3D 변이 정보에 따른 적응적 영상 포커스 조절 방법 및 그 장치
    251.
    发明公开
    3D 변이 정보에 따른 적응적 영상 포커스 조절 방법 및 그 장치 审中-实审
    基于3D差异的图像焦点自适应控制的方法和装置

    公开(公告)号:KR1020140109605A

    公开(公告)日:2014-09-16

    申请号:KR1020130023736

    申请日:2013-03-06

    CPC classification number: H04N13/296 H04N13/128 H04N13/239

    Abstract: The present invention relates to a method and a device for adjusting adaptive image focus according to three-dimensional (3D) disparity information. An image processing module to adaptively adjust focus of a binocular 3D image comprises: a disparity calculating unit to calculate disparities of a left image and a right image which are included in the binocular 3D image; a focus calculating unit to calculate focus based on at least either the left image or the right image; and a picture quality adjusting unit to adaptively correct the focus of the binocular 3D image based on the calculated disparities and a difference in a coefficient of the calculated focus. According to the present invention, the method and the device can reduce inconsistency in the focus and a 3D effect in the binocular 3D image, thereby providing a 3D image of a better quality.

    Abstract translation: 本发明涉及一种根据三维(3D)视差信息调整自适应图像焦点的方法和装置。 用于自适应地调整双目3D图像的焦点的图像处理模块包括:视差计算单元,用于计算包括在双目3D图像中的左图像和右图像的不均; 焦点计算单元,用于基于至少左图像或右图像来计算焦点; 以及图像质量调整单元,用于基于计算出的差异和所计算的焦点的系数的差异自适应地校正双目3D图像的焦点。 根据本发明,该方法和装置可以减少双焦3D图像中焦点的不一致性和3D效果,从而提供更好质量的3D图像。

    복수의 계층을 지원하는 비트스트림의 디코딩 방법 및 이를 이용하는 장치
    256.
    发明公开
    복수의 계층을 지원하는 비트스트림의 디코딩 방법 및 이를 이용하는 장치 审中-实审
    包含多层解码方法的BITSTREAM和使用它的设备

    公开(公告)号:KR1020130118254A

    公开(公告)日:2013-10-29

    申请号:KR1020130041863

    申请日:2013-04-16

    Abstract: PURPOSE: A decoding method of the bitstream capable of supporting a plurality of layers and a device using the same are provided to express the scalability information of various kinds of bitstream. CONSTITUTION: A parsing unit receives the information about the video parameter set including the information about a plurality of layers (501). The parsing unit parses the video parameter set, thereby understanding the information of the layer included in the bitstream (502). The information about the layers includes the maximum number of size information about various kinds of pictures included in the encoded video sequence. The information about the layers includes the index information about the set of frame size applied to the predetermined layer. [Reference numerals] (501) Receive information about the video parameter set including the information about a plurality of layer; (502) Understand the information of the layer by parsing the video parameter set

    Abstract translation: 目的:提供能够支持多个层的比特流的解码方法和使用其的装置,以表达各种比特流的可扩展性信息。 构成:解析单元接收关于包括关于多个层的信息的视频参数集的信息(501)。 解析单元解析视频参数集,从而理解包含在比特流(502)中的层的信息。 关于层的信息包括关于编码视频序列中包括的各种图像的最大尺寸信息数量。 关于层的信息包括关于应用于预定层的帧大小的索引信息。 (附图标记)(501)接收关于包括关于多个层的信息的视频参数集的信息; (502)通过解析视频参数集来了解层的信息

    계층적 비디오 부호화에서의 계층정보 표현방식
    257.
    发明公开
    계층적 비디오 부호화에서의 계층정보 표현방식 无效
    可分级编码视频比特的可扩展层描述

    公开(公告)号:KR1020130116783A

    公开(公告)日:2013-10-24

    申请号:KR1020120112598

    申请日:2012-10-10

    Abstract: PURPOSE: A scalability information expressing method in scalable video coding is provided to enable adaptive video transmission and consumption by describing extraction/scalability information in a video bit stream. CONSTITUTION: A bit stream containing a desired temporal layer is extracted by using the number of total temporal layers contained in a bit stream and the temporal_id value of a network abstraction layer unit (NALU) header. When decoding a picture constructed by an NALU containing a nal_ref_flag and storing the decoded picture in a decoded picture buffer (DPB), the nal_ref_flag is used to determine whether to express that the corresponding picture is to be used later as a reference picture. The nal_ref_flag is removed from the NALU header, or the semantics of the nal_ref_flag is changed.

