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    • 2. 发明授权
    • Using syslog and SNMP for scalable monitoring of networked devices
    • 使用syslog和SNMP可以对网络设备进行可扩展的监控
    • US08604910B2
    • 2013-12-10
    • US11304944
    • 2005-12-13
    • Arthur G. Howarth
    • Arthur G. Howarth
    • H04Q5/22
    • G06K17/00H04Q5/22H04Q2213/13095H04Q2213/13389
    • Methods and devices are provided for determining the status of a networked device. Messages from such devices may include information indicating the health, accuracy and/or reliability of a device and/or of the network that includes the device. Multiple message formats may be supported, e.g., heartbeat only, partial statistics, full statistics, etc. Transmission of such messages may be triggered by the occurrence of various conditions, such as the passage of a predetermined time interval, a predetermined change in one or more criteria, etc. In some implementations, a time-based message throttle establishes a minimum time interval between messages. Messages may be created in a format that is compatible with SNMP. Messages may be transmitted in more than one packet, if necessary. Messages may be sent to one or more devices, e.g., to one or more servers, according to various criteria.
    • 提供了用于确定联网设备的状态的方法和设备。 来自这些设备的消息可以包括指示包括设备的设备和/或网络的健康性,准确性和/或可靠性的信息。 可以支持多种消息格式,例如仅仅是心跳,部分统计,全统计等。这种消息的发送可以通过各种条件的发生来触发,例如预定时间间隔的过去,一个或多个 更多的标准等。在一些实现中,基于时间的消息限幅器建立消息之间的最小时间间隔。 可以使用与SNMP兼容的格式创建消息。 如果需要,消息可以在多个数据包中传输。 可以根据各种标准将消息发送到一个或多个设备,例如,发送到一个或多个服务器。
    • 3. 发明授权
    • Methods and apparatus for determining the status of a device
    • 用于确定设备状态的方法和装置
    • US08249953B2
    • 2012-08-21
    • US10891238
    • 2004-07-13
    • Arthur G. HowarthRajiv Singhal
    • Arthur G. HowarthRajiv Singhal
    • G06Q10/00
    • G06K17/00
    • Methods and devices are provided for determining the status of a networked device, e.g., a networked RFID device. In some embodiments of the invention, a customized packet is used to transmit a “heartbeat” from each of a plurality of networked devices to a server. Some such embodiments use a customized syslog packet for the heartbeats. The heartbeat includes identification information regarding the device, e.g., the unique electronic product code (“EPC”) of the device. The identification information may include other identification and/or authentication information, such as a shared secret and time data, which may be hashed with the identification information. The heartbeat may include information indicating the health, accuracy and/or reliability of the device and/or of the network that includes the device.
    • 提供了用于确定联网设备(例如,联网的RFID设备)的状态的方法和设备。 在本发明的一些实施例中,定制分组被用于从多个联网设备中的每一个向服务器发送“心跳”。 一些这样的实施例使用用于心跳的定制的syslog分组。 心跳包括关于设备的识别信息,例如设备的唯一电子产品代码(“EPC”)。 识别信息可以包括可以与识别信息一起散列的其他标识和/或认证信息,例如共享秘密和时间数据。 心跳可以包括指示包括设备的设备和/或网络的健康性,准确性和/或可靠性的信息。
    • 6. 发明授权
    • Inventory devices and methods
    • 库存设备和方法
    • US08212674B2
    • 2012-07-03
    • US11867623
    • 2007-10-04
    • Arthur G. HowarthPrasad MiriyalaChandrodaya Prasad
    • Arthur G. HowarthPrasad MiriyalaChandrodaya Prasad
    • G08B13/14
    • G06Q10/08
    • In one implementation, a method includes reading first component data from a first tag associated with a first component of a device. The device may be powered on or off. The first component data indicate components associated with the first component at a first time. The method may involve obtaining second component data from a second tag associated with a support structure. The second component data may indicate components disposed in the support structure at a second time. The method may also involve comparing the first component data with the second component data and determining whether the first component data match the second component data.
