的完备节目排期序列, 并更新数据库中已存储的完 备节目排期序列。
在完备节目排期序列存储至数据库之后,编辑工作者可以对其中的排期数 据进行编辑处理, 可以包括人工校对、 编辑节目详细信息、 提供节目图片数据 信息、节目演员信息、节目相关介绍信息及相关网页链接地址等等编辑处理操 作。 经过编审工作者对编辑工作的审核并确认无误之后, 可以通过系统提供统 一的互联网访问接口协议, 及时的向用户提供最新以及完备的导视数据。
本发明通过对当前采集到的排期数据进行处理,得到各频道的当前节目排 期序列,并通过该各频道的当前节目排期序列与已存储的完备节目排期序列的 合并处理及匹配处理过程得到完备节目排期序列,为用户提供完备的导视数据 内容, 方便用户进行可靠的节目内容搜索并及时获取到该节目,较好地提高了 节目查找效率。
请参见图 2, 是本发明的内容匹配方法的第二实施例的流程示意图, 所述 内容匹配方法包括:
S201 : 接收采集设备根据预设时间间隔采集的排期数据。
所述排期数据是指由接入有线电视网络的采集设备定时采集的电子节目 菜单 EPG数据, 具体的, 可以预设一个时间间隔, 比如 10小时, 根据该时间 间隔每 10小时从有线电视网络采集一次 EPG数据, 将所述 EPG数据经过封 装处理后, 基于互联网协议发送至服务器。 采集设备发送的 EPG数据可以是 xml格式或者 json格式, 并且可以采用 gzip格式进行压缩处理, 将压缩后的 EPG数据发送至服务器, 以减少数据的传输量。
S202:确定已存储的完备节目排期序列中目标频道的排期数据的来源采集 设备。
所述服务器在接收到采集设备采集的排期数据, 即 EPG数据之后, 可以 对该排期数据进行分拣处理,并且根据频道进行组织形成各频道的当前节目排 期序列。由于采集设备可以是多个,并且采集设备按照地域设置了不同的级别, 根据采集设备的级别,在根据频道进行组织形成各频道当前节目排期序列的过 集设备,并根据比较目标频道的排期数据的当前采集设备在所述目标频道中的 级别与该来源采集设备在所述目标频道中的级别进行排期数据的相应处理。
S203:判断目标频道的排期数据的当前采集设备在所述目标频道中的级别 是否低于该来源采集设备在所述目标频道中的级别。 设备之后,通过判断目标频道的排期数据的当前采集设备在所述目标频道中的 级别是否低于该来源采集设备在所述目标频道中的级别来选择对该排期数据 的处理方式。
S204: 丟弃所述当前节目排期序列的排期数据。
若所述目标频道的排期数据的当前采集设备在所述目标频道中的级别低 于该来源采集设备在所述目标频道中的级别, 则可以说明该排期数据不够可 靠, 可以丟弃所述目标频道的当前采集设备采集到的排期数据。
S205:对所述当前采集到的排期数据进行初始化处理,获得各频道的当前 节目排期序列。
若所述目标频道的排期数据的当前采集设备在所述目标频道中的级别不 低于该来源采集设备在所述目标频道中的级别 ,则可以表示该排期数据较为可 靠,对所述目标频道的当前采集设备采集到的排期数据进行初始化处理,获得 目标频道的当前节目排期序列。 对所述目标频道的当前采集设备采集到的排期数据进行初始化处理可以 包括通过正则表达式提取当前采集到的排期数据中包括节目名与节目集数等 节目信息, 并删除所述当前采集到的排期数据的冗余信息。所述正则表达式可 以指用预设的规则字符串对排期数据字符串进行过滤处理,即提取排期数据的 节目名中包含的节目集数, 比如电视剧的集数, 并剔除冗余的节目信息, 比如 "重播"、 "特别节目" "第一剧场" 等类似引导性内容的节目冗余信息, 以使 留下清晰的节目名。 具体的, 删除节目名的冗余信息可以通过系统配置, 按照 一定的规则列举节目名冗余字符串,通过正则表达式进行匹配并删除该节目名 的冗余信息。
具体的, 比如 "深圳电视台" 的电视节目, 可以由在深圳或者广东省设置 的采集设备采集得到, 也可以由在北京设置的采集设备采集得到, 而对于 "深 圳电视台",显然设置在深圳或者广东省的采集设备采集到的 EPG数据的权威 性要高于设置在北京的采集设备采集到的 EPG数据的权威性, 此时对于该频 道将深圳或者广东省的采集设备的级别相对设置为高,将北京的采集设备的级 别相对设置为低。 当接收到新采集的 EPG数据时, 若采集到 "深圳电视台" 的排期数据的当前采集设备为北京的采集设备,丟弃该采集设备采集的排期数 据; 若采集到 "深圳电视台" 的排期数据的当前采集设备为深圳或广东省的采 集设备, 可以表示该排期数据较为可靠,对该频道的当前采集设备采集到的排 期数据进行初始化处理, 获得该频道的当前节目排期序列。
