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    • 1. 发明申请
    • SYSTEM AND METHOD FOR ANONYMOUS BIOMETRICS ANALYSIS
    • 用于无生物量分析的系统和方法
    • US20130016883A1
    • 2013-01-17
    • US13182310
    • 2011-07-13
    • Rand P. WhillockGary Edward DetermanVincent JacobsonSharath VenkateshaPedro Davalos
    • Rand P. WhillockGary Edward DetermanVincent JacobsonSharath VenkateshaPedro Davalos
    • G06K9/00
    • G06K9/00G06F21/32G06K9/00885
    • A system receives an identification number from a subject. The system retrieves a biometric measurement from a database using the identification number. The database includes biometric measurements of a plurality of subjects. Each biometric measurement is determined from a location of a particular subject's body, each biometric measurement is associated with a particular identification number, and each particular identification number is associated with a particular subject. When the use of the identification number results in a retrieval of a biometric measurement from the biometric database, the system searches a plurality of locations on the subject and takes biometric measurements at the locations, compares the retrieved biometric measurement from the biometric database with the biometric measurements of the subject, and indicates that the retrieved biometric measurement from the biometric database matches one or more of the biometric measurements from the subject or that the retrieved biometric measurement from the biometric database does not match any of the biometric measurements from the subject. In an embodiment, the system is used for verification purposes, not identification purposes.
    • 系统从主体接收识别号码。 系统使用标识号从数据库中检索生物测量。 数据库包括多个对象的生物测量。 每个生物特征测量从特定受试者的身体的位置确定,每个生物特征测量与特定的标识号相关联,并且每个特定的标识号与特定的对象相关联。 当使用识别号导致从生物特征数据库检索生物特征测量值时,系统搜索对象上的多个位置并在该位置进行生物测量,比较生物特征数据库中检索到的生物测量与生物特征数据 并且指示来自生物测定数据库的所检索的生物测量结果匹配来自受试者的一个或多个生物特征测量值,或者来自生物特征数据库的检索到的生物测量结果与来自受试者的任何生物测量结果不匹配。 在一个实施例中,该系统用于验证目的,而不是识别目的。
    • 2. 发明申请
    • METHOD AND SYSTEM FOR IRIS IMAGE CAPTURE
    • 用于IRIS图像捕获的方法和系统
    • US20110304721A1
    • 2011-12-15
    • US12797355
    • 2010-06-09
    • Gary Edward DetermanJan Jelinek
    • Gary Edward DetermanJan Jelinek
    • H04N7/18
    • H04N5/23212
    • According to one example embodiment, a process and system include a camera used to capture a sequence of illuminated images of an subject, wherein the images are stored in frames. The focus point is changed for each image captured so that the focus point sweeps from a far to a near end of a sweep range, in discrete steps or continuous motion, so that successive images have slightly overlapping depths of field. The sweep range and overlapping depths of field provide that at least one image is well focused on the iris of the eye of the subject. In one other example embodiment, one or more of the images are illumined with a illumination fired for a respective captured image. In another embodiment, the sweep range is determined at least in part using a range finder or is otherwise controlled to determine a position of the subject so that the sweep range starts and stops a desired distance in front of and behind the subject, respectively.
