会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Nearest neighbor approach for improved training of real-time health monitors for data processing systems
    • 最近邻近的方法来改进对数据处理系统的实时健康监测器的训练
    • US07243265B1
    • 2007-07-10
    • US10690917
    • 2003-10-22
    • Michael J. WookeyKenneth C. GrossLawrence G. Votta, Jr.
    • Michael J. WookeyKenneth C. GrossLawrence G. Votta, Jr.
    • G06F11/00
    • G06F11/3409G06F11/2252G06F11/3452
    • Methods, systems, and articles of manufacture consistent with the present invention train a real-time health-monitor for a computer-based system while simultaneously monitoring the health of the system. A plurality of signals that each describe an operating condition of a subject data processing system are monitored in real-time. It is determined whether there is a problem with the subject data processing system by comparing at least one of the monitored signals to a corresponding at least one signal in a known signal dataset. The known signal dataset includes a signal value for at least one signal that describes an operating condition of one of a plurality of subject data processing systems. A new signal dataset having an entry for each monitored signal and a corresponding signal value is prepared simultaneously with monitoring the plurality of signals and determining whether there is a problem.
    • 与本发明一致的方法,系统和制品针对基于计算机的系统训练实时健康监测器,同时监测系统的健康状况。 每个描述对象数据处理系统的操作条件的多个信号被实时监视。 通过将所监测的信号中的至少一个与已知信号数据集中的对应的至少一个信号进行比较来确定对象数据处理系统是否存在问题。 已知的信号数据集包括用于描述多个对象数据处理系统之一的操作条件的至少一个信号的信号值。 在监视多个信号并确定是否存在问题的同时准备具有每个监视信号的条目和相应的信号值的新的信号数据集。
    • 2. 发明授权
    • Dynamic self-tuning soft-error-rate-discrimination for enhanced availability of enterprise computing systems
    • 动态自整定软错误率歧视,增强企业计算系统的可用性
    • US07526683B1
    • 2009-04-28
    • US11141844
    • 2005-06-01
    • Lawrence G. Votta, Jr.Kenneth C. GrossAleksey M. UrmanovDouglas B. Meyer
    • Lawrence G. Votta, Jr.Kenneth C. GrossAleksey M. UrmanovDouglas B. Meyer
    • G06F11/00
    • G06F11/008
    • A method for use in a computer system provides a dynamic, “self tuning” soft-error-rate-discrimination (SERD) method and apparatus. Specially designed SRAMs or other circuits are “tuned” in a manner that gives them extreme susceptibility to cosmic neutron events (soft errors), higher than that of the “regular” SRAM components, memory modules or other components in the computer system. One such specially designed SRAM is deployed per server. An interface algorithm continuously sends read/write traffic to the special SRAM to infer the soft error rate (SER), which is directly proportional to cosmic neutron flux. The inferred cosmic neutron flux rate is employed in a Poisson SPRT algorithmic approach that dynamically compensates the soft error discrimination sensitivity in accordance with the instantaneous neutron flux for all of the regular SRAM components in the server.
    • 一种在计算机系统中使用的方法提供了一种动态的“自调谐”软错误率鉴别(SERD)方法和装置。 专门设计的SRAM或其他电路以“调谐”的方式使其对宇宙中子事件(软错误)具有极高的敏感性,高于计算机系统中“常规”SRAM组件,存储器模块或其他组件的极端敏感性。 每个服务器部署一个这样专门设计的SRAM。 接口算法连续向专用SRAM发送读/写流量,推断出与宇宙中子通量成正比的软误码率(SER)。 推测的宇宙中子通量速率采用泊松SPRT算法方法,根据服务器中所有常规SRAM组件的瞬时中子通量动态补偿软误差鉴别灵敏度。
    • 3. 发明授权
    • Correlating and aligning monitored signals for computer system performance parameters
    • 用于计算机系统性能参数的相关和对齐监控信号
    • US07292659B1
    • 2007-11-06
    • US10671705
    • 2003-09-26
    • Kenneth C. GrossVatsal BhardwajDavid M. FishmanLawrence G. Votta, Jr.
    • Kenneth C. GrossVatsal BhardwajDavid M. FishmanLawrence G. Votta, Jr.
    • H03D1/00H04L27/06
    • G06F11/3466G06F11/3452G06F2201/86
    • One embodiment of the present invention provides a system that facilitates aligning a first signal with a second signal in a manner that optimizes a correlation between the first signal and the second signal. The system starts by receiving a set of signals, including the first signal and the second signal. The system then determines a correlation between the first signal and the second signal. Next, the system adjusts an alignment between the first signal and again determines a correlation between the first signal and the second signal. If the correlation is greater with the alignment adjustment, the system adjusts the alignment between the first signal and the second signal. This process of adjusting the alignment is repeated for different alignments to find an optimal alignment. Hence, the present invention operates effectively for signal sources which may be independently speeding up and slowing down with respect to each other while under surveillance.
    • 本发明的一个实施例提供了一种有助于以优化第一信号和第二信号之间的相关性的方式将第一信号与第二信号对准的系统。 系统通过接收包括第一信号和第二信号的一组信号来开始。 然后,系统确定第一信号和第二信号之间的相关性。 接下来,系统调整第一信号之间的对准,并再次确定第一信号和第二信号之间的相关性。 如果通过对准调整相关性较大,则系统调整第一信号和第二信号之间的对准。 对于不同的比对重复调整对准的这个过程以找到最佳比对。 因此,本发明对于信号源有效地进行操作,信号源可以在监视时相对于彼此独立地加速和减速。
    • 8. 发明授权
    • Method and apparatus for validating sensor operability in a computer system
    • 用于验证计算机系统中的传感器可操作性的方法和装置
    • US07076389B1
    • 2006-07-11
    • US10899709
    • 2004-07-26
    • Kenneth C. GrossEugenio J. Schuster Rosa
    • Kenneth C. GrossEugenio J. Schuster Rosa
    • G06F19/00
    • G06F11/24
    • One embodiment of the present invention provides a system that validates sensor operability in a computer system. During operation, the system perturbs the computer system with an excitation, wherein the excitation may be physical or software-based. The system then receives a number of responses to the excitation through sensors in the computer system, wherein each response is represented as a value of a variable which may vary with time. Next, the system compares the received responses with a set of reference responses gathered from properly functioning sensors in a reference computer system. The system then determines from the comparison whether the sensors in the computer system are operating properly.
    • 本发明的一个实施例提供一种验证计算机系统中的传感器可操作性的系统。 在操作期间,系统利用激励扰乱计算机系统,其中激励可以是物理或基于软件的。 然后,系统通过计算机系统中的传感器接收对激励的多个响应,其中每个响应被表示为可随时间变化的变量的值。 接下来,系统将接收到的响应与从参考计算机系统中正常工作的传感器收集的一组参考响应进行比较。 然后,系统从比较中确定计算机系统中的传感器是否正常运行。