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    • 2. 发明授权
    • Image processing device and image processing method
    • 图像处理装置及图像处理方法
    • US08184711B2
    • 2012-05-22
    • US12530828
    • 2008-09-12
    • Yuya HoriuchiShojiro ShibataTakaaki Fuchie
    • Yuya HoriuchiShojiro ShibataTakaaki Fuchie
    • H04N11/02
    • H04N19/194H04N19/11H04N19/124H04N19/14H04N19/149H04N19/15H04N19/154H04N19/176H04N19/196H04N19/46H04N19/61
    • To stop the decline of the quality of image associated with encoding. The present invention multiplies a decoding rescaling factor (RFr) possibly used in the decoding process by only a transformation matrix (D), which is scale change, to calculate a rescaling factor (RF), which is a plurality of division factors, and then calculates, for each detection unit, the sum (ΣY) of evaluation values (Y) based on a residue (r) obtained as a result of dividing an element of a DCT coefficient by a plurality of rescaling factors (RF). Moreover, the present invention compares correlations of the sum (ΣY) of the evaluation values (Y) with a plurality of rescaling factors (RF), and detects, based on the rescaling factor (RF) whose sum (ΣY) of the evaluation values (Y) is a minimum value, a quantization factor used in the previous process of encoding the input image data.
    • 阻止与编码相关联的图像质量的下降。 本发明将可能在解码处理中可能使用的解码重定标因子(RFr)乘以只有作为比例变化的变换矩阵(D),以计算作为多个除数因子的重定标因子(RF),然后 基于作为将DCT系数的元素除以多个重定标因子(RF)的结果获得的残差(r),针对每个检测单元计算评估值(Y)的和(&Sgr; Y)。 此外,本发明将评价值(Y)的和(&Sgr; Y)与多个重定标因子(RF)的相关性进行比较,并且基于归并因子(RF),其总和(&Sgr; Y) 评估值(Y)是最小值,在前一个编码输入图像数据的处理中使用的量化因子。
    • 4. 发明申请
    • IMAGE PROCESSING APPARATUS AND IMAGE PROCESSING METHOD
    • 图像处理装置和图像处理方法
    • US20110188769A1
    • 2011-08-04
    • US12673186
    • 2009-06-23
    • Takaaki FuchieKyohei KoyabuShojiro ShibataKashu TakahashiYuya Horiuchi
    • Takaaki FuchieKyohei KoyabuShojiro ShibataKashu TakahashiYuya Horiuchi
    • G06K9/38
    • H04N19/436H04N19/103H04N19/126H04N19/13H04N19/14H04N19/149H04N19/15H04N19/176H04N19/18H04N19/192H04N19/197H04N19/50H04N19/61H04N19/89H04N19/91
    • The present invention enables a reduction in circuit scale.In an image coding apparatus (100), as for DCT coefficients as simple coded data obtained by coding an input image (91) by simple processing, the input image (91) is coded by at least quantizing the input image (91) as an input image on the basis of selected quantization parameters (QPl) discretely selected from quantization parameters (QP) as quantization factors, thereby computing generated code sizes of the input image (91) upon coding. The image coding apparatus (100) corrects an error in the generated code sizes of the input image upon coding which occurs in accordance with the simple processing, thereby computing low-precision generated code sizes. The image coding apparatus (100) computes low-precision generated code sizes when the input image (91) is coded on the basis of quantization parameters (QP) other than the selected quantization parameters (QPl), by an interpolation process with respect to the low-precision generated code sizes when the input image (91) is coded on the basis of the selected quantization parameters (QPl).
