METHODS, SYSTEMS, AND COMPUTER READABLE MEDIA FOR MONITORING AND MANAGEMENT OF A POWER DISTRIBUTION SYSTEM
    1.
    发明申请
    METHODS, SYSTEMS, AND COMPUTER READABLE MEDIA FOR MONITORING AND MANAGEMENT OF A POWER DISTRIBUTION SYSTEM 有权
    电力分配系统监控与管理的方法,系统和计算机可读介质

    公开(公告)号:US20160147209A1

    公开(公告)日:2016-05-26

    申请号:US14549515

    申请日:2014-11-20

    CPC classification number: G01R31/40 H02J13/0013 Y02E60/7807 Y04S40/12

    Abstract: Methods, systems, and computer readable media for monitoring and management of a power distribution system are disclosed. In one example, the method includes receiving sensory measurement data captured by a mobile inspection device during an inspection of power distribution system elements in a power distribution system. The method further includes processing the received sensory measurement data to derive fault identification data that indicates a fault condition existing in one or more of the power distribution system elements and utilizing the derived fault identification data to update a network model of the power distribution system.

    Abstract translation: 公开了用于监视和管理配电系统的方法,系统和计算机可读介质。 在一个示例中,该方法包括在检查配电系统中的配电系统元件期间接收由移动检查装置捕获的感测测量数据。 该方法还包括处理所接收的感觉测量数据以导出指示存在于一个或多个配电系统元件中的故障状况的故障识别数据,并利用导出的故障识别数据来更新配电系统的网络模型。

    Fault Location Method For Series-Compensated Double-Circuit Transmission Lines
    2.
    发明申请
    Fault Location Method For Series-Compensated Double-Circuit Transmission Lines 审中-公开
    串联补偿双回路输电线路故障定位方法

    公开(公告)号:US20170003335A1

    公开(公告)日:2017-01-05

    申请号:US14789042

    申请日:2015-07-01

    CPC classification number: G01R31/085 G01R19/2513 G01R31/088

    Abstract: A highly accurate fault location method for series-compensated double-circuit transmission lines having series compensation devices and metal oxide varistors (SC&MOV) at first and second terminal ends is provided. Synchronized or unsynchronized current phasors and local voltage phasors are used as input to the fault location method. The voltages and currents at the fault point are formulated as a function of the unknown fault location. Boundary conditions for the particular IED-determined fault type are used to derive the fault location formulas.

    Abstract translation: 提供了一种高精度的故障定位方法,用于在第一和第二终端具有串联补偿装置和金属氧化物变阻器(SC&MOV)的串联补偿双回路传输线。 同步或不同步的电流相量和局部电压相量被用作故障定位方法的输入。 故障点处的电压和电流表示为未知故障位置的函数。 用于特定IED确定的故障类型的边界条件用于导出故障定位公式。

    Method and Apparatus for Distributed Overriding Automatic Reclosing of Fault interrupting Devices
    4.
    发明申请
    Method and Apparatus for Distributed Overriding Automatic Reclosing of Fault interrupting Devices 有权
    分布式覆盖故障中断设备自动重合闸的方法与装置

    公开(公告)号:US20150185748A1

    公开(公告)日:2015-07-02

    申请号:US14142182

    申请日:2013-12-27

    Abstract: Automatic reclosing of a fault interrupting device is overridden by establishing communication with a control system for a fault interrupting device operable to open responsive to a fault on an electric distribution system and automatically reclose after a predetermined time delay, and analyzing data for the electric distribution system by an apparatus separate from the fault interrupting device control system and having higher performance than the fault interrupting device control system, to determine whether to block the automatic reclosing of the fault interrupting device before the fault interrupting device automatically recloses. An autoreclosing block command is generated by the apparatus if the apparatus determines the automatic reclosing of the fault interrupting device should be blocked. The autoreclosing block command is sent from the apparatus to the fault interrupting device control system to prevent the automatic reclosing of the fault interrupting device after the predetermined time delay.

    Abstract translation: 通过建立与控制系统的通信来建立与故障中断装置的通信,以响应于配电系统上的故障打开并在预定的时间延迟之后自动重新闭合并分析配电系统的数据来覆盖故障中断装置的自动重新闭合 通过与故障中断装置控制系统分离并且具有比故障中断装置控制系统更高的性能的装置,确定在故障中断装置自动重新闭合之前是否阻止故障中断装置的自动重合闸。 如果设备确定故障中断设备的自动重合闸应被阻止,则该装置产生自动重合闸块命令。 自动重合闸指令从装置发送到故障中断装置控制系统,以防止在预定时间延迟之后故障中断装置的自动重合闸。

    METHODS, SYSTEMS, AND COMPUTER READABLE MEDIA FOR TOPOLOGY CONTROL AND SWITCHING LOADS OR SOURCES BETWEEN PHASES OF A MULTI-PHASE POWER DISTRIBUTION SYSTEM
    5.
    发明申请
    METHODS, SYSTEMS, AND COMPUTER READABLE MEDIA FOR TOPOLOGY CONTROL AND SWITCHING LOADS OR SOURCES BETWEEN PHASES OF A MULTI-PHASE POWER DISTRIBUTION SYSTEM 有权
    方法,系统和计算机可读介质用于多相电力分配系统的相位之间的拓扑控制和切换负载或来源

    公开(公告)号:US20150084434A1

    公开(公告)日:2015-03-26

    申请号:US14037344

    申请日:2013-09-25

    Abstract: A switching system for switching between phases in a multi-phase power distribution system includes a switch for selectively connecting a lateral line to feeder conductors of different phases in a multi-phase power distribution system. Feeder terminals of the switch are configured to connect to feeder conductors of the multi-phase power distribution system. At least one output terminal of the switch is configured to connect to the lateral line. The feeder terminals are spaced about the body of the switch. A shaft and a rotatable contact member extending radially from the shaft are configured for rotating within the switch body to selectively connect the at least one output terminal to any one or more of the feeder terminals. At least one controller operates the switch to selectively change connection of the lateral line between the feeder conductors.

    Abstract translation: 用于在多相配电系统中的相之间切换的开关系统包括用于在多相配电系统中选择性地将侧线连接到不同相馈线导体的开关。 开关的馈线端子被配置为连接到多相配电系统的馈线导体。 开关的至少一个输出端被配置为连接到侧线。 馈线端子围绕开关的主体间隔开。 轴和从轴径向延伸的可旋转接触构件构造成用于在开关体内旋转以选择性地将至少一个输出端子连接到馈线端子中的任何一个或多个。 至少一个控制器操作开关以选择性地改变馈线导体之间的横向线的连接。

    Method and apparatus for distributed overriding automatic reclosing of fault interrupting devices

    公开(公告)号:US09703309B2

    公开(公告)日:2017-07-11

    申请号:US14142182

    申请日:2013-12-27

    Abstract: Automatic reclosing of a fault interrupting device is overridden by establishing communication with a control system for a fault interrupting device operable to open responsive to a fault on an electric distribution system and automatically reclose after a predetermined time delay, and analyzing data for the electric distribution system by an apparatus separate from the fault interrupting device control system and having higher performance than the fault interrupting device control system, to determine whether to block the automatic reclosing of the fault interrupting device before the fault interrupting device automatically recloses. An autoreclosing block command is generated by the apparatus if the apparatus determines the automatic reclosing of the fault interrupting device should be blocked. The autoreclosing block command is sent from the apparatus to the fault interrupting device control system to prevent the automatic reclosing of the fault interrupting device after the predetermined time delay.

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