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    • 41. 发明授权
    • Optical instrument
    • 光学仪器
    • US09063324B2
    • 2015-06-23
    • US14306409
    • 2014-06-17
    • Olympus Imaging Corp.
    • Satoshi Okawa
    • G02B15/14G02B15/16G03B3/10G03B5/00G02B7/10G02B7/28
    • G02B15/16G02B7/102G02B7/282G03B3/10G03B5/00G03B2205/0046G03B2205/0053
    • An optical instrument of the present invention has a first lens group and a second lens group capable of moving in an optical axis direction in order to perform optical zooming, and comprises a storage section for storing first position information relating to positions of the first lens group and positions of the second lens group corresponding to identical focal lengths that fall within a focal length region range in which zoom operations of the optical instrument are carried out, and second position information relating to positions of the first lens group and positions of the second lens group corresponding to different focal lengths that fall within the focal length region, and establishes a second optical state of a higher shooting magnification than a first optical state, when establishing substantially the same focal length as a focal length of the first optical state based on the first position information.
    • 本发明的光学仪器具有能够沿光轴方向移动以进行光学变焦的第一透镜组和第二透镜组,并且包括用于存储与第一透镜组的位置相关的第一位置信息的存储部分 并且对应于落在光学仪器的变焦操作的焦距区域范围内的相同焦距的第二透镜组的位置以及与第一透镜组的位置和第二透镜的位置有关的第二位置信息 对应于落在焦距区域内的不同焦距的组,并且当基于第一光学状态建立与第一光学状态的焦距大致相同的焦距时,建立比第一光学状态更高的拍摄倍率的第二光学状态 第一位置信息。
    • 44. 发明授权
    • Communicating constraint information for determining a path subject to such constraints
    • 通信约束信息用于确定受这种限制的路径
    • US09007956B2
    • 2015-04-14
    • US13093924
    • 2011-04-26
    • Kireeti Kompella
    • Kireeti Kompella
    • H04L12/28H04L12/723H04L12/751H04L12/733H04L12/721
    • H04L45/50H04L45/02H04L45/20H04L45/62
    • Path determination constraints may be encoded in the form of a program having one or more instructions. Each of instructions may include an operation code, and operands (or pointers to locations where operands are stored). In this way, an extensible, interoperable way for a nodes (e.g., label-switching routers) to communicate constraints within a network is provided. Such constraints may be inserted (e.g., as one or more CONSTRAINT objects) into signaling messages (e.g., a PATH RSVP message). By enabling the signaling of constraints, the determination of constraint-based (label-switched) paths can be distributed among a number of (label-switching) routers or other nodes. Upon receiving a message with constraints (e.g., a CONSTRAINT object(s)), a node may (i) ignore the constraints if the node is a tail-end node (label-switching router), (ii) apply the constraints to a link if the next hop in the (label-switched) path is strict, and/or (iii) perform a constraint-based path determination to a next hop if the next hop is loose.
    • 路径确定约束可以以具有一个或多个指令的程序的形式进行编码。 每个指令可以包括操作码和操作数(或指向存储操作数的位置的指针)。 以这种方式,提供了用于节点(例如,标签交换路由器)在网络内传送约束的可扩展的可互操作的方式。 可以将这样的约束(例如,作为一个或多个CONSTRAINT对象)插入信令消息(例如,PATH RSVP消息)中。 通过启用约束的信令,可以在多个(标签交换)路由器或其他节点之间分配基于约束的(标签交换)路径的确定。 在接收到具有约束的消息(例如,CONSTRAINT对象)时,如果节点是尾端节点(标签交换路由器),则节点可以(i)忽略约束,(ii)将约束应用于 如果(标签交换)路径中的下一跳是严格的,和/或(iii)如果下一跳是松散的,则对下一跳执行基于约束的路径确定。
    • 45. 发明授权
    • Image coding and decoding methods and apparatus
    • 图像编解码方法及装置
    • US08983213B1
    • 2015-03-17
    • US12943167
    • 2010-11-10
    • Thomas Richter
    • Thomas Richter
    • G06K9/36
    • G06K9/00G06K9/36G06T9/00H04N19/63H04N19/91
    • Methods and apparatus for coding and/or decoding bitplanes of individual codeblocks are described. Aspects relate to speeding up bitplane decoding when one or more decoders are used as part of the decoding process and one or more consistent value bitplanes were coded at the start of a codeblock. A number F, e.g., of consistent value, e.g., zero value, bitplanes are identified as corresponding to the beginning of an encoded codeblock being processed. Based on the determination a predetermined output, e.g., zero values corresponding to F bitplanes, is output. Thus, the output corresponding to the F consistent value bitplanes can be produced without having to perform a full arithmetic decoding process to generate the decoded data corresponding to the F consistent value bitplanes. Remaining bitplanes of a codeblock including data are subjected to decoding using one or more decoder modules which maybe part of a JPEG 2000 compliant decoder.
