Abstract:
본 발명은 계층적 서비스가 가능한 AT-DMB 채널과, BIFS의 장면 기술 및 구성 방법을 이용하여 기존의 DMB 채널을 통해 기본 BIFS 데이터 서비스를 제공하고, AT-DMB 채널을 통해 기본 BIFS에 부가 데이터를 추가하기 위한 BIFS 추가 데이터를 제공함으로써, 수신단말의 사양이나 서비스를 제공 받을 수 있는 범위에 따라 확장적인 BIFS 서비스를 제공하는 방법에 관한 것이다.
Abstract:
PURPOSE: A transceiving method and apparatus for parallely downloading and playing a multimedia file in the unidirectional broadcasting environment are provided to play multimedia data without wait even in the generation of an error on transmitted multimedia data. CONSTITUTION: An electronic file divider(110) divides a multimedia electronic file into a header and payload. A download protocol encapsulation unit(120) encapsulates a header piece file and a payload piece file with a data transfer protocol. A layer channel multiplexer(130) multiplexes a header TS(Transport Stream) with the TS of a high channel protection level. The layer channel multiplexer multiplexes a payload TS with the TS of a low channel protection level.
Abstract:
PURPOSE: A data communication method for near-video-on-demand service in a radio environment is provided to reduce a simultaneous channel access number and a standby time of a user at the same time through using a Fibonacci method and staggered method. CONSTITUTION: A data division unit firstly partitions VOD data(10). The divided data is secondarily partitioned among the primarily divided VOD data in which data division part is primarily divided in Fibonacci method(20). A data transmission unit transmits a secondarily divided data in a Fibonacci method(30).
Abstract:
PURPOSE: A method and apparatus for video encoding/decoding using an adaptive codeword assignment to syntax elements are provided to enhance encoding performance under an image encoding environment having various encoding bit rates and various image sizes. CONSTITUTION: A feature analysis unit(111) analyzes the features of encoding data obtained from an input image, and a codeword assignment unit(112) allocates a codeword to a symbol value of a syntax element when using the input image. An encoding unit(113) encodes the syntax elements in the codeword to generate a bit stream.
Abstract:
PURPOSE: An apparatus and method for coding and decoding multi-object audio signal are provided to perform coding and decoding multi-object audio signal which is composed of various channels providing reverse compatibility about the existing SAC bitstream. CONSTITUTION: An audio object coding unit codes audio-object signals inputted to the coding apparatus based on a spatial cue and creating rendering information for the coded audio-object signals. The rendering information includes spatial cue information for audio-object signals, channel information of the audio-object signals, and identification information of the audio-object signals.
Abstract:
예비 픽쳐의 적응적 부호화/복호화 방법 및 그 장치를 제안한다. 본 발명의 실시예에 따른 적응적으로 예비 픽쳐를 삽입하는 부호화 장치는 입력영상과 전송채널 에러율을 수신하고 상기 입력영상을 구성하는 영상 프레임 각각에 예비 픽쳐(Picture)를 삽입하여 송신할 때의 비용 값인 삽입 비용과 예비 픽쳐를 삽입하지 않고 송신할 때의 비용 값인 비삽입 비용을 비용 함수를 이용하여 계산하는 비용함수 계산부; 상기 삽입 비용과 상기 비삽입 비용 간의 크기를 비교하는 비용 비교부; 상기 삽입 비용이 상기 비삽입 비용보다 작으면 상기 영상 프레임에 예비 픽쳐를 삽입하는 예비 픽쳐 삽입부; 및, 상기 예비 픽쳐를 삽입한 영상 프레임을 부호화하는 부호화부를 포함한다. 예비 픽쳐, 적응적 부호화, 적응적 복호화
Abstract:
PURPOSE: A method and system for separating a music sound source without using a sound source database are provided to separate a sound source generated using a rhythm musical instrument based on characteristics of the rhythm musical instrument repeated in an aspect of time, and thereby may separate a sound source included in a mixed signal even when a learning database generated using a specific sound source is absent. CONSTITUTION: An NMPCF(Nonnegative Matrix Partial Co-Factorization) analysis unit(130) obtains info nation shared by the plurality of segments in accordance with an NMPCF algorithm. A rhythm instrument signal has frequency characteristics such as a pitch, that may not be easily changed, and may be repeatedly generated, whereby the shared information may correspond to information of a rhythm musical instrument. A target instrument signal separating unit(140) separates a target instrument signal corresponding to a specific sound source from the mixed signal by calculating an inner product between the entity matrices obtained by the NMPCF analysis unit. The target instrument signal is a signal including sounds generated using the rhythm musical instrument. A signal association unit(150) associates the target instrument signals for each of the plurality of segments separated in the target instrument signal separating unit.
Abstract:
PURPOSE: An apparatus and a method for structuring bitstream for an object-based audio service are provided to reduce a degradation in the sound quality occurring due to an excessive volume control by designating an upper bound value and a lower bound value of a reproduction volume in an object-based audio service. CONSTITUTION: A bitstream splitting unit divides a bitstream into a file header, and an audio object frame through sound source splitting(110). A reproduction level information storage unit stores the reconstruction level information for the regeneration of the audio object within the file header(120). A preset storage unit stores the preset information for the regeneration of the audio object within the file header(130).
Abstract:
PURPOSE: A system for separating musical sound source is provided to efficiently divide a specific sound source in a mixed sound source by reorganizing the mixed sound source into the specific sound source and other sound source. CONSTITUTION: A system for separating musical sound source includes a database(110), a time-frequency domain conversion unit(120), an NMPCF(Nonnegative Matrix Partial Co-Factorization) analysis unit(130), a target instrument signal separating unit(140), and a time domain signal conversion unit(150). The database stores information about a solo performance using a predetermined musical instrument, and transmits the information about the solo performance as a type of a predetermined sound source signal(x1). The predetermined sound source has a significantly great amount of data to include various characteristics of the predetermined sound source. In this case, a great amount of database signals may need to be processed for each sound source separation operation.