• Title/Summary/Keyword: Voltage deterioration

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The Treeing Deterioration with Prestressed D.C Voltage in Low Density Polyethylen Mixed with Organic Compounds (유기물이 첨가된 저밀도 폴리에칠렌에서 예비과전에 따른 트리잉 열화)

  • 채홍인;양계준;임기조
    • Journal of the Korean Society of Safety
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    • v.6 no.2
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    • pp.15-20
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    • 1991
  • In this paper, we have investigated the effect of organic additives and prestressed D C. voltage on the impulse tree initiation in low density polyethylene. The five klnds of organic compounds was selected for the purpose of inhibiting tree initiation and 10 wt % of each additive was mixed in low density polyethylene. The positive or negative impulse voltage was applied after prestressed D.C. voltage was applied in order to investigate the effect of the space charge influenced on tree initiation. The lengths of tree initiation in case of belng same polarity between prestressed D.C. voltage and impulse voltage were longer than those in case of being different polarity between prestressed D.C. voltage and impulse voltage. When the polarity prestressed D.C. voltage was the different plarity of impulse voltage, the length of tree initiation increased with increasing the prestressed D.C. voltage and decreasing the rest time Among the organic additives used in this paper, the m-cresol can be shown to be the most effective inhibiter to tree initiation.

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Studies on Generation and Detection of Discharge Signals in a Low-voltage Outlet (저압용 전열수구에서 방전 신호의 발생과 검출에 관한 연구)

  • Kil, Gyung-Suk;Song, Jae-Yong;Seo, Hwang-Dong;Moon, Seung-Bo;Cho, Young-Jin;Hwang, Don-Ha
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.54 no.11
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    • pp.498-502
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    • 2005
  • The objectives of this paper are to provide information on the characteristics of the discharge signals in a low-voltage indoor outlet. Most of electrical fires are caused by short circuits, overheating of wires, deterioration and incomplete connection of wiring devices. The last two cases are predictable before the occurrence of fire because of its slow progress. We have simulated the discharge signals caused by the deterioration and incomplete connection of wiring devices using aged outlets. From the experimental data, we could characterize the frequency spectrums of the discharge signals depending on the cases. The higher frequency components of the signal are attenuated by the capacitance and inductance of power lines as the measuring point is getting away from the discharges. Main frequency components of the discharge signal are existent at 600kHz - 1.5MHz in incomplete connections and at 210H7z - 8MHz in deteriorations of the outlet.

Insulation Breakdown Frequency Properties of PAI Enamelled Rectangular Coils According to Thermal Deterioration Temperature Variation (열적 열화 온도 변화에 따른 PAI 에나멜 각형코일의 절연 파괴 주파수 특성)

  • Park, Jae-Jun
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.29 no.12
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    • pp.829-834
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    • 2016
  • Coil specimens were prepared by continuous coating on a copper wire with flexible PAI (polyamideimide) and PAI/nanosilica (5 wt%) varnish and thermally aged at 150, 200 and $250^{\circ}C$ for 5, 10 and 15 days, respectively. AC insulation breakdown voltage was investigated under inverter surge condition at 60 Hz and 1,000 Hz and insulation breakdown voltage decreased with increasing aging temperature and aging time at each 60 and 1,000 Hz.

Measurement of the Tracking Deterioration Process in Organic Insulating Materials with (유기절연 재료에 있어서 IR Sensor를 이용한 Tracking 열화기구의 연구)

  • Yi, Dong-Young;Han, Min-Ku
    • Proceedings of the KIEE Conference
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    • 1989.07a
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    • pp.370-373
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    • 1989
  • It has been reported that the formation of conductive carbon path is mainly affected by scintillation. In this paper, mechanisms of tracking deterioration are reviewed by counting light pulse with IR photodiode. The influence of applied voltage and molecular composition of materials in the tracking breakdown is also reviewed by the Number of Pulse curve.

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A Study on the Deterioration Process of 22kV Power Cables in Operation (운전 중인 상태에 있는 22kV 전송선로 케이블의 열화 과정해석에 대한 연구)

  • Lee, Kwan-Woo;Um, Kee-Hong
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.13 no.3
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    • pp.127-133
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    • 2013
  • As an essential part of current industrial society, electric power energy is contantaly increasing in pace with the development of science and technology. In order to meet the demand of electric power, power facilities which take care of the higher voltage and bigger capacity is required. To produce and supply electric power on a sound basis the electric facilities should operate with reliability. To prevent disasters in advance, the high quality facilities should be manufactured, and a constant management should be done. When the power facilities cause accidents, the result is huge national deficits. Since the power facilities play a pivotal role in the key industry of national infrastructures of they should operate for a long time in maintaining a stable state, and the accidents can be prevented in advance. The lifetime of a power cable is considered to be 30 years at the time of manufacture, but in real fields, accidents of cable occur 8-12 years from the start of operation, resulting in a heavy loss of properties. In this paper, we will show that we have found out the cause and process of the deterioration of 22kV cable systems in operation. The result is that the process of deterioration does not follow the Weibull distribution only ; but rather, after the heat deterioration the Weibull distributed deterioration comes, then the cable is destroyed due to the partial discharge resulting from the Weibull distributed deterioration.

