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    • 91. 发明授权
    • Fast method of super-resolution processing
    • 快速的超分辨率处理方法
    • US08041151B2
    • 2011-10-18
    • US11913324
    • 2006-05-01
    • Masayuki TanakaMasatoshi Okutomi
    • Masayuki TanakaMasatoshi Okutomi
    • G06K9/32G06K9/36
    • G06T3/4053
    • The present invention provides a fast method of super-resolution processing which realizes speedup of the high-speed super-resolution processing by speeding up the calculations of an evaluation function and the differential of the evaluation function with respect to a high-resolution image in a reconstruction-based super-resolution processing.A fast method of super-resolution processing for speeding up a super-resolution processing that estimates a high-resolution image from multiple low-resolution images with displacements, the method characterized in that an evaluation function and a differential of the evaluation function with respect to the high-resolution image are calculated by a combination of basic image operations.
    • 本发明提供了一种超分辨率处理的快速方法,其通过加速评估函数的计算和相对于高分辨率图像中的高分辨率图像的评估函数的差分来实现高速超分辨率处理的加速 基于重建的超分辨率处理。 一种超分辨率处理的快速方法,用于加速从具有位移的多个低分辨率图像估计高分辨率图像的超分辨率处理,其特征在于,评估函数和评估函数的差异相对于 通过基本图像操作的组合来计算高分辨率图像。
    • 92. 发明授权
    • Fast method of super-resolution processing
    • 快速的超分辨率处理方法
    • US08009933B2
    • 2011-08-30
    • US11666605
    • 2005-10-17
    • Masayuki TanakaMasatoshi Okutomi
    • Masayuki TanakaMasatoshi Okutomi
    • G06K9/32
    • H04N1/3935G06T3/4069
    • A method is provided for speeding up a super-resolution processing by reducing the number of times for convolution operation that is the number of times for estimation calculation.A fast method of super-resolution processing for speeding up a super-resolution processing that estimates a high-resolution image from multiple low-resolution images with a displacement, which comprising: a first step for performing a registration of said multiple low-resolution images in a high-resolution image space and treating all pixels of said multiple low-resolution images after the registration as pixels sampled at unequal interval within said high-resolution image space; a second step for dividing said high-resolution image space into multiple small areas with a predefined size; and a third step for defining an estimated value at a predefined representative position within said small area as an estimated value of all pixels that exist within said small area for each small area divided in said second step.
    • 提供了一种通过减少作为估计计算次数的卷积运算次数来加速超分辨率处理的方法。 一种超分辨率处理的快速方法,用于加速从具有位移的多个低分辨率图像估计高分辨率图像的超分辨率处理,其包括:第一步骤,用于执行所述多个低分辨率图像的注册 在高分辨率图像空间中,并且将所述多个低分辨率图像的所有像素处理为所述高分辨率图像空间中以不等间隔采样的像素; 用于将所述高分辨率图像空间划分成具有预定尺寸的多个小区域的第二步骤; 以及第三步骤,用于在所述小区域内的预定代表性位置处定义估计值,作为在所述第二步骤中划分的每个小区域,存在于所述小区域内的所有像素的估计值。
    • 94. 发明授权
    • Signal readout method of solid-state imaging device and image signal processing method
    • 固态成像装置的信号读出方法及图像信号处理方法
    • US07944486B2
    • 2011-05-17
    • US11994564
    • 2006-06-01
    • Masayuki TanakaMasatoshi Okutomi
    • Masayuki TanakaMasatoshi Okutomi
    • H04N5/235H04N3/14H04N5/225
    • H04N9/045H04N5/2355H04N2209/045
    • The present invention provides a signal readout method of solid-state imaging device which can simultaneously readouts the signals having different properties that can generate multiple images obtained by capturing the same subject under different capturing conditions from one solid-state imaging device.A signal readout method of solid-state imaging device that is applied to a solid-state imaging device with a color filter array (CFA) and multiple pixels, the method characterized in that a pixel mixture of a different number of pixels is performed for every readout signal in the solid-state imaging device, and a signal after the pixel mixture is readout. The signal after the pixel mixture means a first signal after the pixel mixture that is obtained by performing the pixel mixture of predetermined L pixels (L≦n×m) within (n×m) pixels (n and m are natural numbers) consisting of n pixels in a vertical direction and m pixels in a horizontal direction of the solid-state imaging device, and a second signal after the pixel mixture that is obtained by down sampling pixel signals of (n×m) pixels without performing pixel mixture of (n×m) pixels.