    • 描述用于编码和/或解码各个码块的位平面的方法和装置。 方面涉及当使用一个或多个解码器作为解码过程的一部分时加速位平面解码,并且在码块开始时编码一个或多个一致值位平面。 例如,具有一致值的数字F,例如零值,位平面被标识为对应于正在处理的编码码块的开始。 基于该确定,输出预定输出,例如对应于F位平面的零值。 因此,可以产生对应于F一致值位平面的输出,而不必执行完全算术解码处理,以产生对应于F一致值位平面的解码数据。 包含数据的码块的剩余位平面使用可能是JPEG 2000兼容解码器的一部分的一个或多个解码器模块进行解码。
    • 46. 发明授权
    • Imaging device and imaging method
    • 成像装置和成像方法
    • US08982242B2
    • 2015-03-17
    • US13495251
    • 2012-06-13
    • Tetsuya ToyodaKosuke Matsubara
    • Tetsuya ToyodaKosuke Matsubara
    • H04N5/76H04N5/228H04N5/335H04N5/232
    • H04N5/23277H04N5/2625H04N5/772H04N9/8042
    • An imaging device of the present invention, for taking and storing movies and still pictures, comprises an image sensor, an imaging processing section, and a control section for controlling exposure of the image sensor and controlling taking of an optical image, wherein the control section, when taking still pictures while shooting a movie, carries out exposure by dividing a time corresponding to a single frame of the movie into a plurality of times, applies processing by the imaging processing section to acquire a plurality of image data, performs positional alignment of the subject image of the plurality of image data and combines a plurality of image data, and stores as still picture data, and combines a plurality of image data without carrying out positional alignment of the subject image of the priority of image data and stores as a single frame of the movie data.
    • 本发明的拍摄和存储动画和静止图像的成像装置包括图像传感器,成像处理部分和用于控制图像传感器的曝光并控制光学图像的拍摄的控制部分,其中控制部分 当拍摄电影时拍摄静止图像时,通过将对应于电影的单个帧的时间除以多次来进行曝光,由成像处理部进行处理以获取多个图像数据,执行位置对准 多个图像数据的被摄体图像并且组合多个图像数据,并且作为静止图像数据存储,并且组合多个图像数据而不执行图像数据的优先级的被摄体图像的位置对准,并且存储为 单帧的电影数据。
    • 47. 发明授权
    • Protective headgear
    • 保护性头饰
    • US08978167B2
    • 2015-03-17
    • US13164704
    • 2011-06-20
    • Mary Lynne Blair
    • Mary Lynne Blair
    • A42B3/00A42B1/08A42B3/12
    • A42B3/125A42B1/08A42B3/128A42B3/28
    • A protective headgear device including a fabric cap (102) into which a hard shell (120) of reinforced fibers is inserted. A foam liner 140 or foam inserts (1500) are secured to the hard outer shell 120 and serve a shock absorbing function. The foam liner (14) and/or foam inserts (120) include or form grooves and/or channels used to direct hot air towards the top center of the headgear assembly where the hot air can be vented through holes which extend through the cap (102) and hard outer shell (120). The holes may pass through the foam liner 140 or meet up with holes on channels in or between the foam inserts through which air can pass. The hard outer shell maybe thinnest on top and thicker on the left and right sides. The center front and rear may be the same thickness as the top of the hard shell.