Effect of Temperature on the Deterioration of Graphite-Based Negative Electrodes during the Prolonged Cycling of Li-ion Batteries

  • Yang, Jin Hyeok;Hwang, Seong Ju;Chun, Seung Kyu;Kim, Ki Jae
    • Journal of Electrochemical Science and Technology
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    • v.13 no.2
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    • pp.208-212
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    • 2022
  • In this paper, we report the effects of temperature on the deterioration of graphite-based negative electrodes during the longterm cycling of lithium-ion batteries (LIBs). After cycling 75 Ah pouch-type LIB full cells at temperatures of 45℃ (45-Cell) and 25℃ (25-Cell) until their end of life, we expected to observe changes in the negative electrode according to the temperature. The thickness of the negative electrode of the cell was greater after cycling; that of the electrode of 45-Cell (144 ㎛) was greater than that of the electrode of 25-Cell (109 ㎛). Cross-sectional scanning electron microscopy analysis confirmed that by-products caused this increase in the thickness of the negative electrode. The by-products that formed on the surface of the negative electrode during cycling increased the surface resistance and decreased the electrical conductivity. Voltage profiles showed that the negative electrode of 25-Cell exhibited an 84.7% retention of the initial capacity, whereas that of 45-Cell showed only a 70.3% retention. The results of this study are expected to be relevant to future analyses of the deterioration characteristics of the negative electrode and battery deterioration mechanisms, and are also expected to provide basic data for advanced battery design.

Analysis on the Voltage, Current and Temperature Signals for Free and Locked Operation of Three Speed Electric Fan (3단 스피드 선풍기 모터의 정상 및 고정 운전에 대한 전압, 전류 및 온도 신호 분석)

  • Kim, Yoon Bok;Kim, Doo Hyun
    • Fire Science and Engineering
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    • v.28 no.3
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    • pp.87-91
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    • 2014
  • This paper is aimed to find electrical fire danger for analyzing the characteristics of temperature, current and voltage signals for motor on electric fan. In order to attain this purpose, detected were the temperature, current and voltage signals on electric wire with free (normal state) and locked (abnormal state) motor. For voltage and current signals, voltage signal is no big difference with normal and abnormal states and current signal is higher in abnormal state (highest 309 mA) than the normal state (highest 203 mA). In the case of Temperature signal, the temperature distribution of the motor as a whole is different. It is difference in the case of the normal state $4^{\circ}C$ and the abnormal state $18^{\circ}C$. In particular, most of the electric wiring to the motor of the fan is attached to the fixture of motor back. Considering at allowable temperature ($60^{\circ}C$) of the electric wire could be accelerated to insulation deterioration. The results of this study will be effectively used in analyzing for electric fire and developing the preventive devices of electric fan.

PD Occurrence Characteristics according to Voltage and Time in Solid Insulator

  • Park, Sung-Hee;Shin, Dal-Woo;Lim, Kee-Joe;Park, Young-Guk;Kang, Sung-Hwa
    • KIEE International Transactions on Electrophysics and Applications
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    • v.3C no.1
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    • pp.10-14
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    • 2003
  • The occurrence of partial discharge (PD) in solid dielectrics is very harmful because it leads to the deterioration of insulation by electrical, chemical, and thermal reactions as a combined action of the discharged ions bombarding the surface and by the action of chemical compounds that are formed by the discharge. Consequently, if any defects are present in the solid insulation system, performance decreases until the system breaks down. Therefore, removing or suppressing the defect is very important. Voids are a typical defect in the solid insulation system and are very harmful because they deteriorate insulation. As a basic step, studying the properties of PD in voids is important because an accurate knowledge of these properties is required to estimate the deterioration of voids. In this paper, the correlation between the size of voids and internal PD is discussed as a function of the time of the applied voltage and its magnitude. Magnitude, repetition rate, average discharge power, and average discharge current of PD in specimens with large voids were found to be larger than the others in this experiment. The smaller specimens had voids when the magnitude and number of PDs were reduced.

A Study on the Influence of Harmonics in Power System Voltage on Arrester Diagnostics and its Compensation (피뢰기 열화진단에 있어 전원 고조파의 영향과 보정에 관한 연구)

  • Kim, Il-Kwon;Song, Jae-Yong;Han, Ju-Seop;Kil, Gyung-Suk;Rhyu, Keel-Soo;Cho, Han-Goo
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.54 no.11
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    • pp.493-497
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    • 2005
  • This paper dealt with the influence of harmonic voltages on arrester diagnostics and its compensation method by using a designed Pspice arrester model. A pure sinusoidal voltage and its 3$^{rd}$ harmonic voltage were applied to the model, and the leakage current components were analyzed. The simulation results have shown that the peak value of resistive leakage current depends not only on the phase of the 3$^{rd}$ harmonic voltage but also on the magnitude of it. In this paper, an approximated 5$^{th}$ order polynomial formula by the Least-Square-Technique was derived, and correction factors which compensate the error caused by the 3$^{rd}$ harmonic voltage were calculated.

Behavior of Residual Charges in Water-tree Degraded XLPE Sheets and Cable

  • Ebinuma, Yasumitsu;Masui, Noriaki
    • Transactions on Electrical and Electronic Materials
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    • v.7 no.5
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    • pp.224-229
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    • 2006
  • Many studies have been done on the application of residual charge measurement in cable degradation diagnosis. In this paper, the behavior of residual charges measured with water-tree degraded XLPE sheets and cable are discussed. At charge injection process, the charge is injected by applying dc voltage as a conventional method, suddenly cut-off ac voltage or impulse voltage. Therefore the residual charge is influenced by the applying process. At charge release process, transient dc current flows when applying ac high voltage and also ac high voltage superimposed to dc low voltage. From the results, new diagnosis method is suggested.