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    • 1. 发明授权
    • Adaptive edge-implemented traffic policy in a data processing network
    • 数据处理网络中的自适应边缘实现流量策略
    • US08958295B2
    • 2015-02-17
    • US13618877
    • 2012-09-14
    • Marc SullivanSteven BelzJames Pratt
    • Marc SullivanSteven BelzJames Pratt
    • H04L12/26H04L12/801H04L12/813H04L12/851H04L12/841H04L12/823
    • H04L47/10H04L47/20H04L47/2441H04L47/28H04L47/32
    • In one aspect, a disclosed method of processing a network packet received by an edge device from a client in a data processing network includes determining a priority category of the network packet when the priority category is indicative of a priority associated with the packet. The method further includes determining a value of a traffic state parameter. The traffic state parameter indicates a level of traffic activity in a backbone network to which the edge device is connected. A traffic policy is then determined that is applicable to the level of traffic activity and the priority category of the network packet. The network packet is then blocked from traversing or permitted to traverse the network packet edge device based on the determined traffic policy. Determining the priority category may include determining a transport protocol port number of the network packet.
    • 在一个方面,一种公开的处理由边缘设备从数据处理网络中的客户端接收的网络分组的方法包括当优先级类别指示与分组相关联的优先级时确定网络分组的优先级类别。 该方法还包括确定业务状态参数的值。 流量状态参数表示边缘设备连接到的骨干网络中的流量活动级别。 然后确定适用于网络分组的流量活动级别和优先级类别的流量策略。 然后基于所确定的流量策略,阻止网络分组穿越或允许网络分组边缘设备穿越网络分组边缘设备。 确定优先级类别可以包括确定网络分组的传输协议端口号。
    • 2. 发明授权
    • Systems, methods, and computer program products for user authentication
    • 用于用户认证的系统,方法和计算机程序产品
    • US08504831B2
    • 2013-08-06
    • US12961590
    • 2010-12-07
    • James PrattSteven BelzMarc Sullivan
    • James PrattSteven BelzMarc Sullivan
    • H04L9/32
    • G06F21/40G06F21/45G06F2221/2103H04L9/3271H04L63/08H04L63/105H04L63/107H04L63/126H04L2209/60H04L2209/805
    • Responsive to receiving an authentication request from a device, an authentication server determines a confidence level for the authentication request, generates a confidence-weighted challenge to the authentication request. The confidence-weighted challenge being weighted based upon a confidence level. The authentication server, responsive to receiving a challenge response to the confidence-weighted challenge from the device, determines whether to authenticate the user based upon the challenge response. If the authentication server determines that the challenge response satisfies an expected response known to the authentication server, the authentication server permits authentication of the user to access the device. If the authentication server determines the challenge response does not satisfy the expected response known to the authentication server, the authentication server denies authentication of the user to access the device.
    • 响应于从设备接收认证请求,认证服务器确定认证请求的置信度,对认证请求生成置信加权质询。 基于置信水平加权的置信加权挑战。 认证服务器响应于从设备接收到对置信加权挑战的挑战响应,基于挑战响应确定是否验证用户。 如果认证服务器确定质询响应满足认证服务器已知的预期响应,则认证服务器允许用户认证访问设备。 如果认证服务器确定质询响应不满足认证服务器已知的预期响应,则认证服务器拒绝用户对该设备的认证。
    • 4. 发明申请
    • USAGE DATA MONITORING AND COMMUNICATION BETWEEN MULTIPLE DEVICES
    • 在多个设备之间使用数据监控和通信
    • US20100121744A1
    • 2010-05-13
    • US12267297
    • 2008-11-07
    • Steven BelzJames PrattMarc Sullivan
    • Steven BelzJames PrattMarc Sullivan
    • G06Q10/00G06F15/16G06F7/06G06F17/30
    • H04M15/00G06Q40/12H04M15/57H04M15/58H04M15/765H04M15/7652H04M15/8083
    • A system and method for by which real-time monitoring and communication of usage data is conducted between a set of N numbered of devices where N is and integer. According to an embodiment, a communication network provides a common core architecture in which the devices connected to the system are converged regardless of their access network requirements or functional capacity. The system has the capacity to monitor and analyze all the usage information of each device connected to the system in regards to content, identity, type, quality, quantity, time, status, activity level, and metadata associated with the functions and applications utilized on a device. The analysis is further based on information governing a subscriber's devices, preferences, and features held in a subscriber database integrated within the system. The analyzed usage data is further processed through a variety of applications in order to generate a response, such as; a report, an alarm, or tailored options for interacting with the generating device which is deliverable in any format within the capacity of the receiving device including all multimedia aspects and non-multimedia aspects. The system further communicates the response in real-time to any device within the set as designated by the subscriber. In another aspect of the invention, the analyzed usage data can be stored for on demand requests of a communication response from past analysis.