    • 在一个实现中,一种方法包括从与设备的第一组件相关联的第一标签读取第一分量数据。 设备可以通电或关闭。 第一组件数据指示与第一组件相关联的组件。 该方法可以包括从与支持结构相关联的第二标签获得第二分量数据。 第二组件数据可以指示在第二时间设置在支撑结构中的组件。 该方法还可以包括将第一分量数据与第二分量数据进行比较,并确定第一分量数据是否与第二分量数据匹配。
    • 8. 发明申请
    • PRIVILEGE-BASED ACCESS SYSTEM
    • 基于特权的访问系统
    • US20090038005A1
    • 2009-02-05
    • US11831705
    • 2007-07-31
    • Arthur G. Howarth
    • Arthur G. Howarth
    • G06F21/20
    • H04L63/102G06F2221/2129G06F2221/2141
    • In one embodiment, an apparatus comprises a network interface system and a logic system. The network interface system comprises at least one network interface. The logic system comprises at least one logic device configured to do the following: receive, via the network interface system, task indications that a first person has completed predetermined tasks; ascertain points to award for the predetermined tasks; receive, via the network interface system, an access request to access identified content; determine a number of points required for granting the access request; determine a number of points currently available to the first person; determine whether to grant the access request; and send, via the network interface system, a message to a device indicating whether to grant the access request.
    • 在一个实施例中,一种装置包括网络接口系统和逻辑系统。 网络接口系统包括至少一个网络接口。 逻辑系统包括至少一个被配置为执行以下操作的逻辑设备:经由网络接口​​系统接收第一人已完成预定任务的任务指示; 确定预定任务的奖励点数; 经由所述网络接口系统接收访问所识别的内容的访问请求; 确定授予访问请求所需的点数; 确定目前可供第一人使用的点数; 确定是否授予访问请求; 并且经由网络接口​​系统向设备发送指示是否授予访问请求的消息。
    • 10. 发明授权
    • Location detection and network awareness for multi-mode/multi-radio mobile devices
    • 多模/多无线移动设备的位置检测和网络意识
    • US07289810B2
    • 2007-10-30
    • US11009672
    • 2004-12-10
    • Ramanathan JagadeesanBich NguyenAndrew ChungArthur G. Howarth
    • Ramanathan JagadeesanBich NguyenAndrew ChungArthur G. Howarth
    • H04Q7/20
    • H04W64/00Y02D70/1224Y02D70/142Y02D70/166
    • The present invention provides methods and devices using location detection to enable MMMDs to activate and tune to appropriate radios and networks. Some preferred embodiments use radio frequency identification (“RFID”)—based location detection. Preferably, the location detection occurs at or near wireless domain boundaries. Some implementations employ proximity/boundary detection to enhance handoff triggers, which initiate handoff mechanisms between different networks, as an MMMD moves between wireless networks, via a wireless domain portal. Some implementations involve methods and devices for device validation and authorization. An MMMD is provided with local wireless network awareness, which may be used by the MMMD to have the appropriate radio turned on and properly tuned. Accordingly, the methods and devices of the present invention achieve power savings and improved handoff across networks.
    • 本发明提供使用位置检测来使MMMD能够激活和调谐到合适的无线电和网络的方法和装置。 一些优选实施例使用基于射频识别(“RFID”)的位置检测。 优选地,位置检测发生在无线域边界处或附近。 一些实施方案采用接近/边界检测来增强越区切换触发,其通过无线域门户在无线网络之间移动,从而启动不同网络之间的切换机制。 一些实现涉及用于设备验证和授权的方法和设备。 为MMMD提供本地无线网络意识,可由MMMD使用,以使适当的无线电开启并正确调谐。 因此,本发明的方法和设备实现了功率节省并改进了跨网络的切换。