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    • 1. 发明授权
    • System and method for gate access control
    • 门禁系统和方法
    • US07362210B2
    • 2008-04-22
    • US10979129
    • 2004-11-03
    • Michael E. BazakosRida M. HamzaDavid W. Meyers
    • Michael E. BazakosRida M. HamzaDavid W. Meyers
    • G08B13/14
    • G08G1/017G06K9/00228G07B15/04G07B15/063G07C9/00087G07C9/00103G08G1/207
    • A system for providing stand-off biometric verification of a driver of a vehicle at a control gate while the vehicle is moving, including a pre-verification system and a post-verification systems. The pre-verification system is installed before an entrance of a facility and comprises an RFID vehicle tag reader, an RFID personal tag reader and a facial detection and recognition (verification) system. The RFID vehicle tag reader scans and reads an ID from an RFID vehicle tag of the vehicle that is trying to pass through the gate. The RFID personal tag reader reads an ID from an RFID personal tag carried by personnel who are driving in the vehicle. The facial detection and verification system scans and reads facial images for the driver. The post-verification system is installed on at least one of an entrance and an exit for post-verification to ensure that the vehicle that enters the entrance or leaves from the exit is the one that has been verified/denied at the control gate. In one embodiment, the post-verification system comprises an RFID personal tag reader and an RFID vehicle tag reader. In another embodiment, the post-verification system also comprises a facial detection and recognition system.
    • 一种用于在车辆移动时在控制门处提供车辆驾驶员的待机生物特征验证的系统,包括预验证系统和后验证系统。 预验证系统安装在设施入口之前,并且包括RFID车辆标签读取器,RFID个人标签读取器和面部检测和识别(验证)系统。 RFID车辆标签读取器从试图通过门的车辆的RFID车辆标签扫描并读取ID。 RFID个人标签读取器从驾驶在车辆中的人员携带的RFID个人标签读取ID。 面部检测和验证系统扫描并读取驱动程序的面部图像。 后检验系统安装在入口和出口中的至少一个用于后验证,以确保进入入口或离开出口的车辆是在控制门处已被验证/拒绝的车辆。 在一个实施例中,后验证系统包括RFID个人标签读取器和RFID车辆标签读取器。 在另一个实施例中,后验证系统还包括面部检测和识别系统。
    • 2. 发明授权
    • Face identification verification using 3 dimensional modeling
    • 使用三维建模的面部识别验证
    • US07421097B2
    • 2008-09-02
    • US10446521
    • 2003-05-27
    • Rida M. HamzaMichael E. BazakosMurray J. Cooper
    • Rida M. HamzaMichael E. BazakosMurray J. Cooper
    • G06K9/00G06K5/00G05B19/00
    • G06K9/00288G06K9/00201
    • A checkpoint screening system uses multiple cameras to provide images at different angles of a person to be screened. Different features extracted from the images at different angles are compared to a profile associated with the person to be screened. In one embodiment, the person first provides an ID, such as a drivers license or other identification, and the profile is retrieved. If a match is detected, the person may continue through the checkpoint. If no match is detected, the person may be directed to a different path through the checkpoint for further verification of identity. A registration process is used to enroll members and obtain a member profile. Three camera angles are utilized to provide a three dimensional image. Each image is independently compared against the profile and the decisions from such comparisons are weighted. The profile is regressively updated and weighted if a match is detected.
    • 检查点筛选系统使用多个摄像机提供要被屏蔽的人的不同角度的图像。 将从不同角度的图像提取的不同特征与与被筛选的人相关联的简档进行比较。 在一个实施例中,人首先提供诸如驾驶执照或其他标识的ID,并且检索简档。 如果检测到匹配,则该人可以继续通过检查点。 如果没有检测到匹配,则可以通过检查点将该人引导到不同的路径以进一步验证身份。 注册过程用于注册会员并获取会员资料。 利用三个摄像机角度来提供三维图像。 每个图像独立地与轮廓进行比较,并且来自这种比较的决定被加权。 如果检测到匹配,则配置文件将进行递归更新和加权。
    • 3. 发明授权
    • Distance iris recognition
    • 距离虹膜识别
    • US08285005B2
    • 2012-10-09
    • US12539278
    • 2009-08-11
    • Rida M. Hamza
    • Rida M. Hamza
    • G06K9/00
    • G06K9/0061G06K9/00597
    • A system for one dimensional segmentation of an iris of an eye into a map of the iris and classification of the map into unaffected areas and affected areas. Also, the system may provide for regular shape fitting of the areas for normalization and identifying the unaffected areas as symmetric segments. Further, the system may assign weights to the unaffected areas and the affected areas of the map of the iris and an enrolled map of an iris and their corresponding bins for matching purposes.
