• Title/Summary/Keyword: HV rotating machine

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Off-Line PD Diagnosis for Stator Winding of Rotating Machines Using a UWB Sensor

  • Lwin, Kyaw-Soe;Park, Noh-Joon;Kim, Hee-Dong;Ju, Young-Ho;Park, Dae-Hee
    • Journal of Electrical Engineering and Technology
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    • v.3 no.2
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    • pp.263-270
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    • 2008
  • We studied partial discharge detection by sensing electromagnetic waves emitted from the partial discharge source in an HV Rotating Machine using a UWB sensor. In this study, we design a new type of compact low frequency UWB sensor based on micro-strip technology. We also perform many experiments of offline and dismantled testing compared with the existing HFCT on stator winding of the HV generator. We mention the detailed design of a new compact UWB sensor along with the time domain PRPD pattern and frequency domain results of partial discharge in the stator winding of a 6.6kV rotating machine by offline testing performed in a laboratory.

PD Diagnosis on High Voltage Rotating by Using New Prototype Patch Antenna Sensor (prototype 패치 안테나를 이용한 고압 회전기의 부분방전 측정 연구)

  • Lwin, K.S.;Shin, D.H.;Lim, K.J.;Kong, T.S.;Kim, H.D.;Park, N.J.;Park, D.H.
    • Proceedings of the KIEE Conference
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    • 2007.04b
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    • pp.169-171
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    • 2007
  • We studied the partial discharge detecting by sensing electromagnetic wave emitted from the partial discharge source in the HV Rotating Machine with the new prototype patch antenna sensor. In this study, we design new type of patch antenna based on microstrip technology and make many experiments of elaine testing compare with the existing HFCT and EM probe on stator winding of HV generator in the laboratory. This paper will mention comparison of experimental results based on the three kinds of sensors.

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Dismantled PD diagnosis on 6.6kV Stator Winding by Using Spiral Patch Antenna Sensor (분리된 6.6kV급 고정자 권선의 부분방전 측정을 위한 Spiral 패치 안테나 센서 적용 연구)

  • Lwin, Kyaw Soe;Shin, Dong-Hoon;Lim, Kwang-Jin;Yang, Hoon;Kong, Tae-Sik;Kim, Hee-Dong;Park, Noh-Joon;Park, Dae-Hee
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.06a
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    • pp.211-212
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    • 2007
  • There have three kinds of partial discharge diagnosis testing: online, offline and dismantled testing on high voltage rotating machine. Our lab testing is dismantled testing, taking off pieces into individual parts of stator coil of high voltage rotating machine in laboratory. We investigate internal discharge, slot discharge, corona discharge and normal state on pre-made stator winding by using spiral patch antenna sensor. In this lab test we compare the experimental results of our spiral patch antenna sensor and reference commercial HFCT sensor.

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PD Diagnosis On High Voltage Rotating Machines using UWB Sensor (UWB 센서 설계를 통한 고압회전기의 부분방전 진단 연구)

  • Lwin, Kyawsoe;Lim, Kwang-Jin;Shin, Dong-Hoon;Kim, Hee-Dong;Park, Noh-Joon;Park, Dae-Hee
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.11a
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    • pp.197-198
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    • 2007
  • We studied the partial discharge detecting by sensing electromagnetic pulse emitted from the partial discharge source in the stator winding of HV Rotating Machine with UWB sensor. In this study, we designed new type of compact low frequency UWB sensor based on micro-strip technology and made experiments of offline dismantled testing compare with the traditional HFCT as a reference sensor in the laboratory. We investigated internal discharge, surface discharge, corona discharge and non-defected state normal stator on pre-made stator winding by using UWB patch sensor.

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Surface Transform of $Si_3N_4$ Ceramics Irradiated by $CO_2$ Laser Beam ($CO_2$ 레이저 빔에 의한 $Si_3N_4$ 세라믹의 반응연구)

  • Kim, S.W.;Lee, J.H.;Seo, J.;Cho, H.Y.;Kim, K.W.
    • Laser Solutions
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    • v.9 no.2
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    • pp.23-30
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    • 2006
  • Silicon Nitride $(Si_3N_4)$, which is widely used in a variety of applications, is hard-to-machine due to its high hardness. At high temperature (e.g. above $1000^{\circ}C)$, however, the machinability can be greatly improved. In this work, we used a $CO_2$ laser with a high absorptivity to $Si_3N_4$ of 0.9 to locally heat the surface of a rotating $Si_3N_4$ rod on a lathe. In order to examine the effects of the laser-assisted heating on hardness, an $Si_3N_4$ rod is heated to temperatures from 900 to $1800^{\circ}C$ and is rotated at speeds from 440-900 rpm in experiments. When the rod is naturally cooled to room temperature, we measured the Vickers hardness (Hv); and observed the surface of HAZ using a scanning electron microscopy (SEM). Energy dispersive spectroscopy (EDS) was used for ingredient analysis. Results showed that when heated at $1600^{\circ}C$, the hardness of $Si_3N_4$ decreased from 1500 Hv to 1000 Hv. Also, in order to predict the depth of HAZ, we numerically analyzed the laser-assisted heating of $Si_3N_4$.

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Surface transform of $Si_3N_4$ ceramics irradiated by $CO_2$ laser beam ($CO_2$ 레이저 빔에 의한 $Si_3N_4$ 세라믹의 반응연구)

  • Kim, Seon-Won;Lee, Je-Hun;Seo, Jeong;Jo, Hae-Yong;Kim, Gwan-U
    • Proceedings of the Korean Society of Laser Processing Conference
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    • 2006.06a
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    • pp.16-24
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    • 2006
  • Silicon Nitride ($Si_3N_4$), which is widely used in a variety of applications, is hard-to-machine due to its high hardness. At high temperature (e.g. above $1000^{\circ}C$), however, the machinability can be greatly improved. In this work, we used a $CO_2$ laser with a high absorptivity to $Si_3N_4$ of 0.9 to locally heat the surface of a rotating $Si_3N_4$ rod on a lathe. In order to examine the effects of the laser-assisted heating on hardness, an $Si_3N_4$ md is heated to temperatures from 900 to $1800^{\circ}C$ and is rotated at speeds from 440-900 rpm in experiments. When the rod is naturally cooled to room temperature, we measured the Victors hardness (Hv): and observed the surface of HAZ using a scanning electron microscopy (SEM). Energy dispersive spectroscopy(EDS) was used for ingredient analysis. Results showed that when heated at $1600^{\circ}C$, the hardness of $Si_3N_4$ decreased from 1500 Hv to 1000 Hv. Also, in order to predict the depth of HAZ, we numerically analyzed the laser-assisted heating of $Si_3N_4$.

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