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    • 1. 发明授权
    • Hardware consumption architecture
    • 硬件消费架构
    • US09183102B2
    • 2015-11-10
    • US13250188
    • 2011-09-30
    • Eric J. BauerRandee S. AdamsWilliam D. ReentsMark M. Clougherty
    • Eric J. BauerRandee S. AdamsWilliam D. ReentsMark M. Clougherty
    • G06F11/00G06F11/20G06F11/30G06F11/14G06F11/16
    • G06F11/2041G06F11/008G06F11/1484G06F11/1666G06F11/20G06F11/2035G06F11/3051
    • Various exemplary embodiments relate to a method and related network node including one or more of the following: identifying a hardware failure of a failed component of a plurality of hardware components; determining a set of agent devices currently configured to utilize the failed component; reconfiguring an agent device to utilize a working component of the plurality of hardware components. Various exemplary embodiments additionally or alternatively relate to a method and related network node including one or more of the following: projecting a failure date for the hardware module; determining whether the projected failure date is acceptable based on a target replacement date for the hardware module; if the projected failure date is not acceptable: selecting a parameter adjustment for a hardware component, wherein the parameter adjustment is selected to move the projected failure date closer to the target replacement date, and applying the parameter adjustment to the hardware component.
    • 各种示例性实施例涉及包括以下中的一个或多个的方法和相关网络节点:识别多个硬件组件的故障组件的硬件故障; 确定当前配置为利用所述故障组件的一组代理设备; 重新配置代理设备以利用所述多个硬件组件的工作组件。 各种示例性实施例另外或替代地涉及包括以下的一个或多个的方法和相关网络节点:投射硬件模块的故障日期; 基于所述硬件模块的目标替换日期来确定所述预计故障日期是否可接受; 如果预计的故障日期不可接受:选择硬件组件的参数调整,其中选择参数调整以将预计的故障日期移动到更接近目标替换日期,并将参数调整应用于硬件组件。
    • 2. 发明授权
    • Live module diagnostic testing
    • 实时模块诊断测试
    • US08826074B2
    • 2014-09-02
    • US13250333
    • 2011-09-30
    • Eric J. BauerRandee S. AdamsWilliam M. ReentsMark M Clougherty
    • Eric J. BauerRandee S. AdamsWilliam M. ReentsMark M Clougherty
    • G06F11/00
    • G06F11/2242G06F11/008
    • Various exemplary embodiments relate to a method and related network node including one or more of the following: determining that a diagnostic test should be performed on a hardware component of a plurality of hardware components, wherein the plurality of hardware components support a plurality of agent devices and at least one agent device of the plurality of agent devices is assigned to at least one of the plurality of hardware components; ensuring that no agent device of the plurality of agent devices is assigned to the hardware component; and after ensuring that no agent device of the plurality of agent devices is assigned to the hardware component, performing the diagnostic test on the hardware component, wherein at least one other hardware component of the plurality of hardware components continues operation during performance of the diagnostic test.
    • 各种示例性实施例涉及包括以下中的一个或多个的方法和相关网络节点:确定应当对多个硬件组件的硬件组件执行诊断测试,其中所述多个硬件组件支持多个代理设备 并且所述多个代理设备中的至少一个代理设备被分配给所述多个硬件组件中的至少一个; 确保所述多个代理设备中的代理设备不被分配给所述硬件组件; 并且在确保不将所述多个代理设备的代理设备分配给所述硬件组件之后,对所述硬件组件执行所述诊断测试,其中所述多个硬件组件中的至少一个其他硬件组件在执行所述诊断测试期间继续操作 。
    • 3. 发明申请
    • LIVE MODULE DIAGNOSTIC TESTING
    • 实体模块诊断测试
    • US20130086430A1
    • 2013-04-04
    • US13250333
    • 2011-09-30
    • Eric J. BauerRandee S. AdamsWilliam D. ReentsMark M. Clougherty
    • Eric J. BauerRandee S. AdamsWilliam D. ReentsMark M. Clougherty
    • G06F11/26G06F11/30
    • G06F11/2242G06F11/008
    • Various exemplary embodiments relate to a method and related network node including one or more of the following: determining that a diagnostic test should be performed on a hardware component of a plurality of hardware components, wherein the plurality of hardware components support a plurality of agent devices and at least one agent device of the plurality of agent devices is assigned to at least one of the plurality of hardware components; ensuring that no agent device of the plurality of agent devices is assigned to the hardware component; and after ensuring that no agent device of the plurality of agent devices is assigned to the hardware component, performing the diagnostic test on the hardware component, wherein at least one other hardware component of the plurality of hardware components continues operation during performance of the diagnostic test.
