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    • 43. 发明授权
    • Distributed intelligence architecture with dynamic reverse/forward clouding
    • 分布式智能体系结构,具有动态反向/前向云
    • US09450454B2
    • 2016-09-20
    • US13483873
    • 2012-05-30
    • Jeffrey D. Taft
    • Jeffrey D. Taft
    • G06F1/26H02J13/00G06Q50/06
    • H02J13/0013G06Q50/06Y02B90/2607Y02P80/11Y04S40/12
    • In one embodiment, a grid application function is hosted at a primary grid device in a utility grid, which may determine whether or not to distribute at least a portion of the grid application function to one or more distributed secondary grid devices in the utility grid. In general, the one or more distributed secondary grid devices will be associated with a subset of the utility grid that is associated with the primary grid device (e.g., a sub-grid). Once a determination has been made, the primary grid device may dynamically distribute the grid application function, or a portion thereof, to the distributed secondary devices according to the determination. In addition, in another embodiment, the grid application function may also be withdrawn, such as from a particular secondary grid device or else from the primary grid device to an originating grid device.
    • 在一个实施例中,网格应用功能被托管在公用电网中的主网格设备处,其可以确定是否将网格应用功能的至少一部分分发到公用电网中的一个或多个分布式次网格设备。 通常,一个或多个分布式二次栅格器件将与与主栅格器件(例如,子栅格)相关联的公用电网的子集相关联。 一旦做出了确定,主网格设备可以根据确定动态地将网格应用功能或其一部分分发到分布式辅助设备。 另外,在另一个实施例中,网格应用功能也可以被撤回,例如从特定的次级网格设备,或从主网格设备到源网格设备。
    • 46. 发明申请
    • Security Measures for the Smart Grid
    • 智能电网安全措施
    • US20120323381A1
    • 2012-12-20
    • US13160909
    • 2011-06-15
    • Navindra YadavJeffrey D. Taft
    • Navindra YadavJeffrey D. Taft
    • G06F1/26
    • H04L63/0236H04L63/1441H04L63/1491Y04S40/24
    • Security is enabled in an electrical system by examining a configuration file for a substation present in the electrical system, where the substation includes one or more electrical devices and one or more network devices. Based on the examination of the configuration file, information is determined on a characteristic of an electrical device that is selected from a group including a type, allowed role of the electrical device and allowed communication modes for the electrical device. Based on the determined information, a basis for controlling the role and communication modes for the electrical device is identified. A security policy is configured in a network device in the substation to incorporate the identified basis. Based on the configured security policy in the network device, communication patterns for the electrical device are allowed that are associated with the allowed role and allowed communication modes for the electrical device.
    • 通过检查电气系统中存在的变电站的配置文件,在电气系统中启用安全性,其中变电站包括一个或多个电气设备和一个或多个网络设备。 基于配置文件的检查,根据从包括电气设备的类型,允许的角色以及电气设备的允许通信模式的组中选择的电气设备的特性来确定信息。 基于确定的信息,识别用于控制电气设备的角色和通信模式的基础。 在变电站中的网络设备中配置安全策略以合并所识别的基础。 基于网络设备中配置的安全策略,允许与电子设备的允许角色和允许的通信模式相关联的电气设备的通信模式。
    • 49. 发明申请
    • DISTRIBUTION SYSTEM ANALYSIS USING METER DATA
    • 使用仪表数据进行分配系统分析
    • US20120089356A1
    • 2012-04-12
    • US13334504
    • 2011-12-22
    • Jeffrey D. Taft
    • Jeffrey D. Taft
    • G06F19/00
    • G01R21/1331G01R19/2513Y02E60/728Y04S10/265
    • A monitoring system includes a first sensor positioned at a first location along a phase conductor line and a second sensor position at a second location along the phase conductor line. The first sensor is configured to generate a first set of synchrophasor data. The second sensor is configured to generate a second set of synchrophasor data. The monitoring system includes a processor configured to receive the first and second sets of synchrophasor data. The processor is further configured to determine a primary side voltage of at least one distribution transformer electrically connected to the phase conductor line based on a secondary side voltage of the at least one distribution transformer. The processor is further configured to determine at least one phase conductor line condition based on the first and second sets of synchrophasor data and the primary side voltage.
    • 监测系统包括位于沿着相导线的第一位置处的第一传感器和沿着相导线的第二位置处的第二传感器位置。 第一传感器被配置为生成第一组同步信息数据。 第二传感器被配置为生成第二组同步信息数据。 监视系统包括被配置为接收第一组和第二组同步信息数据的处理器。 处理器还被配置为基于至少一个配电变压器的次级侧电压来确定电连接到相导线的至少一个配电变压器的初级侧电压。 处理器还被配置为基于第一组和第二组同步信号数据和初级侧电压来确定至少一个相导线条件。