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    • 1. 发明申请
    • INTEGRATED SOLAR CELL NANOARRAY LAYERS AND LIGHT CONCENTRATING DEVICE
    • 集成太阳能电池纳米片和光集中器件
    • US20100288352A1
    • 2010-11-18
    • US12777559
    • 2010-05-11
    • Jin JiLawrence Kaufman
    • Jin JiLawrence Kaufman
    • H01L31/0232
    • H01L31/02168G02B5/008G02B2207/101H01L31/0547H01L31/0549H01L31/055H01L31/0687Y02E10/52Y02E10/544
    • An integrated energy conversion device includes a nanoarray layer having a plurality of nanofeatures disposed in a pattern. The nanoarray layer is configured to modify a selected one of a direction and a wavelength of photons of light incident on a surface of the nanoarray layer. The nanoarray layer has a surface. A first material is disposed adjacent to and optically coupled to one region of the surface of the nanoarray layer. A second material is disposed adjacent to and optically coupled to a second region of the surface of the nanoarray layer. At least a selected one of the first material and the second material includes a photovoltaic layer which is configured to provide an integrated solar cell electrical output voltage and an integrated solar cell electrical output current between an integrated solar cell positive output terminal and an integrated solar cell negative output terminal.
    • 集成能量转换装置包括具有以图案设置的多个纳米尺度的纳米阵列层。 纳米阵列层被配置为修改入射在纳米阵列层的表面上的光的光子的方向和波长的选定的一个。 纳米阵列层具有表面。 第一材料被布置成与纳米阵列层的表面的一个区域相邻并光学耦合。 第二材料被布置成与纳米阵列层的表面的第二区域相邻并且光耦合。 至少所选择的第一材料和第二材料中的至少一个包括光电层,其被配置为提供集成的太阳能电池电输出电压和集成的太阳能电池正输出端和集成太阳能电池之间的集成的太阳能电池电输出电流 负输出端子。
    • 3. 发明授权
    • Motion adaptive noise reduction method and system
    • 运动自适应降噪方法和系统
    • US06784944B2
    • 2004-08-31
    • US09885775
    • 2001-06-19
    • Biao ZhangJin Ji
    • Biao ZhangJin Ji
    • H04N521
    • H04N9/646H04N5/21
    • A method and system of noise filtering is provided. The pixels of a first filter mask are separated into groups based on luminance . . . The sizes of each group is determined and a largest group is selected. The distance of each group of pixels from the largest group is also calculated. Pixels in groups that are small compared to the largest group and far from the largest group are tagged as noisy. After tagging the noisy pixels, additional filtering can be applied to the pixels of first filter mask without degradation from the tagged pixels.
    • 提供了噪声滤波的方法和系统。 基于亮度将第一滤波器掩模的像素分成组。 。 。 确定每组的大小,并选择最大组。 还计算每组像素与最大组的距离。 与最大组相比,远离最大组的小组中的像素被标记为嘈杂。 在标记噪声像素之后,可以对第一滤波器掩码的像素应用附加滤波,而不会从标记的像素降级。
    • 5. 发明授权
    • Motion adaptive de-interlacing circuit and method
    • 运动自适应去隔行电路及方法
    • US06686923B2
    • 2004-02-03
    • US09885420
    • 2001-06-19
    • Jin JiHenry Haojan Tung
    • Jin JiHenry Haojan Tung
    • H04N701
    • H04N7/012
    • A method and circuit generates a complete picture from a series of digitized interlaced video fields. Each pixel in the complete picture is either duplicated from a digitized interlaced video field or interpolated from three adjoining digitized interlaced video fields. Interpolated pixels are computed from a combination of same-field and adjoining-field pixels. A percentage difference of the luminance values of the same-field and adjoining-field pixels included in the interpolation is used to maximize motion capture in the de-interlaced picture. Additional embodiments incorporate filtering of the percentage difference based on a threshold value to minimize soft noise in the de-interlaced picture.
    • 一种方法和电路从一系列数字化的隔行视频字段中产生完整的图像。 完整图像中的每个像素可以从数字化的隔行视频字段复制或从三个相邻的数字化隔行视频字段内插。 从相同场和相邻场像素的组合计算插值像素。 使用包含在内插中的相同场和毗邻场像素的亮度值的百分比差来最大化去隔行扫描图像中的运动捕获。 另外的实施例包括基于阈值对百分比差进行滤波,以最小化去隔行图像中的软噪声。
    • 7. 发明申请
    • Asymmetric Waveguide
    • 不对称波导
    • US20100229943A1
    • 2010-09-16
    • US12725037
    • 2010-03-16
    • Jin Ji
    • Jin Ji
    • H01L31/0232
    • G02B6/1226B82Y20/00G02B6/12007
    • An asymmetric waveguide layer which includes a metal film having an array of apertures defined in the metal film. The apertures extend from a first surface of the metal film to a second surface of the metal film. A plurality of photons have a wavelength of about X propagate through the asymmetric waveguide layer in one direction, and are substantially prevented from propagating in the other direction. An integrated solar cell is also described. First and second PV layers are disposed adjacent to and optically coupled to the asymmetric waveguide layer. A reflective layer is disposed adjacent to and optically coupled to the second PV layer second surface. Light passing through the asymmetric waveguide is substantially trapped within the second PV layer by a combination of reflection from the reflective layer and reflection by the asymmetric waveguide layer.
    • 不对称波导层,其包括金属膜,金属膜具有限定在金属膜中的孔阵列。 孔从金属膜的第一表面延伸到金属膜的第二表面。 多个具有约X的波长的光子在一个方向上传播通过不对称波导层,并且基本上被阻止沿另一个方向传播。 还描述了集成太阳能电池。 第一和第二PV层被布置成与不对称波导层相邻并光耦合。 反射层设置成与第二PV层第二表面相邻并光学耦合。 穿过不对称波导的光通过来自反射层的反射和不对称波导层的反射的组合基本上被捕获在第二PV层内。
    • 10. 发明授权
    • 4×4 pixel-based edge detection and edge enhancement without line buffer overhead
    • 基于4x4像素的边缘检测和边缘增强,无需线路缓冲区开销
    • US07200278B2
    • 2007-04-03
    • US10390139
    • 2003-03-14
    • Wai Khaun LongJin Ji
    • Wai Khaun LongJin Ji
    • G06K9/40G06K9/32G06K9/48
    • G06T3/403
    • A digital image upscaling system enhances the visual quality of enlarged images by detecting diagonal edges and applying an appropriate scaling algorithm, such as a rotated bilinear scaling process, to output pixels associated with those edges. The rotated bilinear scaling process involves detecting diagonal edges and specifying a new frame of reference rotated 45° from the original frame of reference, and then selecting a rotated pixel set based on the new frame of reference. Bilinear interpolation in the new frame of reference using the rotated pixel set provides improved pixel data for the output pixel. Output pixels found not to be associated with diagonal edges are processed using standard bilinear interpolation.
    • 数字图像放大系统通过检测对角线边缘并应用诸如旋转双线性缩放处理的适当的缩放算法来输出与这些边缘相关联的像素来增强放大图像的视觉质量。 旋转的双线性缩放过程涉及检测对角线边缘并指定与原始参照系旋转45°的新参考基准,然后基于新的参考系选择旋转的像素集。 使用旋转像素组的新的参考帧中的双线性插值为输出像素提供改进的像素数据。 发现不与对角线边缘相关联的输出像素使用标准双线性插值进行处理。