    • 本发明提供了一种固态成像装置的信号读出方法,其可以同时读出具有不同属性的信号,这些信号可以产生通过在不同拍摄条件下从一个固态成像装置捕获相同被摄体而获得的多个图像。 一种固态成像装置的信号读出方法,其应用于具有滤色器阵列(CFA)和多个像素的固态成像装置,该方法的特征在于,对每个像素执行不同数量的像素的像素混合 在固态成像装置中的读出信号,以及像素混合后的信号被读出。 像素混合后的信号是指通过在(n×m)个像素(n和m是自然数)内进行预定的L个像素(L< nlE; n×m)的像素混合而获得的像素混合后的第一信号, 在固体摄像装置的水平方向上为n个像素,在水平方向为m个像素,以及通过对(n×m)个像素的像素信号进行下采样而得到的像素混合后的第二信号, n×m)像素。
    • 97. 发明申请
    • CLOTH DRYER
    • 衣服干燥机
    • US20100170101A1
    • 2010-07-08
    • US12601370
    • 2008-05-28
    • Mitsunori TaniguchiHideo NisihataTosiaki AndouMasayuki Tanaka
    • Mitsunori TaniguchiHideo NisihataTosiaki AndouMasayuki Tanaka
    • D06F58/04F28F13/12F25B27/00
    • F28D1/0417D06F25/00D06F58/02D06F58/206D06F58/24D06F58/26D06F58/28F28D1/0435F28D1/0477F28F1/32F28F2215/02F28F2270/00
    • A cloth dryer includes heat-pump (30), rotary tub (5) for accommodating clothes (4) to be dried, blower (12) for supplying air heated by heat radiator (23) to rotary tub (5), and heat-exchange air flow paths (22, 24) for circulating the air stayed in rotary tub (5) through heat radiator (23) via heat absorber (21). Fins striding over heat absorber (21) and heat radiator (23) allow integrating absorber (21) and radiator (23) into one body which can be thus placed within air-flow paths (22, 24). Heat-transfer reducing section (32) is formed on the fins between heat absorber (21) and heat radiator (23) for reducing the heat transfer via the fins between heat absorber (21) and heat radiator (23). The foregoing structure can prevent frost and ice produced on heat absorber (21) from growing, so that a compact cloth dryer excellent in drying performance is obtainable.
    • 布干燥机包括热泵(30),用于容纳要干燥的衣物(4)的旋转桶(5),用于将由散热器(23)加热的空气供给旋转桶(5)的鼓风机(12) 用于通过散热器(23)经由吸热器(21)使滞留在旋转桶(5)中的空气循环的交换空气流路(22,24)。 跨过吸热器(21)和散热器(23)的翅片允许集成吸收器(21)和散热器(23)成为一体,其可以被放置在空气流动路径(22,24)内。 在散热器(21)和散热器(23)之间的翅片上形成有传热减少部(32),用于减少吸热体(21)与散热器(23)之间的散热片的传热。 上述结构可以防止在吸热器(21)上产生的霜冻和冰块生长,从而可获得干燥性能优异的紧凑型干燥干燥机。
    • 99. 发明申请
    • HIGH-RESOLUTION IMAGE GENERATION METHOD
    • 高分辨率图像生成方法
    • US20100002949A1
    • 2010-01-07
    • US12446760
    • 2007-09-26
    • Masayuki TanakaMasatoshi Okutomi
    • Masayuki TanakaMasatoshi Okutomi
    • G06K9/40
    • H04N1/3871G06T1/0007G06T3/4069
    • The present invention provides a high-resolution image generation method which is capable of generating a high-resolution image from multiple low-resolution images having displacements without using an iterative computation.A high-resolution image generation method for generating a high-resolution image from multiple low-resolution images having displacements, comprises a first step of performing a registration processing of multiple low-resolution images; a second step of generating an average image having the undefined pixels and a weighted image based on the displacement information obtained by the registration processing and multiple low-resolution images; and a third step of generating the high-resolution image by estimating pixel values of the undefined pixels included in the average image.
    • 本发明提供一种高分辨率图像生成方法,其能够从具有位移的多个低分辨率图像生成高分辨率图像,而不使用迭代计算。 一种用于从具有位移的多个低分辨率图像生成高分辨率图像的高分辨率图像生成方法,包括执行多个低分辨率图像的注册处理的第一步骤; 基于通过登记处理和多个低分辨率图像获得的位移信息,生成具有未定义像素的平均图像和加权图像的第二步骤; 以及第三步骤,通过估计包括在平均图像中的未定义像素的像素值来产生高分辨率图像。
    • 100. 发明授权
    • Semiconductor storage device and manufacturing method thereof
    • 半导体存储装置及其制造方法
    • US07629232B2
    • 2009-12-08
    • US12193531
    • 2008-08-18
    • Masayuki TanakaHirokazu Ishida
    • Masayuki TanakaHirokazu Ishida
    • H01L21/322
    • H01L27/115H01L27/11521
    • A non-volatile semiconductor storage device having a high-dielectric-constant insulator and a manufacturing method thereof suitable for miniaturization are disclosed. According to one aspect of the present invention, it is provided a semiconductor storage device comprising a semiconductor substrate, a plurality of first conductor layers formed on the semiconductor substrate through a first insulator, an isolation formed between the plurality of first conductor layers, a silicon oxide film formed on the first conductor layer, a high-dielectric-constant insulator formed on the silicon oxide film and the isolation and being diffused silicon and oxygen at least in a surface thereof contacting with the silicon oxide film, and a second conductor film formed above the high-dielectric-constant insulator.
    • 公开了一种具有高介电常数绝缘体的非易失性半导体存储器件及其适用于小型化的制造方法。 根据本发明的一个方面,提供了一种半导体存储装置,包括半导体衬底,通过第一绝缘体在半导体衬底上形成的多个第一导体层,在多个第一导体层之间形成的隔离,硅 形成在第一导体层上的氧化膜,形成在氧化硅膜上的高介电常数绝缘体,并且至少在其与氧化硅膜接触的表面中分离和扩散硅和氧,以及形成的第二导体膜 高介电常数绝缘子上方。