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    • 5. 发明授权
    • Distributed control of a fail-to-wire switch for a network communication link
    • 用于网络通信链路的故障切换开关的分布式控制
    • US08724455B2
    • 2014-05-13
    • US13355250
    • 2012-01-20
    • William F. BergJeremiah D. CarlinScott A. LieblGeorge W. Van Leeuwen
    • William F. BergJeremiah D. CarlinScott A. LieblGeorge W. Van Leeuwen
    • H04L12/26
    • H04W8/087
    • A fail-to-wire (FTW) module preserves a primary data path connection from an upstream computer to a downstream computer if there is any kind of failure in a breakout data path to a breakout system. The FTW module provides switches between the incoming data network data and the breakout system such that when the breakout system encounters a failure, the switches are de-activated to bypass the breakout system. The switches in the FTW module are activated by a system health signal controlled by a health monitor in the breakout system. The health monitor provides intelligent switch control based on alerts from a variety of control points. These control points include firmware, hardware, thermal sensors, subsystem operating systems, subsystem software applications, and appliance tamper logic in order to determine if the FTW module switches should be in an active or inactive state.
    • 如果在分组系统的分组数据路径中存在任何类型的故障,则故障线(FTW)模块保留从上游计算机到下游计算机的主数据路径连接。 FTW模块在传入的数据网络数据和分组系统之间提供交换机,以便当分线系统遇到故障时,交换机被禁用以绕过分组系统。 FTW模块中的开关由突发系统中的健康监视器控制的系统健康信号激活。 健康监视器根据各种控制点的警报提供智能开关控制。 这些控制点包括固件,硬件,热传感器,子系统操作系统,子系统软件应用程序和设备篡改逻辑,以便确定FTW模块交换机是否处于活动或非活动状态。
    • 6. 发明申请
    • DISTRIBUTED CONTROL OF A FAIL-TO-WIRE SWITCH FOR A NETWORK COMMUNICATION LINK
    • 用于网络通信链路的FAIL-TO-WIRE开关的分布式控制
    • US20130188477A1
    • 2013-07-25
    • US13355250
    • 2012-01-20
    • William F. BergJeremiah D. CarlinScott A. LieblGeorge W. Van Leeuwen
    • William F. BergJeremiah D. CarlinScott A. LieblGeorge W. Van Leeuwen
    • H04W28/00
    • H04W8/087
    • A fail-to-wire (FTW) module preserves a primary data path connection from an upstream computer to a downstream computer if there is any kind of failure in a breakout data path to a breakout system. The FTW module provides switches between the incoming data network data and the breakout system such that when the breakout system encounters a failure, the switches are de-activated to bypass the breakout system. The switches in the FTW module are activated by a system health signal controlled by a health monitor in the breakout system. The health monitor provides intelligent switch control based on alerts from a variety of control points. These control points include firmware, hardware, thermal sensors, subsystem operating systems, subsystem software applications, and appliance tamper logic in order to determine if the FTW module switches should be in an active or inactive state.
    • 如果在分组系统的分组数据路径中存在任何类型的故障,则故障线(FTW)模块保留从上游计算机到下游计算机的主数据路径连接。 FTW模块在传入的数据网络数据和分组系统之间提供交换机,以便当分线系统遇到故障时,交换机被禁用以绕过分组系统。 FTW模块中的开关由突发系统中的健康监视器控制的系统健康信号激活。 健康监视器根据各种控制点的警报提供智能开关控制。 这些控制点包括固件,硬件,热传感器,子系统操作系统,子系统软件应用程序和设备篡改逻辑,以便确定FTW模块交换机是否处于活动或非活动状态。
    • 10. 发明申请
    • MITIGATING EFFECTS OF PREDICTED FAILURES IN A MOBILE NETWORK BASESTATION DUE TO WEATHER
    • 在天气变化的移动网络基础上减少预测失败的影响
    • US20130121175A1
    • 2013-05-16
    • US13297852
    • 2011-11-16
    • Jeremiah D. CarlinMichael T. KalmbachMark D. Schroeder
    • Jeremiah D. CarlinMichael T. KalmbachMark D. Schroeder
    • H04W24/00H04L12/26
    • H04W24/04H04L41/0631H04L41/147
    • Basestation equipment in a mobile data network is subject to harsh environmental conditions at many remote locations. International Business Machines Corporation (IBM) has introduced a Mobile Internet Optimization Platform (MIOP) appliance, referred herein as the MIOP@NodeB. This appliance is placed at the edge or basestation of a mobile data network to provide a platform for hosting applications and enhancing mobile network services. The introduction of an edge appliance provides a platform for additional reliability functions. A predictive failure mechanism in the basestation appliance mitigates the effects of predicted failures in a mobile network basestation due to weather conditions. The predictive failure mechanism considers historical data, ambient environmental conditions, weather alerts and weather forecasts to take pre-emptive action to avert partial or total failure of the basestation equipment.
    • 移动数据网络中的基站设备在许多偏远地区遭受恶劣的环境条件。 国际商业机器公司(IBM)推出了一种移动互联网优化平台(MIOP)设备,这里称为MIOP @ NodeB。 该设备位于移动数据网络的边缘或基站,以提供用于托管应用程序和增强移动网络服务的平台。 边缘设备的引入为增加可靠性功能提供了平台。 基站设备中的预测性故障机制可以缓解由于天气条件导致的移动网络基站预测故障的影响。 预测性故障机制考虑历史数据,环境条件,天气预报和天气预报,采取先发制人的行动,以避免基站设备的部分或全部故障。