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    • 2. 发明授权
    • Image display performing color reproduction using color filters
    • 使用滤色片进行彩色再现的图像显示
    • US06674489B1
    • 2004-01-06
    • US09369310
    • 1999-08-06
    • Shuichi KagawaHiroaki SugiuraKohei TeramotoShinsuke ShikamaYoshiteru Suzuki
    • Shuichi KagawaHiroaki SugiuraKohei TeramotoShinsuke ShikamaYoshiteru Suzuki
    • H04N912
    • H04N9/3158G02B5/20G02B26/008H04N9/3114
    • In an image display which reproduces a color image by using lights color-separated into four or more colors through color filters, the objects of the invention are to effectively utilize the energy of light from a light source and to reduce the effect that a slight shift of the spectral transmittance characteristics of the color filters exerts on the spectral distributions of the lights after color separated. In an image display having a light source and four or more kinds of color filters and for color-separating light emitted from the light source into four or more colors through the four or more kinds of color filters and reproducing a color image by using the color-separated lights, the spectral transmittance characteristics of the color filters are set so that the cutoff wavelengths of the four or more kinds of color filters exist in a wavelength region in which the spectral distributions obtained by multiplying the spectral emissivity characteristic of the light emitted from the light source by the color matching functions are smaller than the values obtained by multiplying the average values of the spectral distributions in the wavelength region from 380 to 780 nm by an integer.
    • 在通过使用通过滤色器分色为四种或更多种颜色的光再现彩色图像的图像显示器中,本发明的目的是有效地利用来自光源的光的能量,并且减少轻微偏移的影响 滤色器的光谱透射率特性对颜色分离后的光的光谱分布施加。 在具有光源和四种或更多种滤色器的图像显示器中,并且通过四种或更多种滤色器将从光源发射的光分色成四种或更多种颜色,并通过使用颜色再现彩色图像 分离的光,滤色器的光谱透射率特性被设定为使得四种或更多种滤色器的截止波长存在于通过将从...发射的光的光谱发射率特性相乘得到的光谱分布 通过颜色匹配功能的光源比通过将380至780nm的波长区域中的光谱分布的平均值乘以整数而获得的值小。
    • 3. 发明授权
    • Image display unit
    • 图像显示单元
    • US06950111B2
    • 2005-09-27
    • US10203315
    • 2000-12-11
    • Shuichi KagawaHiroaki SugiuraMariko TakahashiNarihiro MatobaKohei Teramoto
    • Shuichi KagawaHiroaki SugiuraMariko TakahashiNarihiro MatobaKohei Teramoto
    • G09G3/22G09G5/02
    • G09G5/02G09G3/22G09G2310/0275
    • The invention relates to an image display device displaying color image and has its object to display image having a large contrast and excellent visibility to the viewer in an image display device particularly used under environment where external light exists.To achieve the above object, black-approximated data generating means 4 generates black-approximated data R3, G3, and B3 that are data related to chromaticity in displaying black on image display means 3. Black correction means 2A subtracts subtraction data R4, G4, and B4 that have the same value as the black-approximated data R3, G3, and B3, from after-input-processing image data R1, G1, and B1, thereby to calculate after-black-correction image data R2, G2, and B2. The image display means 3 emits in response to the values of the after-black-correction image data R2, G2, and B2, thereby to perform image display processing on a predetermined screen.
    • 本发明涉及一种显示彩色图像的图像显示装置,其目的是在外部光存在的环境下特别使用的图像显示装置中显示具有大的对比度和对观众的良好可视性的图像。 为了实现上述目的,黑色近似数据产生装置4产生黑色近似数据R3,G3和B3,它们是与在图像显示装置3上显示黑色的色度有关的数据。黑色校正装置2A减去减法数据R4,G4, 和B4,它们具有与黑色近似数据R3,G3和B3相同的值,从后处理图像数据R1,G1和B1,从而计算黑后校正图像数据R2,G2和 B2。 图像显示装置3响应于黑后校正图像数据R2,G2和B2的值而发射,从而在预定屏幕上执行图像显示处理。
    • 5. 发明授权
    • Image processing apparatus and method and image display apparatus
    • 图像处理装置及方法及图像显示装置
    • US08249379B2
    • 2012-08-21
    • US12810448
    • 2009-11-25
    • Shotaro MoriyaNoritaka OkudaSatoshi YamanakaKoji MinamiYoshitaka ToyodaHiroaki Sugiura
    • Shotaro MoriyaNoritaka OkudaSatoshi YamanakaKoji MinamiYoshitaka ToyodaHiroaki Sugiura
    • G06K9/44
    • H04N5/208G06T5/003G06T5/20G06T2207/20192H04N9/68
    • A first intermediate image generating means (1) generates an intermediate image (D1) by extracting a component of an input image DIN in a particular frequency band; a second intermediate image generating means (2) generates an intermediate image D2 having a frequency component higher than the intermediate image (D1); a first intermediate image processing means (3M) generates an intermediate image (D3M) by amplifying the pixel values in the intermediate image (D1); a second intermediate image processing means (3H) generates an intermediate image (D3H) by amplifying the pixel values in the intermediate image (D2); and an adding means (4) adds the input image (DIN) and the intermediate image (D3M) and the intermediate image (D3H) together to obtain an output image (DOUT). A first amplification factor (D3MA) and a second amplification factor (D3HA) are determined according to pixel values in the input image (DIN). Even if the input image includes a fold-over component on the high-frequency side or does not include an adequate high-frequency component, an enhanced image can be provided without causing overshoot.
