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    • 3. 发明授权
    • Current sensor assembly
    • 电流传感器组件
    • US07557563B2
    • 2009-07-07
    • US11335793
    • 2006-01-19
    • Colin N. GunnStewart J. HardingMarc A. RicciDaniel N. LoewenPeter C. CowanMartin A. Hancock
    • Colin N. GunnStewart J. HardingMarc A. RicciDaniel N. LoewenPeter C. CowanMartin A. Hancock
    • G01R15/18
    • G01R15/183G01R1/18G01R1/22G01R15/186
    • A sensor apparatus for measuring power parameters on a power conductor, such as a high voltage transmission line may include a corona structure, an electronics assembly and a conductor mountable device. The corona structure may define an outer boundary surrounding the electronics assembly and the conductor mountable device. The corona structure may shield the electronic assembly and conductor mountable device from a corona produceable with the power conductor. The conductor mountable device may be a power parameter measurement device, such as a current sensor assembly. The current sensor assembly may be a split-core design that includes multiple transformer cores. The electronics assembly and the conductor mountable device may powered from a line voltage suppliable on the power conductor. Data may be wirelessly transmitted and received with the sensor apparatus.
    • 用于测量诸如高压传输线的电力导体上的功率参数的传感器装置可以包括电晕结构,电子组件和导体可安装装置。 电晕结构可以限定电子组件和导体可安装装置周围的外边界。 电晕结构可以屏蔽电子组件和导体可安装装置免受可用电力导体产生的电晕。 导体可安装装置可以是功率参数测量装置,例如电流传感器组件。 当前的传感器组件可以是包括多个变压器芯的分裂芯设计。 电子组件和导体可安装装置可以由可在电源导体上提供的线路电压供电。 可以使用传感器装置无线地发送和接收数据。
    • 6. 发明授权
    • Revenue meter with power quality features
    • 电力质量特征的收入表
    • US07342507B2
    • 2008-03-11
    • US11208926
    • 2005-08-22
    • Rene T. JonkerPiotr B. PrzydatekColin N. GunnMichael E. TeachmanConstantine A. Antoniou
    • Rene T. JonkerPiotr B. PrzydatekColin N. GunnMichael E. TeachmanConstantine A. Antoniou
    • G08B23/00
    • G01R21/133
    • Power quality detection, monitoring, reporting, recording and communication in a revenue accuracy electrical power meter is disclosed. Transient events are detected by monitoring the wave shape of the electrical power and comparing deviations to a known threshold. Sags and Swells are detected by computing root mean square value over a rolling window and comparing the computed value with a known threshold. Harmonic frequencies and symmetrical components are quantified by a known algorithm and compared with a known threshold. Incoming waveforms are stored to memory. All recorded and computed data is moved to non-volatile storage via direct memory access transfer in the event that a power quality event jeopardizes the operating power of the meter. Further, the meter provides a power supply utilizing high and low capacitive storage banks to supply sufficient energy to survive short duration power quality events which jeopardize the meter's operating power.
    • 公开了电力质量检测,监控,报告,记录和通信在收入精确度电表中。 通过监测电功率的波形并将偏差与已知阈值进行比较来检测瞬态事件。 通过在滚动窗口上计算均方根值并将计算的值与已知阈值进行比较来检测下垂和骤升。 谐波频率和对称分量由已知算法量化,并与已知阈值进行比较。 输入波形存储到存储器中。 在电力质量事件危及仪表的工作功率的情况下,所有记录和计算的数据都通过直接存储器访问传输移动到非易失性存储器。 此外,该仪表提供利用高和低电容性存储库的电源,以提供足够的能量以在短时间内的电能质量事件中存活,从而危及电表的工作功率。
    • 7. 发明授权
    • Revenue meter with power quality features
    • 电力质量特征的收入表
    • US06792364B2
    • 2004-09-14
    • US10233962
    • 2002-09-03
    • Rene T. JonkerPiotr B. PrzydatekColin N. GunnMichael E. TeachmanConstantine A. Antoniou
    • Rene T. JonkerPiotr B. PrzydatekColin N. GunnMichael E. TeachmanConstantine A. Antoniou
    • G01R1925
    • G01R21/133
    • Power quality detection, monitoring, reporting, recording and communication in a revenue accuracy electrical power meter is disclosed. Transient events are detected by monitoring the wave shape of the electrical power and comparing deviations to a known threshold. Sags and Swells are detected by computing root mean square value over a rolling window and comparing the computed value with a known threshold. Harmonic frequencies and symmetrical components are quantified by a known algorithm and compared with a known threshold. Incoming waveforms are stored to memory. All recorded and computed data is moved to non-volatile storage via direct memory access transfer in the event that a power quality event jeopardizes the operating power of the meter. Further, the meter provides a power supply utilizing high and low capacitive storage banks to supply sufficient energy to survive short duration power quality events which jeopardize the meter's operating power.
    • 公开了电力质量检测,监控,报告,记录和通信在收入精确度电表中。 通过监测电功率的波形并将偏差与已知阈值进行比较来检测瞬态事件。 通过在滚动窗口上计算均方根值并将计算的值与已知阈值进行比较来检测下垂和骤升。 谐波频率和对称分量由已知算法量化,并与已知阈值进行比较。 输入波形存储到存储器中。 在电力质量事件危及仪表的工作功率的情况下,所有记录和计算的数据都通过直接存储器访问传输移动到非易失性存储器。 此外,该仪表提供利用高和低电容性存储库的电源,以提供足够的能量以在短时间内的电能质量事件中存活,这损害了仪表的工作功率。
    • 8. 发明授权
    • A-base revenue meter with power quality features
    • 具有电源质量特性的A基本收入表
    • US06493644B1
    • 2002-12-10
    • US09371883
    • 1999-08-09
    • Rene T. JonkerPiotr B. PrzydatekColin N. GunnMichael E. TeachmanConstantine A. Antoniou
    • Rene T. JonkerPiotr B. PrzydatekColin N. GunnMichael E. TeachmanConstantine A. Antoniou
    • G01R2106
    • G01R21/133
    • Power quality detection, monitoring, reporting, recording and communication in a revenue accuracy electrical power meter is disclosed. Transient events are detected by monitoring the wave shape of the electrical power and comparing deviations to a known threshold. Sags and Swells are detected by computing root mean square value over a rolling window and comparing the computed value with a known threshold. Harmonic frequencies and symmetrical components are quantified by a known algorithm and compared with a known threshold. Incoming waveforms are stored to memory. All recorded and computed data is moved to non-volatile storage via direct memory access transfer in the event that a power quality event jeopardizes the operating power of the meter. Further, the meter provides a power supply utilizing high and low capacitive storage banks to supply sufficient energy to survive short duration power quality events which jeopardize the meter's operating power.
    • 公开了电力质量检测,监控,报告,记录和通信在收入精确度电表中。 通过监测电功率的波形并将偏差与已知阈值进行比较来检测瞬态事件。 通过在滚动窗口上计算均方根值并将计算的值与已知阈值进行比较来检测下垂和骤升。 谐波频率和对称分量由已知算法量化,并与已知阈值进行比较。 输入波形存储到存储器中。 在电力质量事件危及仪表的工作功率的情况下,所有记录和计算的数据都通过直接存储器访问传输移动到非易失性存储器。 此外,该仪表提供利用高和低电容性存储库的电源,以提供足够的能量以在短时间内的电能质量事件中存活,从而危及电表的工作功率。