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    • 1. 发明申请
    • METHOD OF FORMING AN IMAGE BASED ON A PLURALITY OF IMAGE FRAMES, IMAGE PROCESSING SYSTEM AND DIGITAL CAMERA
    • 基于多个图像帧,图像处理系统和数字相机形成图像的方法
    • WO2007042074A1
    • 2007-04-19
    • PCT/EP2005/055186
    • 2005-10-12
    • ACTIVE OPTICS PTY LIMITEDWAJS, Andrew Augustine
    • WAJS, Andrew Augustine
    • G06T5/50
    • G06T5/50
    • Image fusion based on a modified method of frame averaging for noise removal by partly averaging over images having a smaller resolution than the desired resolution of the de-noised image. The set of images which are summed for averaging out noise consists of two subsets. The first set of images has a resolution (in terms of number of pixels) being smaller than the resolution of the images in the second set. The resolution of the images in the second set is the resolution of the "high-definition" de-noised output image. The lower resolution images are up-sampled by scaling their pixel numbers to that desired output image. The gradation of the first set images is also adapted to avoid intensity saturation (flare) due to sommation. Image fusing is also done in fourier space using the high frequency components from the higher resolution images and the lower ones from the lower resolution images.
    • 基于通过对具有比所述去噪图像的期望分辨率更小的分辨率的图像进行部分平均的基于用于噪声去除的帧平均的修改的方法的图像融合。 为了平均噪声而求和的图像集合由两个子集组成。 第一组图像具有小于第二组中的图像的分辨率的分辨率(以像素数计)。 第二组中的图像的分辨率是“高清晰度”去噪输出图像的分辨率。 较低分辨率的图像通过将其像素数缩放到所需的输出图像而进行上采样。 第一组图像的灰度也适合于避免由于发声造成的强度饱和(耀斑)。 图像融合也使用来自较高分辨率图像的高频分量和较低分辨率图像中的较低分辨率图像在四维空间中进行。
    • 2. 发明申请
    • IMAGE PROCESSING METHOD AND SYSTEM
    • 图像处理方法和系统
    • WO2007042073A1
    • 2007-04-19
    • PCT/EP2005/055179
    • 2005-10-12
    • ACTIVE OPTICS PTY LIMITEDWAJS, Andrew Augustine
    • WAJS, Andrew Augustine
    • G06T7/00
    • G06T7/223
    • In an image processing method a sequence of at least two image frames is provided and a motion vector representing relative movement of at least a part of said image frames is calculated. At least said part in the image frames is repositioned in accordance with the calculated motion vector, and the image frames are combined to form a combined image frame. The image frames are divided into blocks and a block motion vector representing relative movement of each block is calculated. Each block is repositioned in accordance with the calculated block motion vector and the blocks are combined to form combined blocks in order to obtain the combined image frame.
    • 在图像处理方法中,提供至少两个图像帧的序列,并且计算表示所述图像帧的至少一部分的相对移动的运动矢量。 图像帧中的至少所述部分根据所计算的运动矢量重新定位,并且将图像帧组合以形成组合图像帧。 图像帧被分成块,并且计算表示每个块的相对运动的块运动矢量。 每个块根据计算的块运动矢量重新定位,并且将块组合以形成组合块,以获得组合图像帧。
    • 4. 发明申请
    • PROCESSING MULTI-APERTURE IMAGE DATA
    • 处理多孔图像数据
    • WO2011101036A1
    • 2011-08-25
    • PCT/EP2010/052154
    • 2010-02-19
    • IPLINK LIMITEDWAJS, Andrew Augustine
    • WAJS, Andrew Augustine
    • H04N13/00H04N5/232
    • G06T7/0065G06T7/55G06T2207/10048H04N5/23212H04N5/2355
    • A method and a system for processing multi-aperture image data are described, wherein the method comprises: capturing image data associated with one or more objects by simultaneously exposing an image sensor in an imaging system to spectral energy associated with at least a first part of the electromagnetic spectrum using at least a first aperture and to spectral energy associated with at least a second part of the electromagnetic spectrum using at least a second and third aperture; generating first image data associated with said first part of the electromagnetic spectrum and second image data associated with said second part of the electromagnetic spectrum; and, generating depth information associated with said captured image on the basis displacement information in said second image data, preferably on the basis of displacement information in an auto-correlation function of the high-frequency image data associated with said second image data.
