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    • 1. 发明申请
    • IDENTIFICATION WITH RFID ASSET LOCATOR FOR ENTRY AUTHORIZATION
    • 识别RFID资产定位器进行授权
    • WO2006014863A1
    • 2006-02-09
    • PCT/US2005/026292
    • 2005-07-21
    • HONEYWELL INTERNATIONAL INC.DETERMAN, Gary, E.ANDERSON, Bruce, W.
    • DETERMAN, Gary, E.ANDERSON, Bruce, W.
    • G07C9/00
    • G07C9/00103G07C9/00087G07C9/00111
    • A system for controlling access at secure facilities to locations and assets contained in those locations, comprising a biometric identification device, an RFID tag and receiver, and a database for processing information from them to allow or deny access to the locations and assets. The system ties into an existing network in the facility and also includes a programming device for evaluation of the biometric template and acknowledgement of the identification, if made. The system also controls the permissible locations of assets such as laptops, desktop computers, photographic equipment, weapons such as rifles, data storage devices and the like, such that while a person may have access to a location, use of an asset or removal of the asset may not be part of that person's authorized conduct.
    • 一种用于控制安全设施对包含在这些位置中的位置和资产的访问的系统,包括生物识别装置,RFID标签和接收器,以及用于处理来自它们的信息以允许或拒绝访问位置和资产的数据库。 该系统与设施中的现有网络相关联,并且还包括用于评估生物特征模板的编程设备和如果进行的识别的确认。 该系统还控制诸如笔记本电脑,台式计算机,照相设备,诸如步枪,数据存储设备等武器的资产的允许位置,使得当一个人可以访问位置时,使用资产或移除 该资产可能不属于该人授权行为的一部分。
    • 5. 发明申请
    • SECURITY ALARM NOTIFICATION USING IRIS DETECTION SYSTEMS
    • 使用IRIS检测系统的安全报警通知
    • WO2006041919A1
    • 2006-04-20
    • PCT/US2005/035824
    • 2005-10-05
    • HONEYWELL INTERNATIONAL INC.DETERMAN, Gary, E.
    • DETERMAN, Gary, E.
    • G06K9/00G07C9/00G07F7/10
    • G06Q20/40145G06K9/00335G06K9/00597G07C9/00158G07F7/1008
    • Biometric iris detection systems are adaptable for control of alarm conditions through the systems scanner or reader by physical actions of a user's eye and/or eyelid. An alarm condition can be set in a biometric iris detection system following a predetermined blinking pattern by a user's eyelid. An alarm condition also can be set in a biometric iris detection system following closure of a user's eyelid for a predetermined time following user identification/acceptance by the system. An alarm condition can following a predetermined movement patter of a user's eyeball (e.g., a user looks at a particular area, or areas, within a biometric reader, e.g., upper left, upper right, lower left, lower right, during user identification and acceptance procedures. The embodiments of the present invention can be carried out using biometric iris detection hardware and image processing/control software.
    • 生物特征虹膜检测系统适用于通过系统扫描仪或读取器通过用户的眼睛和/或眼睑的物理动作来控制报警状况。 可以通过用户的眼睑在预定的闪烁图案之后的生物测定光圈检测系统中设置报警条件。 在系统的用户识别/接受之后,在用户的眼皮闭合预定时间之后,生物测定光圈检测系统中也可以设置报警条件。 报警条件可以遵循用户眼球的预定移动模式(例如,用户在生物识别读取器内观察特定区域或区域,例如左上,右上,左下,右下,用户识别期间, 本发明的实施例可以使用生物识别虹膜检测硬件和图像处理/控制软件进行。
    • 6. 发明申请
    • DYNAMIC CORRELATION EXTENSION FOR A SELF-BALANCING ROTATABLE APPARATUS
    • 自平衡可旋转装置的动态相关延伸
    • WO2003023350A1
    • 2003-03-20
    • PCT/US2002/028648
    • 2002-09-10
    • HONEYWELL INTERNATIONAL INC.
    • DETERMAN, Gary, E.
    • G01M1/22
    • 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。