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    • 4. 发明申请
    • Customized remote access to imaging node front panels
    • 定制远程访问成像节点前面板
    • US20090066710A1
    • 2009-03-12
    • US11899421
    • 2007-09-06
    • Rabindra Pathak
    • Rabindra Pathak
    • G09G5/00
    • H04L67/36H04L67/04
    • Methods and systems for customized remote access to imaging node front panels offer improvements in the areas of unified access, on-screen viewing and comprehension of front panels delivered by diverse imaging nodes to remote client nodes. The imaging nodes may be diverse, for example, in terms of message formats used to deliver front panel data, screen resolution assumptions implicit in front panel data and languages in which front panel data are delivered. Customization is provided, in some embodiments, by a server node that intermediates between the imaging nodes and the client nodes.
    • 用于定制远程访问成像节点前面板的方法和系统在统一访问,屏幕观看和各种成像节点传递到远程客户端节点的前面板的理解方面提供了改进。 成像节点可以是不同的,例如,在用于传送前面板数据的消息格式,前面板数据中隐含的屏幕分辨率假设和其中传送前面板数据的语言方面。 在一些实施例中,通过在成像节点和客户机节点之间进行中介的服务器节点来提供定制。
    • 7. 发明授权
    • Customized remote access to imaging node front panels
    • 定制远程访问成像节点前面板
    • US08069409B2
    • 2011-11-29
    • US11899421
    • 2007-09-06
    • Rabindra Pathak
    • Rabindra Pathak
    • G06F17/00G06F15/16
    • H04L67/36H04L67/04
    • Methods and systems for customized remote access to imaging node front panels offer improvements in the areas of unified access, on-screen viewing and comprehension of front panels delivered by diverse imaging nodes to remote client nodes. The imaging nodes may be diverse, for example, in terms of message formats used to deliver front panel data, screen resolution assumptions implicit in front panel data and languages in which front panel data are delivered. Customization is provided, in some embodiments, by a server node that intermediates between the imaging nodes and the client nodes.
    • 用于定制远程访问成像节点前面板的方法和系统在统一访问,屏幕观看和各种成像节点传递到远程客户端节点的前面板的理解方面提供了改进。 成像节点可以是不同的,例如,在用于传送前面板数据的消息格式,前面板数据中隐含的屏幕分辨率假设和其中传送前面板数据的语言方面。 在一些实施例中,通过在成像节点和客户机节点之间进行中介的服务器节点来提供定制。
    • 8. 发明申请
    • SECURE SYSTEM FOR NON-COVERT USER AUTHENTICATION AND IDENTIFICATION
    • 非覆盖用户认证和识别的安全系统
    • US20100073126A1
    • 2010-03-25
    • US12328878
    • 2008-12-05
    • Philippe MorinRabindra Pathak
    • Philippe MorinRabindra Pathak
    • G05B19/00
    • G06F21/36
    • A secure system for user authentication comprised of an authentication interface having a character dial and alignment markers is provided. A passcode input module receives user commands to move the character dial with respect to the alignment markers and to record a configuration of the characters with respect to the alignment markers, thereby creating alignment configuration data. A passcode generation module receives at least one of said alignment configuration data from passcode input module and generates a plurality of passcode hypotheses. An authentication module receives the passcode hypotheses and compares the passcode hypotheses with the passcodes of registered users stored in a data store. The passcode hypotheses are updated after each new alignment configuration data entered by the user. The authentication module authenticates a user upon finding a passcode hypothesis matching a stored passcode.
    • 提供了一种用于用户验证的安全系统,其包括具有字符拨号和对准标记的认证接口。 密码输入模块接收用户命令以相对于对准标记移动字符拨盘,并且记录关于对准标记的字符的配置,由此产生对准配置数据。 密码生成模块从密码输入模块接收所述对准配置数据中的至少一个,并生成多个密码假设。 验证模块接收密码假设,并将密码假设与存储在数据存储器中的注册用户的密码进行比较。 密码假设在用户输入的每个新对齐配置数据后更新。 认证模块在找到匹配存储密码的密码假设时对用户进行认证。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR GRAB AND DROP GESTURE RECOGNITION
    • GRAB和DROP GISTURE识别的系统和方法
    • US20100071965A1
    • 2010-03-25
    • US12325435
    • 2008-12-01
    • Nan HuDavid KryzeRabindra Pathak
    • Nan HuDavid KryzeRabindra Pathak
    • G06F3/044G06F3/041
    • G06F3/044G06F3/0486G06F3/04883
    • X-axis and Y-axis sensor arrays detect hand motion. The array data are processed by a trained model gesture recognizer to discriminate between grab and touch gestures. Touch gestures are further processed using touch point classifier, Hidden Markov Model and peak detector to discriminate between single point touch and multiple point touch. A Kalman tracker analyzes the trajectories of the X and Y axis data to determine how to associate X and Y axis data into ordered pairs corresponding to the touch points. The system resolves ambiguities inherent in certain sensor arrays and will also detect grab and drop gestures where the detected hand is sometimes out of sensor range during the gestural sequence.
    • X轴和Y轴传感器阵列检测手动。 阵列数据由经过训练的模型手势识别器处理以区分抓取和触摸手势。 使用触摸点分类器,隐马尔可夫模型和峰值检测器进一步处理触摸手势,以区分单点触摸和多点触摸。 卡尔曼跟踪器分析X轴和Y轴数据的轨迹,以确定如何将X轴和Y轴数据与对应于触摸点的有序对相关联。 该系统解决了某些传感器阵列固有的歧义,并且还将在手势序列期间检测检测到的手有时不在传感器范围内的抓取和丢弃手势。