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    • 7. 发明授权
    • Job migration in response to loss or degradation of a semi-redundant component
    • 作业迁移以应对半冗余组件的丢失或退化
    • US08589728B2
    • 2013-11-19
    • US12886299
    • 2010-09-20
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • G06F11/00
    • G06F11/2035G06F11/1666G06F11/2015G06F11/203
    • A computer program product includes computer usable program code embodied on a computer usable storage medium for performing a method of managing the workload in a computer system having one or more semi-redundant hardware components are provided. The method comprises detecting loss or degradation of the level of performance of one or more of the semi-redundant hardware components, identifying hardware components that are affected by the loss or degradation of the one or more semi-redundant components, migrating a critical job from an affected hardware component to an unaffected hardware component, and performing less-critical jobs on an affected hardware component. Loss or degradation of the semi-redundant component reduces the capacity of affected hardware components in the computer system without entirely disabling the computer system. Optionally, the semi-redundant hardware component may be selected from a memory module, CPU core, Ethernet port, power supply, fan, disk drive, and an input output port.
    • 计算机程序产品包括体现在计算机可用存储介质上的计算机可用程序代码,用于执行在具有一个或多个半冗余硬件组件的计算机系统中执行管理工作负荷的方法。 该方法包括检测一个或多个半冗余硬件组件的性能水平的丢失或劣化,识别受一个或多个半冗余组件的丢失或劣化影响的硬件组件,将关键作业从 受影响的硬件组件到不受影响的硬件组件,并在受影响的硬件组件上执行不太关键的作业。 半冗余组件的丢失或退化会降低计算机系统中受影响的硬件组件的容量,而不会完全禁用计算机系统。 可选地,半冗余硬件组件可以从存储器模块,CPU核心,以太网端口,电源,风扇,磁盘驱动器和输入输出端口中选择。
    • 8. 发明申请
    • JOB MIGRATION IN RESPONSE TO LOSS OR DEGRADATION OF A SEMI-REDUNDANT COMPONENT
    • 对半精简组件的损失或退化作出的工作移转
    • US20120072765A1
    • 2012-03-22
    • US12886299
    • 2010-09-20
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • G06F11/20
    • G06F11/2035G06F11/1666G06F11/2015G06F11/203
    • A computer program product and method of managing the workload in a computer system having one or more semi-redundant hardware components are provided. The method comprises detecting loss or degradation of the level of performance of one or more of the semi-redundant hardware components, identifying hardware components that are affected by the loss or degradation of the one or more semi-redundant components, migrating a critical job from an affected hardware component to an unaffected hardware component, and performing less-critical jobs on an affected hardware component. Loss or degradation of the semi-redundant component reduces the capacity of affected hardware components in the computer system without entirely disabling the computer system. Jobs identified as being critical are run on hardware components having the most capacity and reliability, while allowing less-critical jobs to make use of the remaining capacity of affected hardware components. Optionally, the semi-redundant hardware component may be selected from a memory module, CPU core, Ethernet port, power supply, fan, disk drive, and an input output port.
    • 提供了一种在具有一个或多个半冗余硬件组件的计算机系统中管理工作负荷的计算机程序产品和方法。 该方法包括检测一个或多个半冗余硬件组件的性能水平的丢失或劣化,识别受一个或多个半冗余组件的丢失或劣化影响的硬件组件,将关键作业从 受影响的硬件组件到不受影响的硬件组件,并在受影响的硬件组件上执行不太关键的作业。 半冗余组件的丢失或退化会降低计算机系统中受影响的硬件组件的容量,而不会完全禁用计算机系统。 被确定为关键的作业运行在具有最高容量和可靠性的硬件组件上,同时允许不太关键的作业来利用受影响的硬件组件的剩余容量。 可选地,半冗余硬件组件可以从存储器模块,CPU核心,以太网端口,电源,风扇,磁盘驱动器和输入输出端口中选择。
    • 9. 发明申请
    • JOB MIGRATION IN RESPONSE TO LOSS OR DEGRADATION OF A SEMI-REDUNDANT COMPONENT
    • 对半精简组件的损失或退化作出的工作移转
    • US20120290874A1
    • 2012-11-15
    • US13541403
    • 2012-07-03
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • G06F11/20
    • G06F11/2035G06F11/1666G06F11/2015G06F11/203
    • A method of managing the workload in a computer system having one or more semi-redundant hardware components is provided. The method comprises detecting loss or degradation of the level of performance of one or more of the semi-redundant hardware components, identifying hardware components affected by the loss or degradation, migrating a critical job from an affected hardware component to an unaffected hardware component, and performing less-critical jobs on an affected hardware component. Loss or degradation of the semi-redundant component reduces the capacity of affected hardware components in the computer system without entirely disabling the computer system. Jobs identified as critical run on hardware components having the most capacity and reliability, while less-critical jobs use the remaining capacity of affected hardware components. Examples of semi-redundant hardware components include a memory module, CPU core, Ethernet port, power supply, fan, disk drive, and an input output port.
    • 提供了一种在具有一个或多个半冗余硬件组件的计算机系统中管理工作负载的方法。 该方法包括检测一个或多个半冗余硬件组件的性能水平的损失或劣化,识别受损失或劣化影响的硬件组件,将关键作业从受影响的硬件组件迁移到不受影响的硬件组件,以及 在受影响的硬件组件上执行不太关键的作业。 半冗余组件的丢失或退化会降低计算机系统中受影响的硬件组件的容量,而不会完全禁用计算机系统。 工作被确定为具有最大容量和可靠性的硬件组件的关键运行,而不太关键的作业使用受影响的硬件组件的剩余容量。 半冗余硬件组件的示例包括内存模块,CPU内核,以太网端口,电源,风扇,磁盘驱动器和输入输出端口。
    • 10. 发明授权
    • Job migration in response to loss or degradation of a semi-redundant component
    • 作业迁移以应对半冗余组件的丢失或退化
    • US08694827B2
    • 2014-04-08
    • US13541403
    • 2012-07-03
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • Fred A. Bower, IIIScott A. PiperGregory B. Pruett
    • G06F11/00
    • G06F11/2035G06F11/1666G06F11/2015G06F11/203
    • A method of managing the workload in a computer system having one or more semi-redundant hardware components is provided. The method comprises detecting loss or degradation of the level of performance of one or more of the semi-redundant hardware components, identifying hardware components affected by the loss or degradation, migrating a critical job from an affected hardware component to an unaffected hardware component, and performing less-critical jobs on an affected hardware component. Loss or degradation of the semi-redundant component reduces the capacity of affected hardware components in the computer system without entirely disabling the computer system. Jobs identified as critical run on hardware components having the most capacity and reliability, while less-critical jobs use the remaining capacity of affected hardware components. Examples of semi-redundant hardware components include a memory module, CPU core, Ethernet port, power supply, fan, disk drive, and an input output port.
    • 提供了一种在具有一个或多个半冗余硬件组件的计算机系统中管理工作负载的方法。 该方法包括检测一个或多个半冗余硬件组件的性能水平的损失或劣化,识别受损失或退化影响的硬件组件,将关键作业从受影响的硬件组件迁移到不受影响的硬件组件,以及 在受影响的硬件组件上执行不太关键的作业。 半冗余组件的丢失或退化会降低计算机系统中受影响的硬件组件的容量,而不会完全禁用计算机系统。 工作被确定为具有最大容量和可靠性的硬件组件的关键运行,而不太关键的作业使用受影响的硬件组件的剩余容量。 半冗余硬件组件的示例包括内存模块,CPU内核,以太网端口,电源,风扇,磁盘驱动器和输入输出端口。