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公开(公告)号:US11415620B2
公开(公告)日:2022-08-16
申请号:US15910106
申请日:2018-03-02
Applicant: Rosemount Inc.
Inventor: Jeffrey Charles Andle , Jonathan P. Murray , David J. Lane , Thomas M. Cunneen
Abstract: A method of detecting a partial discharge in an electrical asset includes sensing of a discharge current in the electrical asset using a transducer and responsively providing a transducer output; processing the transducer output by comparing the transducer output to a baseline; calculating an accumulated amount by which the transducer output exceeds the baseline; decreasing the accumulated amount with time; detecting partial discharge in the electrical asset based upon the accumulated amount; and providing an output related to detected partial discharge. A partial discharge detection system for detecting a partial discharge in an electrical asset includes a transducer configured to receive a signal from the electrical asset generated due to an occurrence of partial discharging in the electrical asset and responsively providing a transducer output. Processing circuitry compares the transducer output to a baseline, calculates an accumulated amount by which the transducer output exceeds the baseline, decreases the accumulated amount with time, and detects partial discharge in the electrical asset based upon the accumulated amount. Output circuitry provides an output related to detected partial discharge.
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公开(公告)号:US20200106296A1
公开(公告)日:2020-04-02
申请号:US16578743
申请日:2019-09-23
Applicant: Rosemount Inc.
Inventor: Jeffrey C. Andle , David J. Lane , Thomas M. Cunneen , Daniel S. Stevens
IPC: H02J13/00 , H01L41/113 , G06K7/10 , H02J4/00
Abstract: A sensor module for monitoring an asset in an electrical power generation or distribution system includes a module body, a sensor, a sensor near field coupling structure, and an interrogation near field coupling structure. The sensor is supported by the module body, arranged to sense a parameter of the asset and configured to generate a sensor output relating to the parameter. The sensor near field coupling structure is connected to the sensor and supported on a first side of a module body. The interrogation near field coupling structure is supported on a second side of the module body. The sensor output is transmitted from the sensor near field coupling structure to the interrogation near field coupling structure. The sensor module is configured to provide electrical isolation between the asset and a monitoring circuit configured to receive the sensor output through the interrogation near field coupling structure.
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公开(公告)号:US20180252760A1
公开(公告)日:2018-09-06
申请号:US15910106
申请日:2018-03-02
Applicant: Rosemount Inc.
Inventor: Jeffrey Charles Andle , Jonathan P. Murray , David J. Lane , Thomas M. Cunneen
CPC classification number: G01R31/14 , G01R31/1227 , G01R31/1272 , H02H1/0015
Abstract: A method of detecting a partial discharge in an electrical asset includes sensing of a discharge current in the electrical asset using a transducer and responsively providing a transducer output; processing the transducer output by comparing the transducer output to a baseline; calculating an accumulated amount by which the transducer output exceeds the baseline; decreasing the accumulated amount with time; detecting partial discharge in the electrical asset based upon the accumulated amount; and providing an output related to detected partial discharge. A partial discharge detection system for detecting a partial discharge in an electrical asset includes a transducer configured to receive a signal from the electrical asset generated due to an occurrence of partial discharging in the electrical asset and responsively providing a transducer output. Processing circuitry compares the transducer output to a baseline, calculates an accumulated amount by which the transducer output exceeds the baseline, decreases the accumulated amount with time, and detects partial discharge in the electrical asset based upon the accumulated amount. Output circuitry provides an output related to detected partial discharge.
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公开(公告)号:US20190285441A1
公开(公告)日:2019-09-19
申请号:US16227478
申请日:2018-12-20
Applicant: Rosemount Inc.
Inventor: Jeffrey C. Andle , Thomas M. Cunneen , Jonathan P. Murray , David Lane , Maly Chap , Nicholas S. Barbas , Zhi Hans Song
IPC: G01D11/24 , H01R4/2404 , H01R4/2483 , H01R4/50 , H01R4/48 , H01R43/01 , G01H1/00 , G06K19/07
Abstract: A sensor package includes at least one conductive trace providing a voltage common and a base supporting the at least one conductive trace. A conductive extension extends from the base so as to contact a conductor of an insulated conductor when the sensor package is mounted on an insulator of the insulated conductor and thereby provide an electrical connection between the conductive trace providing the voltage common and the conductor.
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公开(公告)号:US10794736B2
公开(公告)日:2020-10-06
申请号:US16227478
申请日:2018-12-20
Applicant: Rosemount Inc.
Inventor: Jeffrey C. Andle , Thomas M. Cunneen , Jonathan P. Murray , David Lane , Maly Chap , Nicholas S. Barbas , Zhi Hans Song
IPC: G06K19/07 , G01D11/24 , H01R4/2404 , H01R4/2483 , H01R4/48 , H01R43/01 , G01H1/00 , H01R4/50 , G01R31/327 , G01R1/04 , G01R15/14 , G01R31/12 , G01R31/08
Abstract: A sensor package includes at least one conductive trace providing a voltage common and a base supporting the at least one conductive trace. A conductive extension extends from the base so as to contact a conductor of an insulated conductor when the sensor package is mounted on an insulator of the insulated conductor and thereby provide an electrical connection between the conductive trace providing the voltage common and the conductor.
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公开(公告)号:US20190137552A1
公开(公告)日:2019-05-09
申请号:US16143811
申请日:2018-09-27
Applicant: Rosemount Inc.