S206: 将所述各频道的当前节目排期序列的排期数据按照起始时间排序。 具体实施例中, 可以根据地域设置多个采集设备, 此时每个采集设备上传 重复, 需要与已存储的完备节目排期序列中的排期数据进行合并处理。在得到 各频道的当前节目排期序列之后,可以将所述各频道的当前节目排期序列的排 期数据按照起始时间排序,为当前节目排期序列与已存储的完备节目排期序列 中排期数据的合并处理做准备。 相同,且所述排期数据的起始时间相差在预设的时间范围内, 则合并当前排期 数据与已存储的完备节目排期序列中的排期数据。 具体的,在将各频道的当前节目排期序列与已存储的完备节目排期序列进 行对比之后,若所述各频道的当前节目排期序列中排期数据与已存储的完备节 目排期序列中排期数据节目名相同,且所述各频道的当前节目排期序列中排期 数据与已存储的完备节目排期序列中排期数据起始时间相差在预设的时间范 围, 比如在 1小时以内, 则合并所述当前排期数据与所述已存储的完备节目排 期序列中的排期数据。
在合并过程中, 可以以各频道的当前节目排期序列中排期数据为基准,提 取各频道的当前节目排期序列中排期数据的基准节目信息, 比如节目名、节目 辑属性, 比如节目 ID、 节目描述数据、 节目图片数据、 节目编辑人以及节目 编辑时间等等进行合并。
S208: 得到经过合并处理后的待匹配节目排期序列。
在合并所述各频道的当前排期数据与所述已存储的完备节目排期序列中 的排期数据之后,得到经过合并处理后的待匹配节目排期序列, 所述待匹配节 目排期序列包括已合并排期数据及待匹配排期数据。
S209:根据待匹配节目排期序列的待匹配排期数据进行节目搜索,获取与 该排期数据相匹配的节目数据。
在获得经过合并处理后的待匹配节目排期序列之后,对于合并后的待匹配 节目排期序列的待匹配排期数据, 具体的, 该待匹配排期数据可以包括未经过 合并处理的排期数据或者经过合并但节目信息不全的排期数据,比如当其中的 排期数据中有的节目信息没有匹配的节目 ID、 节目描述数据及节目图片数据 等等时, 可以通过该排期数据中的节目名、节目类别等信息到系统的节目数据 库进行匹配搜索, 获取与该排期数据中与该节目相匹配的节目数据如节目 ID、 节目描述数据及节目图片数据等, 可以为后期的编辑工作提供参考依据。
S210:将所述节目数据加载到所述待匹配节目排期序列中作为完备节目排 期序列。
将获取到的与该排期数据中节目相匹配的节目数据如节目 ID、 节目描述 数据及节目图片数据等加载到所述待匹配节目排期序列中,将进行加载操作后 的待匹配节目排期序列中作为完备节目排期序列。 S211 : 将所述完备节目排期序列存储至数据库。
在将所述节目数据加载到所述待匹配节目排期序列中作为完备节目排期 序列并将所述完备节目排期序列存储至数据库时,同时更新并替换数据库中已 存储
Figure imgf000014_0001
当将所述完备节目排期序列存储至数据库时,并替换数据库中已存储的完 备节目排期序列之后, 判断是否有新采集的排期数据到来。 当服务器接收到采 集设备根据预设时间间隔新采集的 EPG数据时, 重复步骤 S201至 S211 , 获 得新的完备节目排期序列, 并更新数据库中已存储的完备节目排期序列。
S213: 显示当前在数据库中存储的完备节目排期序列。
将所述完备节目排期序列存储至数据库并替换数据库中已存储的完备节 目排期序列后,显示当前在数据库中存储的完备节目排期序列, 以进行数据编 辑工作。
S214:接收对显示的完备节目排期序列的排期数据的编辑处理命令,并根 据所述指令对所述完备节目排期序列的排期数据进行修改。
在完备节目排期序列存储至数据库之后,编辑工作者可以对其中的排期数 据进行编辑处理, 可以包括人工校对、 编辑节目详细信息、 提供节目图片数据 信息、节目演员信息、节目相关介绍信息及相关网页链接地址等等编辑处理操 作, 并通过编审工作者对该编辑工作的进行确认处理。