    • 根据一个示例性实施例,过程和系统包括用于捕获被摄体的一系列照明图像的照相机,其中图像以帧的形式存储。 对于所拍摄的每个图像,对焦点被改变,使得对焦点以离散步骤或连续运动从扫描范围的远端扫到近端,使得连续的图像具有稍微重叠的景深。 扫描范围和重叠的景深提供至少一个图像很好地集中在被摄体的眼睛的虹膜上。 在另一个示例性实施例中,一个或多个图像被照射,照射为相应的拍摄图像。 在另一个实施例中,扫描范围至少部分地使用测距仪来确定,或者否则被控制以确定对象的位置,使得扫描范围分别开始并停止在被摄体前面和后面的期望距离。
    • 3. 发明申请
    • SECURE TRANSACTION SYSTEM AND METHOD BASED ON BIOMETRIC IDENTIFICATION
    • 基于生物识别的安全交易系统和方法
    • US20110153497A1
    • 2011-06-23
    • US12643514
    • 2009-12-21
    • Gary Edward Determan
    • Gary Edward Determan
    • G06Q40/00G06K9/00G06F3/033G06F3/02
    • H04L63/0861G06F21/32G06F2203/0336G06K9/00013G06Q20/40
    • A secure transaction system and method based on biometric identification. One or more biometric sensors (e.g., a fingerprint sensor) can be electronically connected to an input device having one or more operable keys, wherein the input device communicates with the secure transaction system to determine the identity of a user. A biometric feature (e.g., a fingerprint) can be captured and measured, if the operable key is pressed. A biometric signal indicative of the sensed biometric feature can be transmitted to a biometric identification module via a network to compare the biometric signal with stored biometric data. An authentication signal can be provided to the user for accessing a secure application that is communicatively coupled to the transaction system if the sensed biometric signal matches the stored biometric data.
    • 一种基于生物识别的安全交易系统和方法。 一个或多个生物测定传感器(例如,指纹传感器)可以电连接到具有一个或多个可操作键的输入设备,其中输入设备与安全交易系统通信以确定用户的身份。 如果按下可操作的键,则可以捕获和测量生物特征(例如,指纹)。 指示感测到的生物特征的生物特征信号可以经由网络传输到生物特征识别模块,以将生物特征信号与存储的生物统计数据进行比较。 如果感测到的生物测定信号与所存储的生物特征数据匹配,则可以向用户提供认证信号以访问通信地耦合到交易系统的安全应用。
    • 4. 发明授权
    • Dynamic correlation extension for a self-balancing rotatable apparatus
    • 自平衡可旋转装置的动态相关延伸
    • US06622105B2
    • 2003-09-16
    • US09951932
    • 2001-09-10
    • Gary Edward Determan
    • Gary Edward Determan
    • G01F112
    • D06F37/225G01M1/225G01M1/32G01M1/323
    • A method and system for detecting acceleration and force data associated with a rotating device or rotating system is disclosed, which includes a sine table and a cosine table that may be created based on a particular number of measured data points per revolution of the rotating device or rotating system. Data contained within the sine and cosine tables are then dynamically correlated to obtain acceleration and force data associated with the rotating device or rotating system, wherein dynamically correlated data are thereby utilized to determine a required correction necessary to place the rotating device or rotating system in a balanced state. An error calculated based on a sample size and the number of samples obtained since a last index pulse can be utilized to compute the validity of the data. An index may be associated with the sine table and an additional index associated with the cosine table, wherein each of the indexes is formulated based on an angle per index based on the particular number of measured data points divided by 360 degrees. At least one sine element and at least one cosine element may be respectively calculated for the index associated with the sine table and the index associated with the cosine table. The sine and cosine tables can be combined into one table to thereby reduce memory required to dynamically correlate the data contained within the sine and cosine tables.
