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    • 1. 发明授权
    • Method of analysis, abstraction, and delivery of electronic information
    • 电子信息的分析,抽象和交付方法
    • US07613731B1
    • 2009-11-03
    • US10857550
    • 2004-05-28
    • Craig Larson
    • Craig Larson
    • G06F17/00G06F17/30G09B17/00
    • G06F17/30716G06F17/212G06F17/241G06F17/27Y10S707/99936Y10S707/99945Y10S707/99948
    • This invention is a method of analyzing and preparing electronic text in such a way as to set values for each word in terms of recognizability, comprehensibility, and parts of speech for later emphasis and marking for printing or display on an electronic device. When used on electronic display devices it further employs methods which permit the user to limit eye movement by displaying such text one or a few words at a time. This invention also enhances the ability of small electronic devices to display textual information by providing a method of display which is more suitable for small display areas. The invention is made up of two sections. The first analyzes the text to be displayed and grades each word in such a way as to substantially anticipate the difficulty in understanding each word the reader will have when it subsequently is displayed. The first section then tags each word with several values creating a file which can then be read by the second section which then uses the tags to determine how the word is to be displayed. Emphasis and de-emphasis is provided through length of display, color, size, and opacity. Provision is also made for the inclusion of graphics, videos, and audio.
    • 本发明是一种分析和准备电子文本的方法,以便在可识别性,可理解性和词性等方面设定每个单词的值,以便稍后重点和在电子设备上打印或显示的标记。 当在电子显示装置上使用时,它还采用允许用户通过一次显示一个或几个单词来限制眼睛运动的方法。 本发明还通过提供更适合于小显示区域的显示方法来增强小型电子设备显示文本信息的能力。 本发明由两部分组成。 首先分析要显示的文本,并以这样的方式对每个单词进行分级,以便基本上预期在随后显示读者时将难以理解读者将具有的每个单词。 第一部分然后用多个值对每个单词进行标记,创建一个文件,然后可以由第二部分读取该文件,然后使用标签来确定该单词将如何显示。 通过显示,颜色,大小和不透明度的长度来提供强调和去重视。 还规定了包括图形,视频和音频。
    • 2. 发明申请
    • METHODS AND SYSTEMS FOR MANAGING COMPUTER SYSTEM CONFIGURATION DATA
    • 用于管理计算机系统配置数据的方法和系统
    • US20070130437A1
    • 2007-06-07
    • US11550668
    • 2006-10-18
    • Craig LarsonDavid AllenLinda HapgoodTimothy Mitchell
    • Craig LarsonDavid AllenLinda HapgoodTimothy Mitchell
    • G06F13/00
    • G08G5/00
    • Methods and systems for managing computer system configuration data are provided. The method includes staging the configuration data in a staging memory accessible to a first application, selecting a path for a transfer of the configuration data from the staging memory to a target memory, emulating a hardware data loader using a second software application adapted to control a transfer of the configuration data from the staging memory to the target memory, and transferring the configuration data from the staging memory to the target memory using the emulator. The method further effectively expands a memory capacity of a Flight Management Computer by providing swappable memory capacity such that a re-certification to Federal Aviation Administration standards of the Flight Management Computer is not triggered.
    • 提供了管理计算机系统配置数据的方法和系统。 该方法包括在第一应用可访问的分段存储器中分配配置数据,选择用于将配置数据从分段存储器传送到目标存储器的路径,使用适于控制第一应用的第二软件应用仿真硬件数据加载器 将配置数据从暂存存储器传送到目标存储器,以及使用仿真器将配置数据从暂存存储器传送到目标存储器。 该方法通过提供可交换的存储器容量来进一步有效地扩展飞行管理计算机的存储器容量,使得不触发飞行管理计算机的联邦航空管理局标准的重新认证。
    • 5. 发明授权
    • Authentication system using one-time passwords
    • 验证系统使用一次性密码
    • US5661807A
    • 1997-08-26
    • US516889
    • 1995-08-18
    • Richard Henry GuskiRaymond Craig LarsonStephen Michael Matyas, Jr.Donald Byron JohnsonDon Coppersmith
    • Richard Henry GuskiRaymond Craig LarsonStephen Michael Matyas, Jr.Donald Byron JohnsonDon Coppersmith
    • G09C1/00G06F1/00G06F21/00H04L9/32H04L12/22H04L29/06H04L9/00
    • H04L63/0838G06F21/31H04L12/22H04L63/0846H04L9/0822H04L9/088H04L9/0894H04L9/3228H04L2209/20
    • A system for authenticating a user located at a requesting node to a resource such as a host application located at an authenticating node using one-time passwords that change pseudorandomly with each request for authentication. At the requesting node a non-time-dependent value is generated from nonsecret information identifying the user and the host application, using a secret encryption key shared with the authenticating node. The non-time-dependent value is combined with a time-dependent value to generate a composite value that is encrypted to produce an authentication parameter. The authentication parameter is reversibly transformed into an alphanumeric character string that is transmitted as a one-time password to the authenticating node. At the authenticating node the received password is transformed back into the corresponding authentication parameter, which is decrypted to regenerate the composite value. The non-time-dependent value is replicated at the authenticating node using the same nonsecret information and encryption key shared with the requesting node. The locally generated non-time-dependent value is combined with the regenerated composite value to regenerate the time-dependent value. The user is authenticated if the regenerated time-dependent value is within a predetermined range of a time-dependent value that is locally generated at the authenticating node.
    • 一种用于将位于请求节点处的用户的身份认证给诸如位于认证节点的主机应用的资源的系统,该系统使用与每个认证请求伪随机地改变的一次性密码。 在请求节点,使用与认证节点共享的秘密加密密钥,从识别用户和主机应用的非秘密信息生成非时间依赖值。 将非时间依赖值与时间相关的值组合以生成被加密以产生认证参数的复合值。 验证参数可逆地转换成以一次性密码的形式发送给认证节点的字母数字字符串。 在认证节点,将接收到的密码转换回相应的认证参数,对其进行解密,以重新生成复合值。 使用与请求节点共享的相同的非秘密信息和加密密钥在认证节点上复制非时间依赖值。 将本地生成的非时间依赖值与再生的复合值组合以再生时间依赖值。 如果再生的时间依赖值在认证节点处本地生成的与时间有关的值的预定范围内,则认证用户。