S215: 将修改后的完备节目排期序列存储到所述数据库中。
经过编审工作者对编辑工作的审核并确认无误之后 ,可以通过系统提供统 一的互联网访问接口协议, 及时的向用户提供最新以及完备的导视数据。
本发明通过对当前采集到的排期数据进行处理,得到各频道的当前节目排 期序列,并通过该各频道的当前节目排期序列与已存储的完备节目排期序列的 合并处理及匹配处理过程得到完备节目排期序列。通过对采集到的排期数据的 及时处理, 可以为用户提供最新以及较为完备的导视数据内容, 方便用户进行 可靠的节目内容搜索并及时获取到该节目, 并且较好地提高了节目查找效率。
请参见图 3 , 是本发明的一种内容匹配装置的实施例的结构示意图, 所述 内容匹配装置包括: 数据接收模块 10,用于接收采集设备根据预设时间间隔采集的排期数据。 所述采集的排期数据是所述采集设备从有线电视网络中采集排期数据后基 于互联网协议发送的。
所述排期数据是指由接入有线电视网络的采集设备定时采集的电子节目 菜单 EPG数据, 具体的, 可以预设一个时间间隔, 比如 10小时, 根据该时间 间隔每 10小时从有线电视网络采集一次 EPG数据, 数据接收模块 10接收经 过封装处理后并由采集设备基于互联网协议发送的所述 EPG数据。 采集设备 发送的 EPG数据可以是 xml格式或者 json格式,并且可以采用 gzip格式进行 压缩处理, 将压缩后的 EPG数据发送至服务器, 以减少数据的传输量。
序列获取模块 20, 用于对当前采集到的排期数据进行处理, 得到各频道 的当前节目排期序列。
所述数据接收模块 10在接收到采集设备采集的排期数据,即 EPG数据之 后, 序列获取模块 20可以对该排期数据进行分拣处理, 并且根据频道进行组 织形成各频道的当前节目排期序列。
作为一种可选的实施方式, 所述序列获取模块 20的其中一种结构组成示 意图可以如图 4所示, 包括: 期数据的来源采集设备。
由于采集设备可以是多个, 并且采集设备按照地域设置了不同的级别,根 据采集设备的级别,在根据频道进行组织形成各频道当前节目排期序列的过程 期数据的来源采集设备, 便于级别判断单元 22根据比较目标频道的排期数据 的当前采集设备在所述目标频道中的级别与该来源采集设备在所述目标频道 中的级别进行排期数据的相应处理。
级别判断单元 22, 用于当所述目标频道的排期数据的当前采集设备在所 述目标频道中的级别低于该来源采集设备在所述目标频道中的级别时,丟弃所 述目标频道的当前采集设备采集到的排期数据。 数据的来源采集设备之后, 级别判断单元 22通过判断目标频道的排期数据的 当前采集设备在所述目标频道中的级别是否低于该来源采集设备在所述目标 频道中的级别来选择对该排期数据的处理方式。若所述目标频道的排期数据的 当前采集设备在所述目标频道中的级别低于该来源采集设备在所述目标频道 中的级别, 则可以说明该排期数据不够可靠, 级别判断单元 22可以丟弃所述 目标频道的当前采集设备采集到的排期数据。
初始化处理单元 23 , 用于当所述目标频道的排期数据的当前采集设备在 所述目标频道中的级别不低于该来源采集设备在所述目标频道中的级别时,对 所述目标频道的当前采集设备采集到的排期数据进行初始化处理,获得目标频 道的当前节目排期序列。
若级别判断单元 22判断所述目标频道的排期数据的当前采集设备在所述 目标频道中的级别不低于该来源采集设备在所述目标频道中的级别,则可以表 示该排期数据较为可靠, 级别判断单元 22将所述目标频道的当前排期数据传 输给初始化处理单元 23 , 初始化处理单元 23对所述目标频道的当前采集设备 采集到的排期数据进行初始化处理, 并获得目标频道的当前节目排期序列。
初始化处理单元 23对所述目标频道的当前采集设备采集到的排期数据进 行初始化处理可以包括通过正则表达式提取当前采集到的排期数据中包括节 目名与节目集数等节目信息, 并删除所述当前采集到的排期数据的冗余信息。 所述正则表达式可以指用预设的规则字符串对排期数据字符串进行过滤处理, 即提取排期数据的节目名中包含的节目集数, 比如电视剧的集数, 并剔除冗余 的节目信息, 比如 "重播"、 "特别节目" "第一剧场" 等类似引导性内容的节 目冗余信息, 以使留下清晰的节目名。 具体的, 删除节目名的冗余信息可以通 过系统配置,按照一定的规则列举节目名冗余字符串,通过正则表达式进行匹 配并删除该节目名的冗余信息。