    • 用于将虹膜虹膜一维分割成虹膜图并将其分类为不受影响区域和受影响区域的系统。 此外,系统可以提供用于规范化的区域的规则形状拟合,并将未受影响区域识别为对称段。 此外,系统可以为虹膜的地图的不受影响的区域和受影响的区域以及虹膜的注册地图及其相应的箱分配权重用于匹配目的。
    • 6. 发明授权
    • Invariant radial iris segmentation
    • 不变径向虹膜分割
    • US08442276B2
    • 2013-05-14
    • US11372854
    • 2006-03-10
    • Rida M. Hamza
    • Rida M. Hamza
    • G06K9/00
    • G06K9/0061
    • A method and computer product are presented for identifying a subject by biometric analysis of an eye. First, an image of the iris of a subject to be identified is acquired. Texture enhancements may be done to the image as desired, but are not necessary. Next, the iris image is radially segmented into a selected number of radial segments, for example 200 segments, each segment representing 1.8° of the iris scan. After segmenting, each radial segment is analyzed, and the peaks and valleys of color intensity are detected in the iris radial segment. These detected peaks and valleys are mathematically transformed into a data set used to construct a template. The template represents the subject's scanned and analyzed iris, being constructed of each transformed data set from each of the radial segments. After construction, this template may be stored in a database, or used for matching purposes if the subject is already registered in the database.
    • 提出了一种方法和计算机产品,用于通过眼睛的生物特征分析识别受试者。 首先,获取待识别对象的虹膜的图像。 可以根据需要对图像进行纹理增强,但不是必需的。 接下来,虹膜图像被径向分割成选定数量的径向段,例如200个段,每个段表示虹膜扫描的1.8°。 分割后,分析每个径向段,并在虹膜径向段中检测出颜色强度的峰谷。 这些检测到的峰和谷在数学上被转换成用于构建模板的数据集。 模板表示受试者的扫描和分析的虹膜,由每个径向片段的每个变换数据组构成。 施工完成后,该模板可能存储在数据库中,或者如果主题已经在数据库中注册,则可用于匹配目的。
    • 7. 发明授权
    • Systems and methods for recognizing a target from a moving platform
    • 从移动平台识别目标的系统和方法
    • US08320615B2
    • 2012-11-27
    • US12329276
    • 2008-12-05
    • Rida M. HamzaMohammed Ibrahim Mohideen
    • Rida M. HamzaMohammed Ibrahim Mohideen
    • G06K9/62
    • G06K9/00798G06T7/13G06T7/74
    • Systems and methods for recognizing a location of a target are provided. One system includes a camera configured to generate first data representing an object resembling the target, a memory storing second data representing a template of the target, and a processor. The processor is configured to receive the first data and the second data, and determine that the object is the target if the object matches the template within a predetermined percentage error. A method includes receiving first data representing an object resembling the target, receiving second data representing a template of the target, and determining that the object is the target if the object matches the template within a predetermined percentage error. Also provided are computer-readable mediums including processor instructions for executing the above method.
    • 提供了用于识别目标位置的系统和方法。 一个系统包括被配置为生成表示类似于目标的对象的第一数据的相机,存储表示目标的模板的第二数据的存储器和处理器。 处理器被配置为接收第一数据和第二数据,并且如果对象在预定百分比误​​差内匹配模板,则确定对象是目标。 一种方法包括接收表示类似于目标的对象的第一数据,接收表示目标的模板的第二数据,并且如果对象在预定百分比误​​差内与模板匹配,则确定对象是目标。 还提供了包括用于执行上述方法的处理器指令的计算机可读介质。