• Title/Summary/Keyword: Lightning Parameters

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A Numerical Approach for Lightning Impulse Flashover Voltage Prediction of Typical Air Gaps

  • Qiu, Zhibin;Ruan, Jiangjun;Huang, Congpeng;Xu, Wenjie;Huang, Daochun
    • Journal of Electrical Engineering and Technology
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    • v.13 no.3
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    • pp.1326-1336
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    • 2018
  • This paper proposes a numerical approach to predict the critical flashover voltages of air gaps under lightning impulses. For an air gap, the impulse voltage waveform features and electric field features are defined to characterize its energy storage status before the initiation of breakdown. These features are taken as the input parameters of the predictive model established by support vector machine (SVM). Given an applied voltage range, the golden section search method is used to compute the prediction results efficiently. This method was applied to predict the critical flashover voltages of rod-rod, rod-plane and sphere-plane gaps over a wide range of gap lengths and impulse voltage waveshapes. The predicted results coincide well with the experimental data, with the same trends and acceptable errors. The mean absolute percentage errors of 6 groups of test samples are within 4.6%, which demonstrates the validity and accuracy of the predictive model. This method provides an effectual way to obtain the critical flashover voltage and might be helpful to estimate the safe clearances of air gaps for insulation design.

Study on the Characteristics of Constant Voltage Transformer for the changes of the circuit parameters (정전압 변압기의 회로정수에 따른 특성 변화에 관한 연구)

  • Joo Hyeong-Gil;Han Jae-Won
    • Proceedings of the KIPE Conference
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    • 2001.07a
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    • pp.627-629
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    • 2001
  • The constant voltage transformer(CVT) is a voltage regulator that has a high reliability, a good short circuit characteristic, a high input power factor, and a relative immunity to lightning strike. Moreover, this has a good line regulation without a voltage feedback control. In this paper, the characteristics of CVT for the changes of input voltage and other circuit parameters are investigated.

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Parameters of the Electric and Magnetic Fields Due to Cloud-to-Ground Lightnings (낙뢰에 의한 전계와 자계 파형의 파라미터)

  • 이복희;안창환
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.9 no.3
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    • pp.359-368
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    • 1998
  • One of the topics concerning the electromagnetic compatibility of modern electronic circuits is to take protection from transient overvoltages caused by not only cloud-to-ground lightnings but also induced lightning discharges. In this paper, the vertical electric and horizontal magnetic fields from cloud-to-ground lightnings were measured and analyzed. The electric and magnetic fields waveforms associated with cloud-to-ground lightnings have several subsidiary peaks which decrease with time. There were not much differences between the electric and magnetic field due to long distance cloud-to-ground discharges. Average values of 10~90% rise times of electric fields are $4.65mutextrm{s}$ for the positive cloud-to-ground lightning and $3.29mutextrm{s}$ for the negative cloud-to-ground lightning, respectively. Also, in the positive and negative cloud-to-ground lightning discharges, the zero-to-zero crossing times in the wave tail of magnetic fields are significantly longer than those of the electric fields.

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Changes of Electrical Characteristics of Low-voltage ZnO Varistors by a lightning Impulse Current (뇌충격전류에 의한 저압용 산화아연형 바리스터의 전기적 특성변화)

  • 이종혁;한주섭;길경석;권장우;송동영;최남섭
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.4 no.4
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    • pp.793-801
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    • 2000
  • This paper presents the effect of lightning impulse current on ZnO varistors(390[V], 6.5[kA]) used in low-voltage AC mains as a protective device against transient overvoltages. The electrical characteristics of ZnO varistors are deteriorated by overtime impulse current, and a deteriorated ZnO varistor is brought to a thermal runaway and finally destroyed even in normal operating voltage. Therefore, it is important to estimate the changes of the electrical characteristics of ZnO varistors. A lightning impulse current standardized in IEC 61000-4-5 is applied to the varistors to accelerate deterioration, and the energy applied to the varistor at each time is about 12 [J]. In the experiment, various parameters such as leakage current, reference voltage are measured with the number of applied impulse current. Also, micro-structure changes of the varistors after applying the lightning impulse current of 200 times are compared. The electrical characteristics of the varistors are degraded by overtime impulse current, showing increase in leakage current and decrease in reference voltage.

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Analysis on Multi-phase Flashover in 765(㎸) Transmission Line Using ATP (ATP를 이용한 765(㎸) 송전선 다상 섬락해석)

  • 민석원;송기현
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.18 no.4
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    • pp.73-82
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    • 2004
  • This paper investigates a lightning multi-phase flashover on extra high voltage transmission line, which has influence on power systems very much, by the use of ATP. Especially we validated an arcing horn model represented by the nonlinear inductance and resistance which is the most important on the simulation for a multi-phase flashover. We also study relationships between lightning parameters and flashover phases in 765(㎸) double circuit transmission system.