具体的, 比如 "深圳电视台" 的电视节目, 可以由在深圳或者广东省设置 的采集设备采集得到, 也可以由在北京设置的采集设备采集得到, 而对于 "深 圳电视台",显然设置在深圳或者广东省的采集设备采集到的 EPG数据的权威 性要高于设置在北京的采集设备采集到的 EPG数据的权威性, 此时对于该频 道将深圳或者广东省的采集设备的级别相对设置为高,将北京的采集设备的级 别相对设置为低。 当数据接收模块 10接收到新采集的 EPG数据时, 若级别判 断单元 22判断采集到 "深圳电视台" 的排期数据的当前采集设备为北京的采 集设备, 且低于设置在广东省的来源采集设备, 则级别判断单元 22丟弃当前 采集设备采集的排期数据; 若采集到 "深圳电视台" 的排期数据的当前采集设 备为深圳或广东省的采集设备,该采集设备的级别与来源采集设备相比级别相 同或者更高, 可以表示该排期数据较为可靠, 级别判断单元 22将该频道的当 前采集设备采集到的排期数据传输给初始化处理单元 23 , 初始化处理单元 23 对当前排期数据进行初始化处理, 获得该频道的当前节目排期序列。
序列合并模块 30 , 用于对所述序列获取模块 20得到的所述各频道的当前 理后的待匹配节目排期序列。
具体实施例中, 可以根据地域设置多个采集设备, 此时每个采集设备上传 重复, 此时可以通过序列合并模块 30将各频道的当前节目排期序列与已存储 的完备节目排期序列中的排期数据进行合并处理。
作为一种可选的实施方式, 所述序列合并模块 30的其中一种结构组成示 意图可以如图 5所示, 包括:
时间排序单元 31 , 用于将所述各频道的当前节目排期序列的排期数据按 照起始时间排序。
在得到各频道的当前节目排期序列之后, 时间排序单元 31可以将所述各 频道的当前节目排期序列的排期数据按照起始时间排序,为当前节目排期序列 与已存储的完备节目排期序列中排期数据的合并处理做准备。
合并处理单元 32, 用于在所述当前节目排期序列中排期数据与已存储的 完备节目排期序列中排期数据名称相同,且所述当前节目排期序列中排期数据 与已存储的完备节目排期序列中排期数据起始时间相差在预设的时间范围内 具体的, 在合并处理单元 32将各频道的当前节目排期序列与已存储的完 备节目排期序列进行对比之后,若所述各频道的当前节目排期序列中排期数据 与已存储的完备节目排期序列中排期数据节目名相同,且所述各频道的当前节 目排期序列中排期数据与已存储的完备节目排期序列中排期数据起始时间相 差在预设的时间范围, 比如在 1小时以内, 则合并所述当前排期数据与已存储 的完备节目排期序列中的排期数据。
在合并处理单元 32进行合并时, 可以以各频道的当前节目排期序列中排 期数据为基准, 提取各频道的当前节目排期序列中排期数据的基准节目信息, 比如节目名、节目起始和终止时间等等, 并使用已存储的完备节目排期序列中 相应排期数据的编辑属性, 比如节目 ID、 节目描述数据、 节目图片数据、 节 目编辑人以及节目编辑时间等等进行合并。
序列获取单元 33 , 用于获取经过合并处理后的待匹配节目排期序列。 在合并处理单元 32合并所述各频道的当前排期数据与所述已存储的完备 节目排期序列中的排期数据之后, 通过序列获取单元 33获取经过合并处理后 的待匹配节目排期序列,所述待匹配节目排期序列包括已合并排期数据及待匹 配排期数据。
序列存储模块 40, 用于将经过匹配处理的所述待匹配节目排期序列作为 完备节目排期序列存储至数据库。
在通过序列合并模块 30进行合并处理并获得经过合并处理后的待匹配节 目排期序列之后,对于合并后的待匹配节目排期序列,可以通过序列存储模块 40对待匹配节目排期序列进行匹配处理, 并将经过匹配处理的所述待匹配节 目排期序列作为完备节目排期序列存储至数据库。
作为一种可选的实施方式, 所述序列存储模块 40的其中一种结构组成示 意图可以如图 6所示, 包括:
数据匹配单元 41 , 用于根据所述待匹配节目排期序列的待匹配排期数据 进行节目搜索, 获取与所述排期数据相匹配的节目数据。
在通过序列合并模块 30进行合并处理并获得经过合并处理后的待匹配节 目排期序列之后, 对于待匹配节目排期序列中的待匹配排期数据, 具体的, 该 待匹配排期数据可以包括未经过合并处理的排期数据或者经过合并但节目信 息不全的排期数据, 比如当其中的排期数据中有的节目信息没有匹配的节目 ID、 节目描述数据及节目图片数据等等时, 数据匹配单元 41可以通过该排期 数据中的节目名、节目类别等信息到系统的节目数据库进行匹配搜索, 获取与 该排期数据中与该节目相匹配的节目数据如节目 ID、 节目描述数据及节目图 片数据等, 可以为后期的编辑工作提供参考依据。
数据加载单元 42, 用于将所述节目数据加载到所述待匹配节目排期序列 中作为完备节目排期序列。
数据加载单元 42将数据匹配单元 41获取到的与该排期数据中节目相匹配 的节目数据如节目 ID、 节目描述数据及节目图片数据等加载到所述待匹配节 目排期序列中,并将进行加载操作后的待匹配节目排期序列中作为完备节目排 期序列。
序列存储单元 43 , 用于将所述完备节目排期序列存储至数据库。
在数据加载单元 42将所述节目数据加载到所述待匹配节目排期序列中作 为完备节目排期序列时, 序列存储单元 43将所述完备节目排期序列存储至数 据库时, 同时更新并替换数据库中已存储的完备节目排期序列。
序列显示模块 50, 用于显示当前在数据库中存储的完备节目排期序列。 序列存储模块 40将所述完备节目排期序列存储至数据库并替换数据库中 已存储的完备节目排期序列后, 序列显示模块 50显示当前在数据库中存储的 完备节目排期序列, 以进行数据编辑工作。
指令接收模块 60, 用于接收对显示的完备节目排期序列的排期数据的编 辑处理指令, 并根据所述指令对所述完备节目排期序列的排期数据进行修改。
在通过序列存储模块 40将完备节目排期序列存储至数据库之后, 指令接 收模块 60接受编辑工作者对其中的排期数据的编辑处理指令, 具体的, 该编 辑处理指令可以包括人工校对、 编辑节目详细信息、 提供节目图片数据信息、 节目演员信息、 节目相关介绍信息及相关网页链接地址等等, 指令接收模块 60同时接受编审工作者对该编辑工作的进行确认处理。
数据存储模块 70, 用于将修改后的所述完备节目排期序列存储到所述数 据库中。
在指令接收模块 60接受编审工作者对编辑工作的审核并确认无误之后, 可以通过系统提供统一的互联网访问接口协议,及时的向用户提供最新以及完 备的导视数据。
本发明通过对当前采集到的排期数据进行处理,得到各频道的当前节目排 期序列,并通过该各频道的当前节目排期序列与已存储的完备节目排期序列的 合并处理及匹配处理过程得到完备节目排期序列。通过对采集到的排期数据的 及时处理, 可以为用户提供最新以及较为完备的导视数据内容, 方便用户进行 可靠的节目内容搜索并及时获取到该节目, 并且较好地提高了节目查找效率。
请参见图 3 , 是本发明的一种内容匹配系统的实施例的结构示意图, 所述 内容匹配系统包括服务器 1及至少一个采集设备 2, 其中,
所述采集设备 2, 用于根据预设时间间隔从有线电视网络中采集排期数 据, 并将该排期数据基于互联网协议发送至所述服务器。
具体实施例中, 可以根据地域设置多个采集设备 2。 所述采集设备 2根据 预设时间间隔定时从有线电视网络中采集电子节目菜单 EPG数据, 具体的, 可以预设一个时间间隔, 比如 24小时,根据该时间间隔每 24小时从有线电视 网络采集一次 EPG数据, 采集设备 2将所述 EPG数据经过封装处理后, 基于 互联网协议发送至服务器。 采集设备 2发送的 EPG数据可以是 xml格式或者 json格式, 并且可以采用 gzip格式进行压缩处理, 将压缩后的 EPG数据发送 至月良务器, 以减少数据的传输量。