    • 各种示例性实施例涉及包括以下中的一个或多个的方法和相关网络节点:确定应当对多个硬件组件的硬件组件执行诊断测试,其中所述多个硬件组件支持多个代理设备 并且所述多个代理设备中的至少一个代理设备被分配给所述多个硬件组件中的至少一个; 确保所述多个代理设备中的代理设备不被分配给所述硬件组件; 并且在确保不将所述多个代理设备的代理设备分配给所述硬件组件之后,对所述硬件组件执行所述诊断测试,其中所述多个硬件组件中的至少一个其他硬件组件在执行所述诊断测试期间继续操作 。
    • 5. 发明授权
    • Extended messaging scheme for point-to-point communications
    • 用于点对点通信的扩展消息传递方案
    • US06813269B1
    • 2004-11-02
    • US09507839
    • 2000-02-22
    • Mark M. CloughertyYik-Ming HoStuart Warmink
    • Mark M. CloughertyYik-Ming HoStuart Warmink
    • H04L1228
    • H04Q3/60H04Q2213/13174H04Q2213/13216H04Q2213/13296H04Q2213/13381
    • The extended messaging scheme adds additional packet formats to the prior art 6-byte Lucent Access Interface Unit (AIU) Message Format of Table 1. The extended messaging scheme supports multi-packet messaging over telecommunication system configurations not supported by the prior art AIU Message Format. In one implementation, the extended messaging scheme includes (1) a “first-of-many” packet format for the initial data packets of messages requiring more than one 6-byte data packet, (2) a “continuation” packet format for the one or more subsequent data packets corresponding to such multi-packet messages, and (3) a “first-and-only” packet format for messages requiring only a single data packet. The extended messaging scheme enables telecommunication systems to be configured with one or more (possibly non-co-located) client terminals in addition to a main remote terminal to provide telecommunication services to a large number of widely distributed customers.
    • 扩展消息传递方案将额外的分组格式添加到表1的现有技术的6字节朗讯访问接口单元(AIU)消息格式。扩展消息传递方案支持不支持现有技术的AIU消息格式的电信系统配置的多分组消息 。 在一个实现中,扩展消息传递方案包括(1)需要多于一个6字节数据分组的消息的初始数据分组的“第一多”分组格式,(2)“继续”分组格式,用于 对应于这种多分组消息的一个或多个后续数据分组,以及(3)仅需要单个数据分组的消息的“仅第一个”分组格式。 扩展消息传送方案使电信系统除了主远程终端之外还配置有一个或多个(可能非共处的)客户端,以向大量广泛分布的客户提供电信服务。
    • 8. 发明申请
    • HARDWARE CONSUMPTION ARCHITECTURE
    • 五金消费结构
    • US20130086411A1
    • 2013-04-04
    • US13250188
    • 2011-09-30
    • Eric J. BauerRandee S. AdamsWilliam D. ReentsMark M. Clougherty
    • Eric J. BauerRandee S. AdamsWilliam D. ReentsMark M. Clougherty
    • G06F11/07G06F11/34
    • G06F11/2041G06F11/008G06F11/1484G06F11/1666G06F11/20G06F11/2035G06F11/3051
    • Various exemplary embodiments relate to a method and related network node including one or more of the following: identifying a hardware failure of a failed component of a plurality of hardware components; determining a set of agent devices currently configured to utilize the failed component; reconfiguring an agent device to utilize a working component of the plurality of hardware components. Various exemplary embodiments additionally or alternatively relate to a method and related network node including one or more of the following: projecting a failure date for the hardware module; determining whether the projected failure date is acceptable based on a target replacement date for the hardware module; if the projected failure date is not acceptable: selecting a parameter adjustment for a hardware component, wherein the parameter adjustment is selected to move the projected failure date closer to the target replacement date, and applying the parameter adjustment to the hardware component.
    • 各种示例性实施例涉及包括以下中的一个或多个的方法和相关网络节点:识别多个硬件组件的故障组件的硬件故障; 确定当前配置为利用所述故障组件的一组代理设备; 重新配置代理设备以利用所述多个硬件组件的工作组件。 各种示例性实施例另外或替代地涉及包括以下的一个或多个的方法和相关网络节点:投射硬件模块的故障日期; 基于所述硬件模块的目标替换日期来确定所述预计故障日期是否可接受; 如果预计的故障日期不可接受:选择硬件组件的参数调整,其中选择参数调整以将预计的故障日期移动到更接近目标替换日期,并将参数调整应用于硬件组件。