Data Transmission over Power Line with Lightning Protection Devices

  • Kim, Sungeon;Jeon, Taehyun
    • International journal of advanced smart convergence
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    • v.2 no.1
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    • pp.27-29
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    • 2013
  • This paper discusses comparative analysis of the effects of surge protection devices (SPD) upon the power line communication channels. The quality of the data transmission channel is measured based on the data rate for the various channel parameters which include channel length and application method of the lightning protection device. The performance measurements are also carried out for various lengths of the communication channel. Experiment results show that specific combination of SPDs applied in the network causes severe degradation of the channel quality which is associated with the combination of grade levels and channel lengths.

Development of the Lightning Surge Voltage and Current Counters (뇌써지 전압/전류 카운터의 개발)

  • Kil, K.S.;Chang, S.H.;Lee, B.H.;Lee, Y.K.;Lee, B.K.;Ohk, Y.H.
    • Proceedings of the KIEE Conference
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    • 1996.07c
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    • pp.1882-1884
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    • 1996
  • This paper deals with the lightning surge counter. In order to install the effective surge protective devices, it is important to find the parameters of incident surges. For the purpose of observing the occurrence frequency as a parameter of the amplitude of surge, two type surge counters were designed and fabricated. One is operated by surge currents, and the other is operated by surge voltages. The former consists of current sensor, metal oxide varister (MOV), rectifier, capacitor and electromagnetic counter. The latter consists of rectifier, voltage divider, comparator, photo coupler and counter circuit, and is useful for detecting the surge voltages.

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Design and Implementation of Wideband Grounding Impedance Measurement Device using IQ Demodulation Method (IQ 복조 기법을 이용한 광대역 접지 임피던스 측정기의 설계 및 구현)

  • Kim, Young-Jin;Gil, Hyung-Jun;Kim, Sung-Ju;Kim, Jae Hyung
    • Journal of the Korean Society of Safety
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    • v.31 no.6
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    • pp.19-24
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    • 2016
  • One of key parameters on lightning protection system design of electric, information and communication system is grounding impedance. Earth impedance includes numerous information about earthing performance of grounding system. This paper suggests grounding impedance measuring device which is comprised of wideband current source, voltage and current measuring components. We used IQ Demodulation to measure more accurate phase difference of voltage and current. The range of frequency is up to 1 MHz that is IEEE defined as the range of lightning surge. We compared developed grounding impedance measuring device with existing one to test its performance, and we used grounding system while we implemented measurement and analysing by using fall of potential method IEEE Std.81 proposed.

Design and Fabrication of a Lightning Arrester Analyzer (피뢰기 진단장치의 설계 및 제작)

  • Kil Gyung-Suk;Han Ju-Seop;Seo Hwang-Dong
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.53 no.11
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    • pp.572-576
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    • 2004
  • Various devices for diagnosing arrester soundness are suggested, and most of them simply measure magnitude of leakage current. However, such kind of devices do not provide detailed information needed for the diagnosis. In this study, we designed and fabricated a new arrester analyzer by means of measuring the magnitude, the phase vs. wave height and the harmonics of total leakage currents. The analyzer is composed of a current detector, an optical linker, and a main device operated by a microprocessor. The main device is connected with leakage current detector optically not to be influenced by electromagnetic interference. The analyzer developed measures only total leakage currents, but analyzes most parameters needed for the arrester diagnostics.

Current Driving Type Surge Counter (전류구동형 서지카운터)

  • Lee, B.H.;Ahn, C.H.;Chang, S.H.;Jeong, K.M.;Jeon, D.K.
    • Proceedings of the KIEE Conference
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    • 1997.07e
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    • pp.1712-1714
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    • 1997
  • This paper deals with the surge counter drived by lightning and switching currents. In order to install the effective surge protective devices, it is important to find the parameters of incident surges. In this paper, for the purpose of protecting the electronic circuits and counting the occuring frequency, the current driving type surge counter is designed and fabricated. The surge counter consists of surge protective divices, current detector, metal oxide varistor(MOV), rectifier, capacitor, and electromagnetic counter. This surge counter is able to count the occuring frequency of surges and to clamp lightning surge current. To evaluate the performance of the surge counter, impulse voltage and current were applied at the surge counter by the surge generator. As a result, applied surges were exactly counted and clamped.

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