    • 第一中间图像生成装置(1)通过提取特定频带中的输入图像DIN的分量来生成中间图像(D1) 第二中间图像产生装置(2)产生具有高于中间图像(D1)的频率分量的中间图像D2; 第一中间图像处理装置(3M)通过放大中间图像(D1)中的像素值来生成中间图像(D3M); 第二中间图像处理装置(3H)通过放大中间图像(D2)中的像素值来产生中间图像(D3H); 并且加法装置(4)将输入图像(DIN)和中间图像(D3M)和中间图像(D3H)相加在一起以获得输出图像(DOUT)。 根据输入图像(DIN)中的像素值确定第一放大因子(D3MA)和第二放大因子(D3HA)。 即使输入图像包括在高频侧的折叠分量或不包括适当的高频分量,也可以提供增强的图像而不引起过冲。
    • 6. 发明申请
    • IMAGE PROCESSING APPARATUS AND METHOD AND IMAGE DISPLAY APPARATUS
    • 图像处理装置和方法以及图像显示装置
    • US20100310166A1
    • 2010-12-09
    • US12810448
    • 2009-11-25
    • Shotaro MoriyaNoritaka OkudaSatoshi YamanakaKoji MinamiYoshitaka ToyodaHiroaki Sugiura
    • Shotaro MoriyaNoritaka OkudaSatoshi YamanakaKoji MinamiYoshitaka ToyodaHiroaki Sugiura
    • G06K9/40G06K9/00
    • H04N5/208G06T5/003G06T5/20G06T2207/20192H04N9/68
    • A first intermediate image generating means (1) generates an intermediate image (D1) by extracting a component of an input image DIN in a particular frequency band; a second intermediate image generating means (2) generates an intermediate image D2 having a frequency component higher than the intermediate image (D1); a first intermediate image processing means (3M) generates an intermediate image (D3M) by amplifying the pixel values in the intermediate image (D1); a second intermediate image processing means (3H) generates an intermediate image (D3H) by amplifying the pixel values in the intermediate image (D2); and an adding means (4) adds the input image (DIN) and the intermediate image (D3M) and the intermediate image (D3H) together to obtain an output image (DOUT). A first amplification factor (D3MA) and a second amplification factor (D3HA) are determined according to pixel values in the input image (DIN). Even if the input image includes a fold-over component on the high-frequency side or does not include an adequate high-frequency component, an enhanced image can be provided without causing overshoot.
    • 第一中间图像生成装置(1)通过提取特定频带中的输入图像DIN的分量来生成中间图像(D1) 第二中间图像产生装置(2)产生具有高于中间图像(D1)的频率分量的中间图像D2; 第一中间图像处理装置(3M)通过放大中间图像(D1)中的像素值来生成中间图像(D3M); 第二中间图像处理装置(3H)通过放大中间图像(D2)中的像素值来产生中间图像(D3H); 并且加法装置(4)将输入图像(DIN)和中间图像(D3M)和中间图像(D3H)相加在一起以获得输出图像(DOUT)。 根据输入图像(DIN)中的像素值确定第一放大因子(D3MA)和第二放大因子(D3HA)。 即使输入图像包括在高频侧的折叠分量或不包括适当的高频分量,也可以提供增强的图像而不引起过冲。
    • 10. 发明授权
    • Color conversion apparatus and method
    • 颜色转换装置及方法
    • US08072647B2
    • 2011-12-06
    • US12222731
    • 2008-08-14
    • Shuichi KagawaJun SomeyaHiroaki Sugiura
    • Shuichi KagawaJun SomeyaHiroaki Sugiura
    • G03F3/08G06F15/00H04N1/46G06K9/00
    • H04N1/6058
    • A color conversion apparatus receives first image data including first red-green-blue color data in which the possible values of the red, green, and blue components extend beyond the range from 0% to 100%. The first color data are analyzed into first hue region data, the magnitudes of which are adjusted according to the brightness and/or saturation of the first color data to obtain second and third hue region data. The gamut of colors of the first image data is detected, and matrix coefficients are generated according to the detected gamut. The matrix coefficients are used to perform a matrix operation on the second and third hue region data to obtain second color data, thereby converting the first image data to second image data with conversion characteristics appropriate for the gamut of colors of the first image data.
    • 颜色转换装置接收包括第一红 - 绿 - 蓝颜色数据的第一图像数据,其中红,绿和蓝分量的可能值延伸超出0%至100%的范围。 将第一颜色数据分析为第一色相区域数据,其数量根据第一颜色数据的亮度和/或饱和度进行调整,以获得第二和第三色调区域数据。 检测第一图像数据的色域,并根据检测到的色域生成矩阵系数。 矩阵系数用于对第二和第三色调区域数据执行矩阵运算以获得第二颜色数据,从而将第一图像数据转换成具有适合于第一图像数据的色域的转换特性的第二图像数据。