    • 描述了一种用于处理多孔径图像数据的方法和系统,其中该方法包括:通过将成像系统中的图像传感器同时曝光到与至少第一部分的至少第一部分相关联的光谱能量来捕获与一个或多个对象相关联的图像数据 所述电磁光谱使用至少第一孔径和至少与所述电磁光谱的至少第二部分相关联的光谱能量,使用至少第二和第三孔径; 产生与所述电磁频谱的所述第一部分相关联的第一图像数据和与所述电磁频谱的所述第二部分相关联的第二图像数据; 优选地,基于与所述第二图像数据相关联的高频图像数据的自相关函数中的位移信息,生成与所述第二图像数据中的基准位移信息相关联的与所述拍摄图像相关联的深度信息。
    • 7. 发明申请
    • OBTAINING A CONTROL WORD TO REVEAL A CLIENT DEVICE IDENTITY
    • 获得控制字以显示客户端设备标识
    • WO2012049298A1
    • 2012-04-19
    • PCT/EP2011/068001
    • 2011-10-14
    • IRDETO B.V.WAJS, Andrew AugustineVAN FOREEST, Arnoud Evert
    • WAJS, Andrew AugustineVAN FOREEST, Arnoud Evert
    • H04L9/08G06F21/00
    • H04L63/0428G06F21/10H04L9/0816H04L9/0866H04L9/0869
    • The invention provides for a solution enabling obtaining a control word in the client. The client device has a unique binary identification. An input transformed control word is mapped from an input transform domain to an output transform domain to thereby obtain an output transformed control word by successively applying a transformation function to the input transformed control word using each compound of seeds from the set successively as an input to the successive transformation functions. Each of the successive transformation functions is one of a regular transformation function, a first special transformation function and a second special transformation function. The obtained control word can be used to decrypt one of two copies of a part of content data. The copy that can be decrypted contains a watermark representing either a binary "0" or a binary "1" and represents a bit of the unique binary identification of the client device.
    • 本发明提供了一种能够在客户端中获得控制字的解决方案。 客户端设备具有唯一的二进制识别。 输入变换的控制字从输入变换域映射到输出变换域,从而通过使用来自所述集合的每个种子组合连续地将变换函数应用于输入变换的控制字来获得输出变换的控制字作为输入 连续变换函数。 每个连续变换函数是常规变换函数,第一特殊变换函数和第二特殊变换函数之一。 所获得的控制字可以用于解密内容数据的一部分的两个拷贝中的一个。 可以被解密的副本包含表示二进制“0”或二进制“1”的水印,并且表示客户端设备的唯一二进制标识的位。
    • 8. 发明申请
    • GESTURE-BASED USER INTERFACE
    • 基于GESTURE的用户界面
    • WO2014008939A1
    • 2014-01-16
    • PCT/EP2012/063703
    • 2012-07-12
    • DUAL APERTURE, INC.WAJS, Andrew Augustine
    • WAJS, Andrew Augustine
    • G06F3/01G06F3/03G06T7/00H04N13/02
    • G06F3/017G06F3/011G06F3/0304G06F21/32G06K9/00073G06K9/00355G06K9/2018G06T7/571G06T2207/10016G06T2207/10024G06T2207/10048G06T2207/10148G06T2207/20056
    • A computer-implemented method for a gesture-based user interface for controlling a software program on an electronic device and a gesture-based user interface system are described wherein the method comprises the steps of receiving image data from a multi-aperture image sensor in said electronic device, said image sensor being adapted to simultaneously expose an image sensor to at least a first part of the electromagnetic (EM) spectrum using a first aperture and at least a second part of the EM spectrum using one or more second apertures; determining sharpness information in at least one area of said image data associated with at least part of an object, preferably at least part a human body part, imaged by said first aperture and said one or more second apertures onto the image plane of said image sensor; generating depth information, preferably one or more depth maps, on the basis of at least part of said sharpness information; and, recognizing on the basis of said depth information, at least part of a gesture associated with a movement of said object.
    • 描述了一种用于基于手势的用户界面的用于控制电子设备上的软件程序和基于手势的用户界面系统的计算机实现的方法,其中所述方法包括以下步骤:从所述多个孔径图像传感器接收图像数据 所述图像传感器适于使用一个或多个第二孔使用第一孔和所述EM谱的至少第二部分将图像传感器同时暴露于所述电磁(EM)光谱的至少第一部分; 在与所述图像传感器的图像平面上的所述图像数据的至少一部分相关联的至少一个区域中确定锐度信息,所述至少一个区域与由所述第一孔和所述一个或多个第二孔成像的物体的至少一部分,优选至少部分人体部分相关联, ; 基于所述锐度信息的至少一部分生成深度信息,优选地一个或多个深度图; 并且基于所述深度信息识别与所述对象的移动相关联的手势的至少一部分。