Abstract:
본 발명은 디지털 방송 시스템의 스테레오스코픽 비디오 송/수신 방법 및 장치에 관한 것이다. 본 발명의 일 실시예에 따른 디지털 방송 시스템의 스테레오스코픽 비디오 송신 방법은, 디지털 방송 시스템에서 좌영상 및 우영상으로 구성되는 스테레오스코픽 비디오의 송신 방법에 있어서, 상기 비디오가 스테레오스코픽임을 나타내는 정보, 상기 스테레오스코픽 비디오의 구성방법에 대한 정보 및 상기 구성방법에 따른 부가 정보를 생성하는 단계; 및 상기 스테레오스코픽 비디오 및 상기 생성한 정보들을 전송하는 단계를 포함하고, 상기 구성방법은, 상기 좌,우 영상을 이용하여 상기 스테레오스코픽 비디오를 하나 또는 두 개의 부호화 스트림으로 구성하는 것이고, 상기 부가 정보는, 상기 스테레오스코픽 비디오가 상기 하나의 부호화 스트림으로 구성된 싱글스트림 모드의 경우에는 상기 좌,우 영상의 위치 정보를 포함하고, 상기 스테레오스코픽 비디오가 상기 두 개의 부호화 스트림으로 구성된 듀얼스트림 모드의 경우에는 각 부호화 스트림이 상기 좌영상인지 상기 우영상인지를 나타내는 정보 및 상기 각 부호화 스트림 간의 연관관계를 나타내는 정보를 포함한다.
Abstract:
Disclosed are a device for providing an augmented service in a hybrid environment and a receiving device. The device for providing an augmented service according to an embodiment of the present invention includes a real-time data providing unit providing real-time data through a first transmission network; an augmented content providing unit providing augmented content which will be synchronized with the real-time data through a second transmission network; and a multiplexing unit multiplexing and outputting the real-time data, augmented content metadata, and timing information for synchronizing the real-time data and the augmented content. [Reference numerals] (110) Multiplexing unit; (140) Parsing unit; (160) Synchronizing unit; (170) Playback unit; (AA) Start; (BB,II) Augmented area information; (CC,HH) Augmented time information; (DD) 40 minutes; (EE,FF,GG) Augmented content; (JJ) Example 12
Abstract:
PURPOSE: A method and an apparatus for transmitting/receiving a stereoscopic video in a digital broadcasting system are provided to broadly use a stereoscopic video service. CONSTITUTION: A stereoscopic video encoder(1030) outputs one or two encoding streams. A PES(Packetized Elementary Stream) packetizing unit(1040) generates the encoding streams by PES packets. A TS(Transport Stream) multiplexing unit(1050) multiplexes the PES packet and generated information of an information generating unit(1010) by an MPEG-2 transport stream. A channel encoder(1060) encodes a channel of the transport stream.
Abstract:
PURPOSE: A streaming server, a mobile terminal, and a method for reducing channel zapping delay are provided to transmit base layer data to every time slice, thereby displaying a picture by the base layer data of a channel requested by a channel change. CONSTITUTION: An encoding unit(210) classifies each of channel data into base layer data and extension layer data. The encoding unit encodes the classified data. A division unit(220) divides the encoded channel data by a time slice unit. A cycle data transmitting unit(230) transmits time slice cycle data about each channel. A stream transmitting unit(240) transmits the divided data at a preset time.
Abstract:
A scalable video encoding/decoding method and an apparatus thereof are provided to override an existing weight given in a slice unit to a corresponding block of an enhancement layer of a reference frame with a greater weight than the existing weight in forming the reference block of the enhancement layer when the video data of a macro block of a basic layer is in a skip mode, thereby improving efficiency of SVC(Scalable Video Coding). A scalable video encoding method comprises the following steps of: determining whether the block of a basic layer corresponding to the block of an enhancement layer of a current frame to encode is in a skip mode(S210); overriding an existing weight set in the block of the enhancement layer of a reference frame corresponding to the block of the enhancement layer of the current frame with a new weight when the block of the basic layer is in the skip mode(S220); and generating a reference block for the block of the enhancement layer of the current frame based on the block of the enhancement layer of the reference frame and the block of the basic layer of the current frame by using the new weight(S230).
Abstract:
A method for scalable encoding of video data and an apparatus thereof are provided to override an existing weight value given in a slice unit with a greater weight when the reference block of an enhancement layer is generated if the video data of a macro block of a base layer is in a skip mode, thereby improving efficiency of the scalable video encoding. A method for scalable encoding of video data comprises the following steps of: generating a reference block by using a weight set for a corresponding block when the video data of a macro block can be predicted from the video data of reference pictures for the video data of the macro block(220); and generating the reference block by using a weight given to a slice belonging to a current frame when the video data of the macro block can not be predicted from the video data of the reference pictures.
Abstract:
본 발명은 스케일러블 비디오 코딩(Scalable Video Coding) 방법의 AR-FGS(Adaptive Reference Fine Grain Scalability)에 있어서, 기본 계층의 매크로 블록 모드가 SKIP 모드일 경우 슬라이스 단위로 주어진 기존의 가중치를 보다 높은 값으로 오버라이딩(overriding)하여 향상 계층의 참조 블록을 생성하는 방법 및 그 장치에 관한 것이다. MPEG, 스케일러블 비디오 코딩(Scalable Video Coding), AR-FGS(Adaptive Reference Fine Grain Scalability)
Abstract:
An MPEG(Moving Picture Experts Group) scalable moving picture transmission method is provided to encode an MPEG moving picture into a plurality of layers, combine the respective layers, generate a table by using combinations in which degradation degree is low in comparison with a bit rate, and transmit a corresponding layer combination to be adaptive to an available transmission bit rate according to network environment or the request of a user. An MPEG moving picture to be transmitted is encoded into a plurality of layers(601). The encoded respective layers are combined, and a table is generated by using combinations in which degradation degree is low in comparison with a bit rate(602). A corresponding layer combination is transmitted to be adaptive to an available transmission bit rate according to network environment or the request of a user by using the generated table(603).
Abstract:
PURPOSE: A method for transmitting/receiving variable-length packets on the basis of an FEC(Forward Error Correction) coding system is provided to minimize transmit delay by creating a parity packet for a variable-length packet virtually connected to a 2-dimensional storage device without the process of padding and directly transmitting a data packet without the necessity of inputting all the packet groups associated for the creation of the parity packet. CONSTITUTION: If a data packet is inputted, a transmitting side accumulates the value of a factor that determines whether a parity packet is to be transmitted(S201), and connects the data packet to a 2-dimensional storage device virtually(S202). After updating a relevant parity packet every time a data packet is inputted, the transmitting side transmits an expanded data packet, containing a data packet and information for the restoration of the data packet, to a receiving side(S204). Then the transmitting side determines whether it is time to transmit parity packets(S205). In case that it is judged that it is time to transmit parity packets, the transmitting side determines the number of parity packets to be transmitted(S206). Then the transmitting side compares the number of transmitted parity packets with the determined number(S207). If the number of transmitted parity packets is smaller than or equal to the determined number, the transmitting part transmits expanded parity packets(S208) and accumulates the number of transmitted parity packets(S209).