    Abstract translation: 目的:提供可伸缩视频编码中的可扩展性信息表达方法,通过描述视频比特流中的提取/可扩展性信息来实现自适应视频传输和消费。 构成:通过使用包含在比特流中的总时间层的数量和网络抽象层单元(NALU)头部的temporal_id值来提取包含期望时间层的比特流。 当对包含nal_ref_flag的NALU构成的图像进行解码并将解码的图像存储在解码图像缓冲器(DPB)中时,使用nal_ref_flag来确定是否将相应的图像稍后用作参考图像。 nal_ref_flag从NALU标头中删除,或nal_ref_flag的语义被更改。

    인터 레이어 인트라 예측 방법 및 장치
    258.
    发明公开
    인터 레이어 인트라 예측 방법 및 장치 无效
    方法和装置用于层间预测

    公开(公告)号:KR1020130107861A

    公开(公告)日:2013-10-02

    申请号:KR1020120029999

    申请日:2012-03-23

    CPC classification number: H04N19/503 H04N19/30 H04N19/33 H04N19/59 H04N19/593

    Abstract: PURPOSE: An interlayer intra prediction method and an apparatus thereof perform interlayer intra prediction by using intra prediction data of a periphery block, thereby improving encoding efficiency. CONSTITUTION: A layer determining unit (910) determines a reference layer for interlayer intra prediction. The layer determining unit selects a candidate layer of the highest layer as the reference layer. A prediction data generator (920) produces intra prediction data from the reference layer. The prediction data generator produces intra prediction data based on an intra-predicted co-located block among front-to-back frames of the reference frame. An intra prediction part (930) performs interlayer prediction about a current block based on the intra prediction data. [Reference numerals] (910) Layer determining unit; (920) Prediction data generator; (930) Intra prediction part

    Abstract translation: 目的:一种层间帧内预测方法及其装置,通过使用周边块的帧内预测数据进行层间帧内预测,​​从而提高编码效率。 构成:层确定单元(910)确定用于层间帧内预测的参考层。 层确定单元选择最高层的候选层作为参考层。 预测数据生成器(920)从参考层产生帧内预测数据。 预测数据生成器基于参考帧的前后帧之中的帧内预测的同位置块来生成帧内预测数据。 帧内预测部(930)基于帧内预测数据进行关于当前块的层间预测。 (附图标记)(910)层确定单元; (920)预测数据发生器; (930)帧内预测部分

    비디오 정보 전송 방법, 비디오 복호화 방법, 비디오 부호화기 및 비디오 복호화기
    259.
    发明公开
    비디오 정보 전송 방법, 비디오 복호화 방법, 비디오 부호화기 및 비디오 복호화기 审中-实审
    用于信号编码和解码的信号信息和视频解码方法

    公开(公告)号:KR1020130086011A

    公开(公告)日:2013-07-30

    申请号:KR1020130006715

    申请日:2013-01-21

    CPC classification number: H04N21/234 H04N19/187 H04N19/30 H04N21/60

    Abstract: PURPOSE: A method for transmitting video information, a video decoding method, a video encoder and a video decoder are provided to display only scalability information that can be expressed through a bitstream among a variety of scalability information, thereby improving encoding efficiency. CONSTITUTION: An encoder encodes an input video using scalable video coding (SVC) (S410). The encoder transmits the encoded video data to a bitstream (S420). The transmitted video data includes scalability information transmitted from a network abstract layer (NAL) unit header. A decoder decodes received video data based on the scalability information employed in the encoder. [Reference numerals] (S410) Video coding; (S420) Video information transmission

    Abstract translation: 目的:提供用于传输视频信息的方法,视频解码方法,视频编码器和视频解码器,以仅显示可通过各种可缩放信息之间的比特流表达的可扩展性信息,从而提高编码效率。 构成:编码器使用可伸缩视频编码(SVC)编码输入视频(S410)。 编码器将编码的视频数据发送到比特流(S420)。 发送的视频数据包括从网络抽象层(NAL)单元报头发送的可扩展性信息。 解码器基于在编码器中采用的可扩展性信息对接收到的视频数据进行解码。 (参考号)(S410)视频编码; (S420)视频信息传输

    영상 부호화 방법과 영상 복호화 방법
    260.
    发明公开
    영상 부호화 방법과 영상 복호화 방법 无效
    编码和解码视频的方法

    公开(公告)号:KR1020130037188A

    公开(公告)日:2013-04-15

    申请号:KR1020120110573

    申请日:2012-10-05

    CPC classification number: H04N19/30 H04N19/82

    Abstract: PURPOSE: An image encoding method and an image decoding method are provided to apply filtering or add offset for minimizing errors between a reference restoring sample signal and an original sample signal, thereby reducing a differential signal. CONSTITUTION: An encoding device determines a corresponding sample position of a reference layer(S410). The encoding device determines a restoring sample signal for reference layer units(S420). The encoding device encodes a sample signal of an improved layer unit(S430). [Reference numerals] (S410) Determining a corresponding sample position of a reference layer; (S420) Determining a restoring sample signal for reference layer units; (S430) Encoding a sample signal of an improved layer unit;

    Abstract translation: 目的:提供一种图像编码方法和图像解码方法,以应用滤波或增加偏移量来最小化参考恢复采样信号和原始采样信号之间的误差,从而减小差分信号。 构成:编码装置确定参考层的对应采样位置(S410)。 编码装置确定用于参考层单元的恢复采样信号(S420)。 编码装置对改进的层单元的采样信号进行编码(S430)。 (参考号)(S410)确定参考层的相应样本位置; (S420)确定参考层单元的恢复采样信号; (S430)对改进的层单元的采样信号进行编码;

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