    • 一种保护性头饰装置,包括织物帽(102),其中插入有加强纤维的硬壳(120)。 泡沫衬里140或泡沫插入件(1500)固定到硬外壳120上并且用于减震功能。 泡沫衬里(14)和/或泡沫插入件(120)包括或形成用于将热空气引导到头套组件的顶部中心的槽和/或通道,其中热空气可以通过穿过帽的孔排出 102)和硬外壳(120)。 孔可以穿过泡沫衬里140,或者与泡沫插入件之间或通过空气可以穿过的通道上的孔相遇。 硬外壳可能在顶部最薄,左侧和右侧较厚。 中心前后可能与硬壳的顶部相同。
    • 49. 发明授权
    • Camera and metering method for camera
    • 摄像机相机和测光方法
    • US08958008B2
    • 2015-02-17
    • US12907686
    • 2010-10-19
    • Yasunori Kudo
    • Yasunori Kudo
    • H04N5/232H04N5/238G03B13/00H04N5/235G02B7/08G03B7/28G03B13/36
    • H04N5/2351G02B7/08G03B7/28G03B13/36H04N5/23212
    • A camera includes: a taking lens forming an image of a subject; an image pickup unit; a subject brightness acquisition unit acquiring the brightness information of the subject on the basis of the output of the image pickup unit; a control unit controlling the exposure according to the brightness information acquired by the subject brightness acquisition unit; and a storage unit storing the information indicating the optical state of the taking lens before the subject brightness acquisition unit acquires the brightness information. The control unit determines whether or not the brightness information is acquired again by the subject brightness acquisition unit according to the information about the optical state of the taking lens stored in the storage unit when the subject brightness acquisition unit previously acquired the brightness information, and the information about the optical state of the taking lens when the latest brightness information is acquired.
    • 相机包括:形成被摄体图像的拍摄镜头; 图像拾取单元; 被摄体亮度获取单元,基于摄像单元的输出获取被摄体的亮度信息; 控制单元,根据被摄体亮度获取单元获取的亮度信息来控制曝光; 以及存储单元,存储指示拍摄镜头在被摄体亮度获取单元获取亮度信息之前的光学状态的信息。 控制单元根据当被摄体亮度获取单元预先获取亮度信息时,根据关于存储在存储单元中的拍摄镜头的光学状态的信息,由被摄体亮度获取单元再次获取亮度信息,并且 当获取最新亮度信息时关于拍摄镜头的光学状态的信息。
    • 50. 发明授权
    • Imaging device and imaging method
    • 成像装置和成像方法
    • US08957982B2
    • 2015-02-17
    • US13613993
    • 2012-09-13
    • Keiji KunishigeManabu Ichikawa
    • Keiji KunishigeManabu Ichikawa
    • H04N5/228H04N5/225H04N5/262H04N5/232
    • H04N5/23245H04N5/2621
    • An imaging device includes a moving image special effect image processing unit that performs image processing of applying a first special effect causing a visual effect over a plurality of frames corresponding to image data of a moving image, and image processing of applying a second special effect corresponding to the first special effect to a still image captured during moving image capturing using image data of a moving image captured before the still image, and a control unit that controls an application form of the first and second special effects in the moving image special effect image processing unit.
    • 一种成像装置,包括:运动图像特效图像处理单元,其对与运动图像的图像数据相对应的多个帧执行对视觉效果产生视觉效果的第一特殊效果;以及应用相应于第二特殊效果的图像处理 使用在静止图像之前捕获的运动图像的图像数据的运动图像拍摄期间拍摄的静止图像的第一特殊效果,以及控制单元,其控制运动图像特殊效果图像中的第一和第二特殊效果的应用形式 处理单元。