所述服务器 1 , 用于对当前采集到的排期数据进行处理, 得到各频道的当 前节目排期序列;对所述各频道的当前节目排期序列与已存储的完备节目排期 序列进行合并处理,得到经过合并处理后的待匹配节目排期序列; 将经过匹配 所述服务器 1在接收到采集设备采集的排期数据, 即 EPG数据之后, 可 以对该排期数据进行分拣处理,并且根据频道进行组织形成各频道的当前节目 排期序列。 由于采集设备可以是多个, 并且采集设备按照地域设置了不同的级 别。若所述目标频道的排期数据的当前采集设备在所述目标频道中的级别低于 该来源采集设备在所述目标频道中的级别,则丟弃所述目标频道的当前采集设 备采集到的排期数据; 否则,对所述目标频道的当前采集设备采集到的排期数 据进行初始化处理, 获得目标频道的当前节目排期序列。对所述目标频道的当 当前采集到的排期数据中包括节目集数等节目信息,并删除所述当前采集到的 排期数据的冗余信息, 比如剔除 "重播"、 "特别节目" "第一剧场" 等类似引 导性内容的节目冗余信息, 以使留下清晰的节目名。 具体实施例中, 可以根据地域设置多个采集设备, 此时每个采集设备上传 重复,需要与已存储的完备节目排期序列中的排期数据进行合并处理。具体的, 得到各频道的当前节目排期序列之后,可以将所述各频道的当前节目排期序列 的排期数据按照起始时间排序,若所述各频道的当前节目排期序列中排期数据 与已存储的完备节目排期序列中排期数据节目名相同,且所述各频道的当前节 目排期序列中排期数据与已存储的完备节目排期序列中排期数据起始时间相 差在预设的时间范围, 比如在 1小时以内, 则合并所述当前排期数据与所述已 存储的完备节目排期序列中的排期数据。
在合并过程中, 可以以各频道的当前节目排期序列中排期数据为基准,提 取各频道的当前节目排期序列中排期数据的基准节目信息, 比如节目名、节目 辑属性, 比如节目 ID、 节目描述数据、 节目图片数据、 节目编辑人以及节目 编辑时间等等进行合并。在合并所述各频道的当前排期数据与所述已存储的完 备节目排期序列中的排期数据之后,得到经过合并处理后的待匹配节目排期序 列, 所述待匹配节目排期序列包括已合并后的排期数据及待匹配排期数据。
在获得经过合并处理后的待匹配节目排期序列之后,对于合并后的待匹配 节目排期序列中的待匹配排期数据,具体的, 该待匹配排期数据可以包括未经 过合并处理的排期数据或者经过合并但节目信息不全的排期数据,比如当其中 的排期数据中有的节目信息没有匹配的节目 ID、 节目描述数据及节目图片数 据等等时, 可以通过该排期数据中的节目名、节目类别等信息到系统的节目数 据库进行匹配搜索, 获取与该排期数据中与该节目相匹配的节目数据如节目 ID、 节目描述数据及节目图片数据等, 可以为后期的编辑工作提供参考依据。 将所述节目数据加载到所述待匹配节目排期序列中作为完备节目排期序列并 将所述完备节目排期序列存储至数据库,同时更新并替换数据库中已存储的完 备节目排期序列。
在完备节目排期序列存储至数据库之后,编辑工作者可以对其中的排期数 据进行编辑处理, 可以包括人工校对、 编辑节目详细信息、 提供节目图片数据 信息、节目演员信息、节目相关介绍信息及相关网页链接地址等等编辑处理操 作。 经过编审工作者对编辑工作的审核并确认无误之后, 可以通过系统提供统 一的互联网访问接口协议, 及时的向用户提供最新以及完备的导视数据。
本发明通过对当前采集到的排期数据进行筛选、合并以及匹配处理过程获 得完备节目排期序列, 为用户提供较为完备的导视数据内容, 方便用户进行可 靠的节目内容搜索并及时获取到该节目, 较好地提高了节目查找效率。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程, 是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算 机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。 其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory, ROM )或随机存储记忆体(Random Access Memory, RAM )等。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之 权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。

