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    • 4. 发明授权
    • Dynamic contingency avoidance and mitigation system
    • 动态应急避免和减轻系统
    • US09395707B2
    • 2016-07-19
    • US13214057
    • 2011-08-19
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • G06F1/28G06F17/00G05B13/02G06Q10/04G06Q10/06G05B23/02G05B15/02H02J3/00
    • G06Q10/06315G05B13/0265G05B15/02G05B23/0283G06F17/5009G06Q10/04G06Q10/06375G06Q50/06H02J2003/007Y04S10/54
    • The disclosed subject matter provides systems and methods for allocating resources within an infrastructure, such as an electrical grid, in response to changes to inputs and output demands on the infrastructure, such as energy sources and sinks. A disclosed system includes one or more processors, each having respective communication interfaces to receive data from the infrastructure, the data including infrastructure network data, one or more software applications, operatively coupled to and at least partially controlling the one or more processors, to process and characterize the infrastructure network data; and a display, coupled to the one or more processors, for visually presenting a depiction of at least a portion of the infrastructure including any changes in condition thereof, and one or more controllers in communication with the one or more processors, to manage processing of the resource, wherein the resource is obtained and/or distributed based on the characterization of the real time infrastructure data.
    • 所公开的主题提供了用于在诸如电网之类的基础设施(例如电网)内分配资源的系统和方法,以响应对基础设施(例如能量源和汇)的输入和输出需求的改变。 所公开的系统包括一个或多个处理器,每个处理器具有各自的通信接口以从基础设施接收数据,数据包括基础设施网络数据,一个或多个软件应用,可操作地耦合到并且至少部分地控制一个或多个处理器,以处理 并表征基础设施网络数据; 以及耦合到所述一个或多个处理器的显示器,用于可视地呈现所述基础设施的至少一部分的描绘,包括其条件的任何改变,以及与所述一个或多个处理器通信的一个或多个控制器,以管理 资源,其中基于实时基础设施数据的表征来获得和/或分发资源。
    • 5. 发明申请
    • Dynamic Contingency Avoidance and Mitigation System
    • 动态应急避免和减轻系统
    • US20120072039A1
    • 2012-03-22
    • US13214057
    • 2011-08-19
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • G06F1/28G06F17/00
    • G06Q10/06315G05B13/0265G05B15/02G05B23/0283G06F17/5009G06Q10/04G06Q10/06375G06Q50/06H02J2003/007Y04S10/54
    • The disclosed subject matter provides systems and methods for allocating resources within an infrastructure, such as an electrical grid, in response to changes to inputs and output demands on the infrastructure, such as energy sources and sinks. A disclosed system includes one or more processors, each having respective communication interfaces to receive data from the infrastructure, the data comprising infrastructure network data, one or more software applications, operatively coupled to and at least partially controlling the one or more processors, to process and characterize the infrastructure network data; and a display, coupled to said one or more processors, for visually presenting a depiction of at least a portion of the infrastructure including any changes in condition thereof, and one or more controllers in communication with the one or more processors, to manage processing of the resource, wherein the resource is obtained and/or distributed based on the characterization of said real time infrastructure data.
