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    • 3. 发明申请
    • Electrical Power System Phase and Ground Protection Using an Adaptive Quadrilateral Characteristic
    • 使用自适应四边形特征的电力系统相位和地面保护
    • US20140236502A1
    • 2014-08-21
    • US13772118
    • 2013-02-20
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • H02H1/00
    • H02H1/0092H02H3/40
    • A quadrilateral distance module may be used to detect faults in an electrical power system. A resistive coverage of the quadrilateral distance module may be defined by an adaptive resistance blinder. The adaptive resistance blinder may be adapted to certain power system conditions, such as forward load flow and/or reverse load flow. A forward adaptive resistance blinder may be calculated in parallel with a reverse adaptive resistance blinder. The forward adaptive resistance blinder may use a polarizing quantity adapted for forward load flow conditions, and the reverse adaptive resistance blinder may use a polarizing quantity adapted for reverse load flow conditions. Fault detection may be performed by comparing both the forward and reverse adaptive resistance blinders to power system stimulus and detecting a fault when the stimulus satisfy either blinder.
    • 四边形距离模块可用于检测电力系统中的故障。 四边形距离模块的电阻覆盖可以由自适应电阻阻挡器限定。 自适应阻抗阻挡器可以适应于某些电力系统条件,例如正向负载流和/或反向负载流。 可以与反向自适应阻抗阻挡器并联计算前向自适应阻抗阻挡器。 前向自适应阻抗阻挡器可以使用适合于正向负载流动条件的极化量,并且反向自适应电阻阻挡器可以使用适于反向负载流动条件的极化量。 故障检测可以通过将正向和反向自适应阻抗遮挡器与电力系统刺激进行比较并且当刺激满足阻塞物时检测故障来执行。
    • 4. 发明申请
    • ELECTRICAL POWER SYSTEM PHASE AND GROUND PROTECTION USING AN ADAPTIVE QUADRILATERAL CHARACTERISTICS
    • 电力系统相位和接地保护采用自适应四极化特性
    • US20110068803A1
    • 2011-03-24
    • US12885433
    • 2010-09-17
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • G01R31/14
    • G01R31/40H02H3/402
    • A quadrilateral distance module may be used to detect faults in an electrical power system. A resistive coverage of the quadrilateral distance module may be defined by an adaptive resistance blinder. The adaptive resistance blinder may be adapted to certain power system conditions, such as forward load flow and/or reverse load flow. A forward adaptive resistance blinder may be calculated in parallel with a reverse adaptive resistance blinder. The forward adaptive resistance blinder may use a polarizing quantity adapted for forward load flow conditions, and the reverse adaptive resistance blinder may use a polarizing quantity adapted for reverse load flow conditions. Fault detection may comprise comparing both the forward and reverse adaptive resistance blinders to power system stimulus and detecting a fault when the stimulus satisfy either blinder.
    • 四边形距离模块可用于检测电力系统中的故障。 四边形距离模块的电阻覆盖可以由自适应电阻阻挡器限定。 自适应阻抗阻挡器可以适应于某些电力系统条件,例如正向负载流和/或反向负载流。 可以与反向自适应阻抗阻挡器并联计算前向自适应阻抗阻挡器。 前向自适应阻抗阻挡器可以使用适合于正向负载流动条件的极化量,并且反向自适应电阻阻挡器可以使用适于反向负载流动条件的极化量。 故障检测可以包括将正向和反向自适应阻抗遮挡器与电力系统刺激进行比较,并且当刺激满足阻塞物时检测故障。
    • 6. 发明授权
    • Electrical power system phase and ground protection using an adaptive quadrilateral characteristic
    • 电力系统相位和接地保护采用自适应四边形特征
    • US09257827B2
    • 2016-02-09
    • US13772118
    • 2013-02-20
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • H02H1/00H02H3/40
    • H02H1/0092H02H3/40
    • A quadrilateral distance module may be used to detect faults in an electrical power system. A resistive coverage of the quadrilateral distance module may be defined by an adaptive resistance blinder. The adaptive resistance blinder may be adapted to certain power system conditions, such as forward load flow and/or reverse load flow. A forward adaptive resistance blinder may be calculated in parallel with a reverse adaptive resistance blinder. The forward adaptive resistance blinder may use a polarizing quantity adapted for forward load flow conditions, and the reverse adaptive resistance blinder may use a polarizing quantity adapted for reverse load flow conditions. Fault detection may be performed by comparing both the forward and reverse adaptive resistance blinders to power system stimulus and detecting a fault when the stimulus satisfy either blinder.