Claims

权 利 要 求
1、 一种内容匹配方法, 其特征在于, 所述方法包括:
对当前采集到的排期数据进行处理, 得到各频道的当前节目排期序列; 并处理, 得到经过合并处理后的待匹配节目排期序列;
将经过匹配处理的所述待匹配节目排期序列作为完备节目排期序列存储 至数据库。
2、 如权利要求 1所述的方法, 其特征在于, 在所述对当前采集到的排期 数据进行处理, 得到各频道的当前节目排期序列之前, 所述方法还包括: 接收采集设备根据预设时间间隔采集的排期数据,所述采集的排期数据是 所述采集设备从有线电视网络中采集排期数据后基于互联网协议发送的。
3、 如权利要求 2所述的方法, 其特征在于, 所述对当前采集到的排期数 据进行处理, 得到各频道的当前节目排期序列包括:
确定已存储的完备节目排期序列中目标频道的排期数据的来源采集设备; 若所述目标频道的排期数据的当前采集设备在所述目标频道中的级别低 于该来源采集设备在所述目标频道中的级别,则丟弃所述目标频道的当前采集 设备采集到的排期数据;
否则, 对所述目标频道的当前采集设备采集到的排期数据进行初始化处 理, 获得目标频道的当前节目排期序列。
4、 如权利要求 3所述的方法, 其特征在于, 所述对所述目标频道的当前 采集设备采集到的排期数据进行初始化处理, 包括:
通过正则表达式提取当前采集到的排期数据中包括节目名与节目集数的 节目信息, 并删除所述当前采集到的排期数据的冗余信息。
5、 如权利要求 4所述的方法, 其特征在于, 所述对所述各频道的当前节 的待匹配节目排期序列包括:
将所述各频道的当前节目排期序列的排期数据按照起始时间排序; 若所述当前节目排期序列中排期数据与已存储的完备节目排期序列中排 期数据名称相同,且所述当前节目排期序列中排期数据与已存储的完备节目排 期序列中排期数据起始时间相差在预设的时间范围内,则合并所述当前排期数 据与所述已存储的完备节目排期序列中的排期数据;
得到经过合并处理后的待匹配节目排期序列,所述待匹配节目排期序列包 括已合并排期数据及待匹配排期数据。
6、 如权利要求 5所述的方法, 其特征在于, 在将经过匹配处理的所述待 根据所述待匹配节目排期序列的所述待匹配排期数据进行节目搜索,获取 与所述排期数据相匹配的节目数据;
将所述节目数据加载到所述待匹配节目排期序列中作为完备节目排期序 列;
将所述完备节目排期序列存储至数据库。
7、 如权利要求 6所述的方法, 其特征在于, 还包括:
显示当前在数据库中存储的完备节目排期序列;
接收对显示的完备节目排期序列的排期数据的编辑处理指令,并根据所述 指令对所述完备节目排期序列的排期数据进行修改;
将修改后的所述完备节目排期序列存储到所述数据库中。
8、 一种内容匹配装置, 其特征在于, 包括:
序列获 莫块, 用于对当前采集到的排期数据进行处理,得到各频道的当 前节目排期序列;
序列合并模块,用于对所述序列获取模块得到的所述各频道的当前节目排 ^ :,得到经过合并处理后的待 匹配节目排期序列;
序列存储模块,用于将经过匹配处理的所述待匹配节目排期序列作为完备 节目排期序列存储至数据库。
9、 如权利要求 8所述的装置, 其特征在于, 还包括:
数据接收模块, 用于接收采集设备根据预设时间间隔采集的排期数据, 所 述采集的排期数据是所述采集设备从有线电视网络中采集排期数据后基于互 联网协议发送的。
10、 如权利要求 9所述的装置, 其特征在于, 所述序列获取模块包括: 据的来源采集设备;
级别判断单元,用于当所述目标频道的排期数据的当前采集设备在所述目 标频道中的级别低于该来源采集设备在所述目标频道中的级别时,丟弃所述目 标频道的当前采集设备采集到的排期数据;
初始化处理单元,用于当所述目标频道的排期数据的当前采集设备在所述 目标频道中的级别不低于该来源采集设备在所述目标频道中的级别时,对所述 目标频道的当前采集设备采集到的排期数据进行初始化处理,获得目标频道的 当前节目排期序列。
11、 如权利要求 8所述的装置, 其特征在于, 所述序列合并模块包括: 时间排序单元,用于将所述各频道的当前节目排期序列的排期数据按照起 始时间排序;
合并处理单元,用于在所述当前节目排期序列中排期数据与已存储的完备 节目排期序列中排期数据名称相同,且所述当前节目排期序列中排期数据与已 存储的完备节目排期序列中排期数据起始时间相差在预设的时间范围内时,合 序列获取单元, 用于获取经过合并处理后的待匹配节目排期序列, 所述待 匹配节目排期序列包括已合并排期数据及待匹配排期数据。
12、 如权利要求 8所述的装置, 其特征在于, 所述序列存储模块包括: 数据匹配单元,用于根据所述待匹配节目排期序列的所述待匹配排期数据 进行节目搜索, 获取与所述排期数据相匹配的节目数据;
数据加载单元,用于将所述节目数据加载到所述待匹配节目排期序列中作 为完备节目排期序列;
序列存储单元, 用于将所述完备节目排期序列存储至数据库。
13、 如权利要求 12所述的装置, 其特征在于, 还包括:
序列显示模块, 用于显示当前在数据库中存储的完备节目排期序列; 指令接收模块,用于接收对显示的完备节目排期序列的排期数据的编辑处 理指令, 并根据所述指令对所述完备节目排期序列的排期数据进行修改; 数据存储模块,用于将修改后的所述完备节目排期序列存储到所述数据库 中。
14、 一种内容匹配系统, 其特征在于, 包括服务器及至少一个采集设备, 其中,
所述采集设备, 用于根据预设时间间隔从有线电视网络中采集排期数据, 并将该排期数据基于互联网协议发送至所述服务器;
所述服务器,用于对当前采集到的排期数据进行处理,得到各频道的当前 节目排期序列;对所述各频道的当前节目排期序列与已存储的完备节目排期序 列进行合并处理,得到经过合并处理后的待匹配节目排期序列; 将经过匹配处
PCT/CN2014/071367 2013-10-08 2014-01-24 一种内容匹配方法、装置及系统 WO2015051611A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201310467317.1 2013-10-08
CN201310467317.1A CN103596022A (zh) 2013-10-08 2013-10-08 一种内容匹配方法、装置及系统

Publications (1)

Publication Number Publication Date
WO2015051611A1 true WO2015051611A1 (zh) 2015-04-16