    • 所公开的主题提供了用于在诸如电网之类的基础设施(例如电网)内分配资源的系统和方法,以响应对基础设施(例如能量源和汇)的输入和输出需求的改变。 所公开的系统包括一个或多个处理器,每个处理器具有各自的通信接口以从基础设施接收数据,该数据包括基础设施网络数据,一个或多个软件应用,可操作地耦合到且至少部分地控制一个或多个处理器,以处理 并表征基础设施网络数据; 以及耦合到所述一个或多个处理器的显示器,用于可视地呈现基础设施的至少一部分的描绘,包括其条件的任何改变,以及与所述一个或多个处理器通信的一个或多个控制器,以管理 所述资源,其中基于所述实时基础设施数据的表征来获得和/或分发所述资源。
    • 7. 发明授权
    • Metrics monitoring and financial validation system (M2FVS) for tracking performance of capital, operations, and maintenance investments to an infrastructure
    • 衡量基础设施资本,运营和维护投资绩效的指标监测和财务确认系统(M2FVS)
    • US08725665B2
    • 2014-05-13
    • US13589737
    • 2012-08-20
    • Roger N. AndersonAlbert BoulangerLeon WuSerena Lee
    • Roger N. AndersonAlbert BoulangerLeon WuSerena Lee
    • G06F15/18
    • G06Q10/04
    • Techniques for evaluating the accuracy of a predicted effectiveness of an improvement to an infrastructure include collecting data, representative of at least one pre-defined metric, from the infrastructure during first and second time periods corresponding to before and after a change has been implemented, respectively. A machine learning system can receive compiled data representative of the first time period and generate corresponding machine learning data. A machine learning results evaluator can empirically analyze the generated machine learning data. An implementer can implement the change to the infrastructure based at least in part on the data from a machine learning data outputer. A system performance improvement evaluator can compare the compiled data representative of the first time period to that of the second time period to determine a difference, if any, and compare the difference, if any, to a prediction based on the generated machine learning data.
    • 用于评估对基础设施改进的预测有效性的准确性的技术包括分别在对应于改变之前和之后的第一和第二时间段期间从基础设施收集表示至少一个预定义度量的数据 。 机器学习系统可以接收代表第一时间段的编译数据并产生相应的机器学习数据。 机器学习结果评估器可以经验性地分析生成的机器学习数据。 至少部分地基于来自机器学习数据输出器的数据,实现者可以实现对基础设施的改变。 系统性能改进评估器可以将表示第一时间段的编译数据与第二时间周期的编译数据进行比较,以确定差异(如果有的话),并根据生成的机器学习数据将差值(如果有的话)与预测进行比较。
    • 10. 发明申请
    • CAPITAL ASSET PLANNING SYSTEM
    • 资本资产计划制度
    • US20130138482A1
    • 2013-05-30
    • US13479198
    • 2012-05-23
    • Roger N. AndersonMaggie ChowAlbert Boulanger
    • Roger N. AndersonMaggie ChowAlbert Boulanger
    • G06Q10/06
    • G06Q10/06375G06Q40/06
    • A capital asset planning system for selecting assets for improvement within an infrastructure that includes one or more data sources descriptive of the infrastructure, one or more databases, coupled to the one or more data sources, to compile the one or more data sources, one or more processors, each coupled to and having respective communication interfaces to receive data from the one or more databases. The processor includes a predictor to generate a first metric of estimated infrastructure effectiveness based, at least in part, on a current status of the infrastructure, a second metric of estimated infrastructure effectiveness based, at least in part, on a user-selected, proposed changed configuration of the infrastructure, and a net metric of infrastructure effectiveness based, at least in part, on said first metric and said second metric. The system also includes a display, coupled to have the one or more processors, for visually presenting the net metric of infrastructure effectiveness, in which the assets for improvement are selected based, at least in part, on the net metric of infrastructure effectiveness.
    • 一种资本资产规划系统,用于在基础设施内选择资产以进行改进,所述基础设施包括描述基础设施的一个或多个数据源,耦合到所述一个或多个数据源的一个或多个数据库,以编译所述一个或多个数据源,一个或多个数据源, 更多的处理器,每个处理器耦合到并具有各自的通信接口以从一个或多个数据库接收数据。 所述处理器包括预测器,用于至少部分地基于所述基础设施的当前状态来生成估计的基础设施有效性的第一度量,所述预测器至少部分地基于用户选择的,提出的 改变了基础设施的配置,以及至少部分地基于所述第一度量和所述第二度量的基础设施有效性的净度。 该系统还包括耦合以具有一个或多个处理器的显示器,用于可视地呈现基础设施有效性的净度量度,其中至少部分地基于基础设施有效性的净度度量来选择用于改进的资产。