    • 四边形距离模块可用于检测电力系统中的故障。 四边形距离模块的电阻覆盖可以由自适应电阻阻挡器限定。 自适应阻抗阻挡器可以适应于某些电力系统条件,例如正向负载流和/或反向负载流。 可以与反向自适应阻抗阻挡器并联计算前向自适应阻抗阻挡器。 前向自适应阻抗阻挡器可以使用适合于正向负载流动条件的极化量,并且反向自适应电阻阻挡器可以使用适于反向负载流动条件的极化量。 故障检测可以通过将正向和反向自适应阻抗遮挡器与电力系统刺激进行比较并且当刺激满足阻塞物时检测故障来执行。
    • 7. 发明授权
    • Electrical power system phase and ground protection using an adaptive quadrilateral characteristics
    • 电力系统相位和接地保护采用自适应四边形特性
    • US08410785B2
    • 2013-04-02
    • US12885433
    • 2010-09-17
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • Jorge Fernando CaleroArmando Guzman-CasillasGabriel Benmouyal
    • G01R31/14
    • G01R31/40H02H3/402
    • A quadrilateral distance module may be used to detect faults in an electrical power system. A resistive coverage of the quadrilateral distance module may be defined by an adaptive resistance blinder. The adaptive resistance blinder may be adapted to certain power system conditions, such as forward load flow and/or reverse load flow. A forward adaptive resistance blinder may be calculated in parallel with a reverse adaptive resistance blinder. The forward adaptive resistance blinder may use a polarizing quantity adapted for forward load flow conditions, and the reverse adaptive resistance blinder may use a polarizing quantity adapted for reverse load flow conditions. Fault detection may be performed by comparing both the forward and reverse adaptive resistance blinders to power system stimulus and detecting a fault when the stimulus satisfy either blinder.
    • 四边形距离模块可用于检测电力系统中的故障。 四边形距离模块的电阻覆盖可以由自适应电阻阻挡器限定。 自适应阻抗阻挡器可以适应于某些电力系统条件,例如正向负载流和/或反向负载流。 可以与反向自适应阻抗阻挡器并联计算前向自适应阻抗阻挡器。 前向自适应阻抗阻挡器可以使用适合于正向负载流动条件的极化量,并且反向自适应电阻阻挡器可以使用适于反向负载流动条件的极化量。 故障检测可以通过将正向和反向自适应阻抗遮挡器与电力系统刺激进行比较并且当刺激满足阻塞物时检测故障来执行。
    • 10. 发明申请
    • STATE AND TOPOLOGY PROCESSOR
    • 状态和拓扑处理器
    • US20110004425A1
    • 2011-01-06
    • US12881240
    • 2010-09-14
    • Edmund O. Schweitzer, IIIMarcos A. DonoloArmando Guzman-Casillas
    • Edmund O. Schweitzer, IIIMarcos A. DonoloArmando Guzman-Casillas
    • G06F19/00G01R21/06
    • G01R19/2513Y02E60/728Y04S10/265
    • A State and Topology Processor (STP) may be communicatively coupled to one or more intelligent electronic devices (IEDs) communicatively coupled to a electrical power system to obtain one or more current measurements, voltage measurements, and dynamic topology data therefrom. The STP may receive the measurement data and may determine a current topology and a voltage topology therefrom. A current processor may use the current topology and the current measurements to refine the measurements, perform KCL, unbalance, symmetrical component, and consistency checks on the electrical power system. The voltage processor may use the voltage topology and the voltage measurements to perform similar checks on the electrical power system. One or more alarms may be generated responsive to the checks. The data may be displayed to a user in a display of a human machine interface and/or may be transmitted to a user programmable task module, and/or an external control unit.
    • 状态和拓扑处理器(STP)可以通信地耦合到通信地耦合到电力系统的一个或多个智能电子设备(IED),以从其获得一个或多个电流测量值,电压测量值和动态拓扑数据。 STP可以接收测量数据,并且可以从其确定当前的拓扑和电压拓扑。 当前的处理器可以使用当前的拓扑结构和当前的测量来细化测量,执行KCL,不平衡,对称分量和对电力系统的一致性检查。 电压处理器可以使用电压拓扑和电压测量来对电力系统执行类似的检查。 可以响应于检查而产生一个或多个警报。 数据可以在人机接口的显示器中向用户显示和/或可以被发送到用户可编程任务模块和/或外部控制单元。