    • 本发明能够减小电路规模。 在图像编码装置(100)中,对于作为通过简单处理对输入图像(91)进行编码而获得的简单编码数据的DCT系数,输入图像(91)通过至少将输入图像(91)量化为 基于从量化参数(QP)离散地选择的量化参数(QP1)作为量化因子的输入图像,从而计算编码时输入图像(91)的生成代码大小。 图像编码装置(100)根据简单处理对编码后的输出图像的生成码量进行校正,从而计算出低精度生成码量。 当根据所选择的量化参数(QP1)以外的量化参数(QP)对输入图像(91)进行编码时,图像编码装置(100)通过相对于所选择的量化参数 基于选择的量化参数(QP1)对输入图像(91)进行编码时的低精度生成码量。
    • 5. 发明授权
    • Image processing apparatus and image processing method
    • 图像处理装置和图像处理方法
    • US08270744B2
    • 2012-09-18
    • US12673186
    • 2009-06-23
    • Takaaki FuchieKyohei KoyabuShojiro ShibataKashu TakahashiYuya Horiuchi
    • Takaaki FuchieKyohei KoyabuShojiro ShibataKashu TakahashiYuya Horiuchi
    • G06K9/36G06K9/46G06K9/38H04B1/66
    • H04N19/436H04N19/103H04N19/126H04N19/13H04N19/14H04N19/149H04N19/15H04N19/176H04N19/18H04N19/192H04N19/197H04N19/50H04N19/61H04N19/89H04N19/91
    • The present invention enables a reduction in circuit scale.In an image coding apparatus (100), as for DCT coefficients as simple coded data obtained by coding an input image (91) by simple processing, the input image (91) is coded by at least quantizing the input image (91) as an input image on the basis of selected quantization parameters (QPl) discretely selected from quantization parameters (QP) as quantization factors, thereby computing generated code sizes of the input image (91) upon coding. The image coding apparatus (100) corrects an error in the generated code sizes of the input image upon coding which occurs in accordance with the simple processing, thereby computing low-precision generated code sizes. The image coding apparatus (100) computes low-precision generated code sizes when the input image (91) is coded on the basis of quantization parameters (QP) other than the selected quantization parameters (QPl), by an interpolation process with respect to the low-precision generated code sizes when the input image (91) is coded on the basis of the selected quantization parameters (QPl).
    • 本发明能够减小电路规模。 在图像编码装置(100)中,对于作为通过简单处理对输入图像(91)进行编码而获得的简单编码数据的DCT系数,输入图像(91)通过至少将输入图像(91)量化为 基于从量化参数(QP)离散地选择的量化参数(QP1)作为量化因子的输入图像,从而计算编码时输入图像(91)的生成代码大小。 图像编码装置(100)根据简单处理对编码后的输出图像的生成码量进行校正,从而计算出低精度生成码量。 当根据所选择的量化参数(QP1)以外的量化参数(QP)对输入图像(91)进行编码时,图像编码装置(100)通过相对于所选择的量化参数 基于选择的量化参数(QP1)对输入图像(91)进行编码时的低精度生成码量。
    • 6. 发明授权
    • Image processing device and image processing method for reducing the circuit scale
    • 用于减小电路规模的图像处理装置和图像处理方法
    • US08374451B2
    • 2013-02-12
    • US12673216
    • 2009-06-23
    • Shojiro ShibataTakaaki FuchieKashu TakahashiYuya Horiuchi
    • Shojiro ShibataTakaaki FuchieKashu TakahashiYuya Horiuchi
    • G06K9/36G06K9/38G06K9/46
    • H04N19/146H04N19/13H04N19/176H04N19/196
    • The present invention enables a circuit configuration to be simplified. An image encoding device (100) receives an input image (91) that is line-scanned in units of MBs as scan blocks, each constituted by a plurality of 4×4 blocks, while being scanned in units of 4×4 blocks as encoding blocks, each constituted by a plurality of pixels. The image encoding device (100) selects a VLC (variable length) table corresponding to a table selection index nC, which is an average value of the numbers nB and nA of nonzero coefficients as encoding values on which variable-length encoding is performed in upper-adjoining and left-adjoining 4×4 blocks of a 4×4 block as an encoding target in quantization coefficients as encoding target data based on the input image (91). At this time, in a case where the 4×4 block as an encoding target is at an upper end of an MB, the image encoding device (100) equates the number nB of nonzero coefficients of the upper-adjoining 4×4 block with the number nA of nonzero coefficients of the left-adjoining 4×4 block. The image encoding device (100) performs variable-length encoding on the number of nonzero coefficients of a 4×4 block as an encoding target in quantization coefficients using the selected VLC table.
