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    • 63. 发明申请
    • Face Recognition Apparatus and Methods
    • 人脸识别装置及方法
    • US20120230545A1
    • 2012-09-13
    • US13501300
    • 2009-11-30
    • Tong ZhangWei Zhang
    • Tong ZhangWei Zhang
    • G06K9/48
    • G06K9/6253G06K9/00221G06K9/6227
    • One or more facial recognition categories are assigned to a face region detected in an input image (24). Each of the facial recognition categories is associated with a respective set of one or more different feature extraction modules (66) and a respective set of one or more different facial recognition matching modules (76). For each of the facial recognition categories assigned to the face region, the input image (24) is processed with each of the feature extraction modules (66) associated with the facial recognition category to produce a respective facial region descriptor vector of facial region descriptor values characterizing the face region. A recognition result (96) between the face region and a reference face image (28) is determined based on application of the one or more facial recognition matching modules (76) associated with the facial recognition categories assigned to the face region to the facial region descriptor vectors produced for the face region detected in the input image (24).
    • 一个或多个面部识别类别被分配给在输入图像(24)中检测到的面部区域。 每个面部识别类别与相应的一组一个或多个不同的特征提取模块(66)和相应的一组或多个不同的面部识别匹配模块(76)相关联。 对于分配给面部区域的每个面部识别类别,与与面部识别类别相关联的每个特征提取模块(66)处理输入图像(24),以产生面部区域描述符值的相应面部区域描述符向量 表征脸部区域。 基于与分配给面部区域的面部识别类别相关联的一个或多个面部识别匹配模块(76)到面部区域的应用来确定面部区域和参考面部图像(28)之间的识别结果(96) 为在输入图像(24)中检测到的面部区域产生的描述符向量。
    • 64. 发明申请
    • FLOOR THROUGH-PASSAGE MOLDING APPARATUS
    • 地板通过模具设备
    • US20120193508A1
    • 2012-08-02
    • US12997728
    • 2010-11-26
    • Yanbo XieTing XiaWei Zhang
    • Yanbo XieTing XiaWei Zhang
    • E04G15/00
    • E04G15/063B28B7/28E04G15/06
    • The present invention provides a floor through-passage molding apparatus adapted for a floor construction, which comprises a forming sleeve, a first covering plate assembly, a second covering plate assembly and a plurality of retaining assemblies. Said forming sleeve has a sleeve wall defining a hollow channel, a first opening and a second opening. Said first and second covering plate assemblies are respectively disposed on the first and second openings of said forming sleeve. Said plurality of retaining assemblies passes through the hollow channel of said forming sleeve, and are respectively retained with the first and second covering plate assemblies by a plurality of corresponding retaining holes formed on said first and second covering plate assemblies, wherein positions of the plurality of corresponding retaining holes distributed on said first covering plate assembly or said second covering plate assembly jointly define at least one plane.
    • 本发明提供一种适用于地板结构的地板通道模制装置,其包括成形套筒,第一盖板组件,第二盖板组件和多个保持组件。 所述成形套筒具有限定中空通道的套筒壁,第一开口和第二开口。 所述第一和第二盖板组件分别设置在所述成形套筒的第一和第二开口上。 所述多个保持组件穿过所述成形套筒的中空通道,并且分别通过形成在所述第一和第二覆盖板组件上的多个对应的保持孔与所述第一和第二覆盖板组件保持在一起, 分布在所述第一覆盖板组件或所述第二覆盖板组件上的对应的保持孔共同限定至少一个平面。
    • 65. 发明申请
    • Quick Cable Deicing Device and Power Component Thereof
    • 快速电缆除冰装置及其功率部件
    • US20120174327A1
    • 2012-07-12
    • US13497579
    • 2010-09-29
    • Xinhua ZhangWei ZhangJian Xu
    • Xinhua ZhangWei ZhangJian Xu
    • B08B9/023
    • H02G7/16
    • A quick cable deicing device and a power component thereof are provided. The deicing device comprises a cable clamping pedestal (11,13) which is sleeved on a cable and is capable of moving along the cable, a deicing head (21, 22) mounted at the head part of the cable clamping pedestal, and a power component which is connected with the tail part of the cable clamping pedestal and is capable of generating a thrust. The deicing device can advance and rotate at the same time under the drive of the power component. The power component comprises a gas tank (31) in a structure which conforms to a Laval nozzle principle and has an aperture expanded after sharply narrowed. The power component conforming to an aerodynamic principle is adopted to generate the momentary thrust to drive the whole device to advance and rotate at the same time; and the deicing velocity of the deicing device is high, while the rotational inertia improves the ice crushing capacity of the deicing head, thereby improving the deicing efficiency; the quick cable deicing device has a low cost, does not need manual operation after the cable is prepared in place, and has a higher safety.