    • 公开了一种用于检测与旋转装置或旋转系统相关联的加速度和力数据的方法和系统,其包括可以基于旋转装置的每转一定数量的测量数据点而创建的正弦表和余弦表,或者 旋转系统。 包含在正弦和余弦表内的数据然后被动态相关以获得与旋转装置或旋转系统相关联的加速度和力数据,其中动态相关数据由此用于确定将旋转装置或旋转系统放置在 平衡状态。 可以利用基于样本大小和从最后一个索引脉冲获得的样本数计算的误差来计算数据的有效性。 索引可以与正弦表相关联,以及与余弦表相关联的附加索引,其中每个索引基于基于被测量数据点的特定数量除以360度的每个索引的角度来制定。 可以分别针对与正弦表相关联的索引和与余弦表相关联的索引分别计算至少一个正弦元素和至少一个余弦元素。 正弦和余弦表可以组合成一个表,从而减少动态关联正弦和余弦表中包含的数据所需的内存。
    • 5. 发明授权
    • System and method for anonymous biometrics analysis
    • 用于匿名生物识别分析的系统和方法
    • US09020208B2
    • 2015-04-28
    • US13182310
    • 2011-07-13
    • Rand P. WhillockGary Edward DetermanVincent JacobsonSharath VenkateshaPedro Davalos
    • Rand P. WhillockGary Edward DetermanVincent JacobsonSharath VenkateshaPedro Davalos
    • G06K9/00G06F21/32
    • G06K9/00G06F21/32G06K9/00885
    • A system receives an identification number from a subject. The system retrieves a biometric measurement from a database using the identification number. The database includes biometric measurements of a plurality of subjects. Each biometric measurement is determined from a location of a particular subject's body, each biometric measurement is associated with a particular identification number, and each particular identification number is associated with a particular subject. When the use of the identification number results in a retrieval of a biometric measurement from the biometric database, the system searches a plurality of locations on the subject and takes biometric measurements at the locations, compares the retrieved biometric measurement from the biometric database with the biometric measurements of the subject, and indicates that the retrieved biometric measurement from the biometric database matches one or more of the biometric measurements from the subject or that the retrieved biometric measurement from the biometric database does not match any of the biometric measurements from the subject. In an embodiment, the system is used for verification purposes, not identification purposes.
    • 系统从主体接收识别号码。 系统使用标识号从数据库中检索生物测量。 数据库包括多个对象的生物测量。 每个生物特征测量从特定受试者的身体的位置确定,每个生物特征测量与特定的标识号相关联,并且每个特定的标识号与特定的对象相关联。 当使用识别号导致从生物特征数据库检索生物特征测量值时,系统搜索对象上的多个位置并在该位置进行生物测量,比较生物特征数据库中检索到的生物测量与生物特征数据 并且指示来自生物测定数据库的所检索的生物测量结果匹配来自受试者的一个或多个生物特征测量值,或者来自生物特征数据库的检索到的生物测量结果与来自受试者的任何生物测量结果不匹配。 在一个实施例中,该系统用于验证目的,而不是识别目的。
    • 6. 发明授权
    • Method and system for iris image capture
    • 虹膜图像捕获方法和系统
    • US08957956B2
    • 2015-02-17
    • US12797355
    • 2010-06-09
    • Gary Edward DetermanJan Jelinek
    • Gary Edward DetermanJan Jelinek
    • H04N7/18H04N5/232
    • H04N5/23212
    • According to one example embodiment, a process and system include a camera used to capture a sequence of illuminated images of an subject, wherein the images are stored in frames. The focus point is changed for each image captured so that the focus point sweeps from a far to a near end of a sweep range, in discrete steps or continuous motion, so that successive images have slightly overlapping depths of field. The sweep range and overlapping depths of field provide that at least one image is well focused on the iris of the eye of the subject. In one other example embodiment, one or more of the images are illumined with a illumination fired for a respective captured image. In another embodiment, the sweep range is determined at least in part using a range finder or is otherwise controlled to determine a position of the subject so that the sweep range starts and stops a desired distance in front of and behind the subject, respectively.
    • 根据一个示例性实施例,过程和系统包括用于捕获被摄体的一系列照明图像的照相机,其中图像以帧的形式存储。 对于所拍摄的每个图像,对焦点被改变,使得对焦点以离散步骤或连续运动从扫描范围的远端扫到近端,使得连续的图像具有稍微重叠的景深。 扫描范围和重叠的景深提供至少一个图像很好地集中在被摄体的眼睛的虹膜上。 在另一个示例性实施例中,一个或多个图像被照射,照射为相应的拍摄图像。 在另一个实施例中,扫描范围至少部分地使用测距仪来确定,或者否则被控制以确定对象的位置,使得扫描范围分别开始并停止在被摄体前面和后面的期望距离。