Inventor: Jeffrey C. Andle , Thomas M. Cunneen , David Lane
Abstract: A method for determining a dynamic rating for a conductive path includes using a sensor to measure a value for a load parameter and selecting a heating process associated with the load parameter. A rated temperature change is changed by removing temperature changes due to a heating process other than the selected heating process to produce an impaired rated temperature change. A thermal load percentage is determined from the impaired rated temperature change. The thermal load percentage and the measured value are then used to determine the dynamic rating for the load parameter. A method also includes measuring a temperature rise, a current, and a voltage on the conductive path multiple times. Using at least two basis functions and the multiple measured temperature rises, currents and voltages, the values for at least two variables are determined. Trends in each variable are determined to determine a condition of electric equipment.
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公开(公告)号:US20160161543A1
公开(公告)日:2016-06-09
申请号:US14961321
申请日:2015-12-07
Applicant: Rosemount Inc.
Inventor: Jeffrey Charles Andle , Thomas M. Cunneen , Maly Chap
CPC classification number: G01R31/1272 , G01R31/1218 , G01R31/14
Abstract: A partial discharge detection system for detecting partial discharge events in an electrical component includes a transducer configured to receive a signal from the electrical component generated due to an occurrence of a partial discharge in the electrical component and responsively provide a transducer output signal to a signal processing chain A signal processing chain comprises one or more of the following. A filter coupled to the transducer filters the transducer output signal and responsively generating a filtered output. An amplifier coupled to the filter amplifies the filtered output and responsively provide an amplified output. A detector converts the amplified output to a detected baseband signal. A filter removes elements of the baseband signal that are not characteristic of partial discharge and outputs a filtered baseband output. A peak hold system matches the time scale of partial discharge events to the timescale of an analog to digital conversion process, resulting in a sampled, filtered, baseband signal. A digital signal processor performs a Discrete Fourier Transform (DFT) on the filtered baseband output and responsively generates a plurality of coefficients which correspond to a plurality of different modulation frequencies of the sampled, filtered, baseband signal. A controller identifies an occurrence of a partial discharge in the electrical component based upon the plurality of coefficients.
Abstract translation: 用于检测电气部件中的局部放电事件的局部放电检测系统包括:换能器,被配置为接收由于在电气部件中发生局部放电而产生的电气部件的信号,并响应于将信号处理 链A信号处理链包括以下一个或多个。 耦合到换能器的滤波器对换能器输出信号进行滤波并响应地产生滤波输出。 耦合到滤波器的放大器放大滤波后的输出并且响应地提供放大的输出。 检测器将放大的输出转换为检测到的基带信号。 滤波器去除不是局部放电特征的基带信号的元件,并输出滤波后的基带输出。 峰值保持系统将局部放电事件的时间尺度与模数转换过程的时间尺度相匹配,产生采样,滤波的基带信号。 数字信号处理器在滤波后的基带输出上执行离散傅里叶变换(DFT),并且响应地产生对应于采样的,滤波的基带信号的多个不同调制频率的多个系数。 控制器基于多个系数来识别电气部件中的局部放电的发生。
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公开(公告)号:US11448682B2
公开(公告)日:2022-09-20
申请号:US15910106
申请日:2018-03-02
Applicant: Rosemount Inc.
Inventor: Jeffrey Charles Andle , Jonathan P. Murray , David J. Lane , Thomas M. Cunneen
Abstract: A method of detecting a partial discharge in an electrical asset includes sensing of a discharge current in the electrical asset using a transducer and responsively providing a transducer output; processing the transducer output by comparing the transducer output to a baseline; calculating an accumulated amount by which the transducer output exceeds the baseline; decreasing the accumulated amount with time; detecting partial discharge in the electrical asset based upon the accumulated amount; and providing an output related to detected partial discharge. A partial discharge detection system for detecting a partial discharge in an electrical asset includes a transducer configured to receive a signal from the electrical asset generated due to an occurrence of partial discharging in the electrical asset and responsively providing a transducer output. Processing circuitry compares the transducer output to a baseline, calculates an accumulated amount by which the transducer output exceeds the baseline, decreases the accumulated amount with time, and detects partial discharge in the electrical asset based upon the accumulated amount. Output circuitry provides an output related to detected partial discharge.
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公开(公告)号:US20210391100A1
公开(公告)日:2021-12-16
申请号:US17345971
申请日:2021-06-11
Applicant: Rosemount Inc.
Inventor: Jeffrey C. Andle , Thomas M. Cunneen
Abstract: The disclosed embodiments provide a plurality of antennas that can be interconnected with each other and with a central receiver in a self-assembling manner, such that antennas can be added, removed, and replaced with minimal configuration. Each antenna comprises an antenna feed circuit, an input connector, and an output connector. Each of the antennas may be configured to assign a first set of signal channels at its output connector to a second set of signal channels at its input connector (or vice versa) according to a predetermined or dynamically determined mapping. Each antenna may be further configured to assign a signal channel at its input connector to the signal it receives at its antenna feed circuitry. By sharing the same configuration for mapping signal channels between the antennas' input and output connectors and feed circuitry, the antennas can be added or removed in a sequence of antennas using simple cable connections and without having to rewire the connections at the central receiver.
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公开(公告)号:US11067639B2
公开(公告)日:2021-07-20
申请号:US16143811
申请日:2018-09-27
Applicant: Rosemount Inc.
Inventor: Jeffrey C. Andle , Thomas M. Cunneen , David Lane
Abstract: A method for determining a dynamic rating for a conductive path includes using a sensor to measure a value for a load parameter and selecting a heating process associated with the load parameter. A rated temperature change is changed by removing temperature changes due to a heating process other than the selected heating process to produce an impaired rated temperature change. A thermal load percentage is determined from the impaired rated temperature change. The thermal load percentage and the measured value are then used to determine the dynamic rating for the load parameter. A method also includes measuring a temperature rise, a current, and a voltage on the conductive path multiple times. Using at least two basis functions and the multiple measured temperature rises, currents and voltages, the values for at least two variables are determined. Trends in each variable are determined to determine a condition of electric equipment.
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