    • 提供一种快速电缆除冰装置及其功率部件。 除冰装置包括套管在电缆上并且能够沿着电缆移动的电缆夹持基座(11,13),安装在电缆夹持基座的头部的除冰头(21,22)和电源 该部件与电缆夹紧基座的尾部连接并且能够产生推力。 除冰装置可以在功率部件的驱动下同时前进和旋转。 功率部件包括符合拉瓦尔(Laval)喷嘴原理的结构中的气罐(31),并且具有在急剧变窄之后膨胀的孔。 采用符合空气动力学原理的动力部件产生瞬时推力,同时驱动整个装置前进旋转; 并且除冰装置的除冰速度高,而旋转惯性提高了除冰头的破冰能力,从而提高除冰效率; 快速电缆除冰装置成本低,电缆准备就绪后不需要手动操作,安全性更高。
    • 66. 发明申请
    • FACE RECOGNITION APPARATUS AND METHODS
    • 脸部识别装置和方法
    • US20120170852A1
    • 2012-07-05
    • US13395458
    • 2009-09-25
    • Wei ZhangTong Zhang
    • Wei ZhangTong Zhang
    • G06K9/48
    • G06K9/00281
    • Interest regions are detected in respective images (18) having face regions labeled with respective facial part labels. For each of the detected interest regions, a respective facial region descriptor vector of facial region descriptor values characterizing the detected interest region is determined. Ones of the facial part labels are assigned to respective ones of the facial region descriptor vectors. For each of the facial part labels, a respective facial part detector (20) that detects facial region descriptor vectors corresponding to the facial part label is built. The facial part detectors (20) are associated with rules (30) that qualify segmentation results of the facial part detectors (20) based on spatial relations between interest regions detected in images and the respective face part labels assigned to the facial part detectors (20). Faces in images are detected and recognized based on application of the facial part detectors (20) to images.
    • 在具有用相应的面部标签标记的面部区域的各个图像(18)中检测兴趣区域。 对于每个检测到的感兴趣区域,确定表征检测到的兴趣区域的面部区域描述符值的相应面部区域描述符向量。 面部部分标签的一部分被分配给面部区域描述符向量中的相应的一个。 对于每个面部部分标签,构建检测与面部部分标签相对应的面部区域描述符向量的相应面部部分检测器(20)。 面部部分检测器(20)与根据图像中检测到的兴趣区域和分配给面部部分检测器的相应面部部分标签(20)之间的空间关系来限定面部部分检测器(20)的分割结果的规则(30)相关联 )。 基于面部部件检测器(20)对图像的应用来检测和识别图像中的面部。
    • 69. 发明申请
    • Spectrophotometric Monitoring Of Multiple Layer Tissue Structures
    • 多层组织结构的分光光度监测
    • US20120095305A1
    • 2012-04-19
    • US12815696
    • 2010-06-15
    • Ming WangShih-Ping WangZengpin YuWei Zhang
    • Ming WangShih-Ping WangZengpin YuWei Zhang
    • A61B5/1455A61B6/00
    • A61B5/0075A61B5/103A61B5/14551
    • Methods, systems, and related computer program products for the non-invasive spectrophotometric monitoring of a biological volume having multiple tissue layers are described. Aggregate absorption and scattering properties are measured for each of a plurality of predetermined source-detector separation distances along a surface of the biological volume, the measurement being based on a model of the biological volume as a single-layer, semi-infinite, homogeneous volume. A predetermined multi-layer tissue model is retrieved that characterizes a mathematical relationship among (a) absorption and scattering properties of each layer of a multi-layer tissue structure, and (b) aggregate absorption and scattering properties of the multi-layer tissue structure as would be measured at selected source-detector separation distances along a surface thereof. The measured aggregate absorption and scattering properties are processed in conjunction with the predetermined multi-layer tissue model to compute therefrom a deep-layer-specific absorption property corresponding to the relatively deep tissue layer.
    • 描述了用于非侵入式分光光度监测具有多个组织层的生物体积的方法,系统和相关的计算机程序产品。 测量沿着生物体积的表面的多个预定的源 - 检测器分离距离中的每一个的聚集吸收和散射性质,该测量基于生物体积的模型作为单层,半无限均质体​​积 。 检索预定的多层组织模型,其表征(a)多层组织结构的每层的吸收和散射性质之间的数学关系,以及(b)多层组织结构的聚集吸收和散射性质作为 将沿着其表面的选定的源 - 检测器间隔距离测量。 测量的聚集体吸收和散射性质与预定的多层组织模型结合进行处理,从而计算对应于相对较深的组织层的深层特异性吸收特性。