Family

ID=50085978

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2014/071367 WO2015051611A1 (zh) 2013-10-08 2014-01-24 一种内容匹配方法、装置及系统

Country Status (2)

Country Link
CN (1) CN103596022A (zh)
WO (1) WO2015051611A1 (zh)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103596022A (zh) * 2013-10-08 2014-02-19 深圳创维数字技术股份有限公司 一种内容匹配方法、装置及系统
US9936242B2 (en) * 2014-02-25 2018-04-03 Google Llc Merging content channels
WO2016145584A1 (zh) * 2015-03-14 2016-09-22 王志强 一种生成节目单的方法以及节目搜索系统
CN106507152B (zh) * 2016-10-20 2020-01-03 中央电视台 一种节目文件整备、删除方法及装置

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101127915A (zh) * 2007-09-20 2008-02-20 中兴通讯股份有限公司 一种基于增量式的电子节目导航数据同步方法及系统
US8132207B2 (en) * 2000-05-11 2012-03-06 Jlb Ventures Llc Universal programming system and method for EPG with localized interactive content
CN102497589A (zh) * 2011-12-29 2012-06-13 北京衡准科技有限公司 自动监控和确保电视节目单epg元数据质量的方法
CN103108221A (zh) * 2013-02-06 2013-05-15 北京佳视互动科技股份有限公司 一种播放终端与频点匹配的方法及系统
CN103596022A (zh) * 2013-10-08 2014-02-19 深圳创维数字技术股份有限公司 一种内容匹配方法、装置及系统

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8132207B2 (en) * 2000-05-11 2012-03-06 Jlb Ventures Llc Universal programming system and method for EPG with localized interactive content
CN101127915A (zh) * 2007-09-20 2008-02-20 中兴通讯股份有限公司 一种基于增量式的电子节目导航数据同步方法及系统
CN102497589A (zh) * 2011-12-29 2012-06-13 北京衡准科技有限公司 自动监控和确保电视节目单epg元数据质量的方法
CN103108221A (zh) * 2013-02-06 2013-05-15 北京佳视互动科技股份有限公司 一种播放终端与频点匹配的方法及系统
CN103596022A (zh) * 2013-10-08 2014-02-19 深圳创维数字技术股份有限公司 一种内容匹配方法、装置及系统

Also Published As

Publication number Publication date
CN103596022A (zh) 2014-02-19

Similar Documents

Publication Publication Date Title
CN102833610B (zh) 一种节目选择的方法、装置及数字电视终端
KR100867005B1 (ko) 개인 맞춤형 멀티미디어 데이터 검색 서비스 방법 및 그의 장치들
KR101134597B1 (ko) 멀티미디어 컨텐츠와 메타데이터를 분리하여 저장하는 웹스토리지 서비스 제공방법 및 장치
US20170019697A1 (en) Media production system with scheduling feature
US20120059914A1 (en) Systems and methods for determining attributes of media items accessed via a personal media broadcaster
US8782709B2 (en) Method and apparatus for providing a program guide having search parameter aware thumbnails
US20120284343A1 (en) Program Guide Based on Sharing Personal Comments about Multimedia Content
EP2477415A2 (en) Method and system of encoding and decoding media content
DE112011103903T5 (de) Methode zum Empfang eines bestimmten Services und Videowiedergabegerät dazu
JP4643735B1 (ja) 電子機器及び映像処理方法
CN105786857B (zh) 一种提高视频聚合效率的方法及系统
CN101150699A (zh) 信息处理装置、信息处理方法、程序及存储介质
CN105230035A (zh) 用于选择的时移多媒体内容的社交媒体的处理
CN103686421A (zh) 一种电视自定义节目单的生成方法及装置
WO2015051611A1 (zh) 一种内容匹配方法、装置及系统
JP2016035607A (ja) ダイジェストを生成するための装置、方法、及びプログラム
CN104219535A (zh) 一种节目系统和节目播出方法
US11368758B2 (en) VOD service system based on AI video learning platform
US20120150990A1 (en) System and method for synchronizing with multimedia broadcast program and computer program product thereof
KR101933696B1 (ko) Ai 영상학습 플랫폼 기반 vod 서비스 시스템
KR101997909B1 (ko) 해상도 복원을 위한 ai 영상학습 파라미터 추출 프로그램 및 기록매체
KR102130075B1 (ko) 사용자 시청 취향 정보를 활용한 해상도 복원용 영상학습 지원 시스템
KR102130073B1 (ko) 객체 중심의 해상도 복원 기능을 수행하는 영상 학습 시스템
TWI554090B (zh) 產生多媒體影音摘要的系統與方法
CN112887806A (zh) 字幕处理方法、装置、电子设备及介质

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 14851537

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 14851537

Country of ref document: EP

Kind code of ref document: A1