    • 本发明能够简化电路配置。 图像编码装置(100)接收以MB为单位进行线扫描的输入图像(91),作为扫描块,每个扫描块由多个4×4块构成,同时以4×4块为单位进行扫描,作为编码 每个块由多个像素构成。 图像编码装置(100)选择与表选择索引nC对应的VLC(可变长度)表,该表选择索引nC是非零系数的数字nB和nA的平均值,作为在上部执行可变长度编码的编码值 基于输入图像(91),作为编码对象数据的量化系数中的4×4块作为编码对象的4相邻4×4块。 此时,在作为编码对象的4×4块位于MB的上端的情况下,图像编码装置(100)将上邻接的4×4块的非零系数的数量nB等同于 左邻接4×4块的非零系数的数量nA。 图像编码装置(100)使用所选择的VLC表对量化系数中的4×4块的非零系数的数量作为编码对象进行可变长度编码。
    • 7. 发明申请
    • IMAGE PROCESSING DEVICE AND IMAGE PROCESSING METHOD
    • 图像处理装置和图像处理方法
    • US20100098173A1
    • 2010-04-22
    • US12530828
    • 2008-09-12
    • Yuya HoriuchiShojiro ShibataTakaaki Fuchie
    • Yuya HoriuchiShojiro ShibataTakaaki Fuchie
    • H04N7/30
    • H04N19/194H04N19/11H04N19/124H04N19/14H04N19/149H04N19/15H04N19/154H04N19/176H04N19/196H04N19/46H04N19/61
    • To stop the decline of the quality of image associated with encoding. The present invention multiplies a decoding rescaling factor (RFr) possibly used in the decoding process by only a transformation matrix (D), which is scale change, to calculate a rescaling factor (RF), which is a plurality of division factors, and then calculates, for each detection unit, the sum (ΣY) of evaluation values (Y) based on a residue (r) obtained as a result of dividing an element of a DCT coefficient by a plurality of rescaling factors (RF). Moreover, the present invention compares correlations of the sum (ΣY) of the evaluation values (Y) with a plurality of rescaling factors (RF), and detects, based on the rescaling factor (RF) whose sum (ΣY) of the evaluation values (Y) is a minimum value, a quantization factor used in the previous process of encoding the input image data.
    • 阻止与编码相关联的图像质量的下降。 本发明将可能在解码处理中可能使用的解码重定标因子(RFr)乘以只有作为比例变化的变换矩阵(D),以计算作为多个除数因子的重定标因子(RF),然后 基于作为将DCT系数的元素除以多个重定标因子(RF)的结果获得的残差(r),针对每个检测单元计算评估值(Y)的和(&Sgr; Y)。 此外,本发明将评价值(Y)的和(&Sgr; Y)与多个重定标因子(RF)的相关性进行比较,并且基于归并因子(RF),其总和(&Sgr; Y) 评估值(Y)是最小值,在前一个编码输入图像数据的处理中使用的量化因子。
    • 10. 发明授权
    • Image processing device and image processing method
    • 图像处理装置及图像处理方法
    • US08270745B2
    • 2012-09-18
    • US12673237
    • 2009-06-23
    • Takaaki FuchieShojiro ShibataKashu Takahashi
    • Takaaki FuchieShojiro ShibataKashu Takahashi
    • G06K9/36G06K9/46G06K9/38H04B1/66
    • H04N19/124H04N19/13H04N19/149H04N19/176
    • The present invention can realize an image processing device and an image processing method that enable a simplified circuit configuration. An image encoding device (200) encodes an input image (91) in an ordinary process that is the same as main encoding on the basis of a predictive quantization parameter (QPd), while encoding the input image (91) in a simple manner (simplified process) on the basis of the predictive quantization parameter (QPd) and quantization parameters (QP) approximate to the predictive quantization parameter (QPd). The image encoding device (200) calculates a code quantity ratio R_reduction between a high-precision generated code quantity obtained through an ordinary process based on the predictive quantization parameter (QPd) and a generated code quantity obtained through a simplified process based on the predictive quantization parameter (QPd). The image encoding device (200) calculates high-precision generated code quantities based on the quantization parameters (QP) approximate to the predictive quantization parameter (QPd) on the basis of the code quantity ratio R_reduction and generated code quantities obtained through a simplified process based on the quantization parameters (QP) approximate to the predictive quantization parameter (QPd).
    • 本发明可以实现能够简化电路配置的图像处理装置和图像处理方法。 图像编码装置(200)在以简单的方式对输入图像(91)进行编码的同时基于预测量化参数(QPd)对与主编码相同的普通处理中的输入图像(91)进行编码( 简化处理)基于与预测量化参数(QPd)近似的预测量化参数(QPd)和量化参数(QP)。 图像编码装置(200)基于预测量化参数(QPd)计算通过普通处理获得的高精度生成代码量与基于预测量化的简化处理获得的生成代码量之间的编码量比R_reduction 参数(QPd)。 图像编码装置(200)基于代码量比R_reduction的基于与预测量化参数(QPd)近似的量化参数(QP),基于通过简化处理得到的生成代码量,计算出高精度生成代码量 关于近似于预测量化参数(QPd)的量化参数(QP)。