    • 一种系统和方法,用于在N个和N个整数的设备的N组中进行使用数据的实时监控和通信。 根据实施例,通信网络提供共同的核心架构,其中连接到系统的设备被融合,而不管其接入网络要求或功能容量如何。 该系统能够监视和分析与内容,身份,类型,质量,数量,时间,状态,活动级别和与使用的功能和应用程序相关的元数据的连接到系统的每个设备的所有使用信息 一个装置。 该分析还基于管理在系统内集成的订户数据库中保存的订户的设备,偏好和特征的信息。 分析的使用数据通过各种应用进一步处理,以产生响应,例如; 用于与生成装置进行交互的报告,报警或定制选项,所述生成装置可以在包括所有多媒体方面和非多媒体方面的接收装置的容量内以任何格式递送。 该系统进一步将响应实时地传送到用户指定的集合内的任何设备。 在本发明的另一方面,分析的使用数据可以被存储用于来自过去分析的通信响应的按需请求。
    • 5. 发明申请
    • Adaptive Edge-Implemented Traffic Policy in a Data Processing Network
    • 数据处理网络中的自适应边缘实现流量策略
    • US20090180377A1
    • 2009-07-16
    • US12013995
    • 2008-01-14
    • Marc SullivanSteven BelzJames Pratt
    • Marc SullivanSteven BelzJames Pratt
    • H04L12/56
    • H04L47/10H04L47/20H04L47/2441H04L47/28H04L47/32
    • In one aspect, a disclosed method of processing a network packet received by an edge device from a client in a data processing network includes determining a priority category of the network packet when the priority category is indicative of a priority associated with the packet. The method further includes determining a value of a traffic state parameter. The traffic state parameter indicates a level of traffic activity in a backbone network to which the edge device is connected. A traffic policy is then determined that is applicable to the level of traffic activity and the priority category of the network packet. The network packet is then blocked from traversing or permitted to traverse the network packet edge device based on the determined traffic policy. Determining the priority category may include determining a transport protocol port number of the network packet.
    • 在一个方面,一种公开的处理由边缘设备从数据处理网络中的客户端接收的网络分组的方法包括当优先级类别指示与分组相关联的优先级时确定网络分组的优先级类别。 该方法还包括确定业务状态参数的值。 流量状态参数表示边缘设备连接到的骨干网络中的流量活动级别。 然后确定适用于网络分组的流量活动级别和优先级类别的流量策略。 然后基于所确定的流量策略,阻止网络分组穿越或允许网络分组边缘设备穿越网络分组边缘设备。 确定优先级类别可以包括确定网络分组的传输协议端口号。
    • 9. 发明申请
    • Human Stimulus Activation and Deactivation of a Screensaver
    • 人类刺激激活和屏幕保护程序的禁用
    • US20100153764A1
    • 2010-06-17
    • US12334377
    • 2008-12-12
    • James PrattMarc SullivanSteven Belz
    • James PrattMarc SullivanSteven Belz
    • G06F1/32G06F3/048
    • G06F3/0484G06F1/3203G06F3/011G06F3/013G06F3/0482
    • Devices and methods are disclosed which relate to an electronic device having a human stimulus receptor which, when activated, suspends activation of a screensaver. The screensaver is activated to conserve the power and life of the electronic device. When latently viewing the electronic device, however, the human stimulus receptor is activated. A countdown starts counting down a pre-determined amount of time once the human stimulus receptor is inactive. At the expiration of the countdown, the screensaver is activated. The human stimulus receptor responds to skin conductivity, natural muscular twitch, pulse, skin temperature, and/or eye movement. Only when the electronic device no longer detects any of these human stimuli will the countdown begin. A user may set the predetermined amount of time.
    • 公开了涉及具有人类刺激受体的电子装置的装置和方法,其在被激活时暂停屏幕保护程序的激活。 屏幕保护程序被激活以节省电子设备的功率和寿命。 然而,当潜在地观察电子装置时,人体刺激受体被激活。 一旦人类刺激受体无效,倒计时开始计数预定量的时间。 在倒计时结束时,屏幕保护程序被激活。 人类刺激受体对皮肤电导率,自然肌肉抽搐,脉搏,皮肤温度和/或眼睛运动有反应。 只有当电子设备不再检测到任何这些人类刺激时才会开始倒计时。 用户可以设定预定的时间量。