• Title/Summary/Keyword: Grounding impedance

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Two Switches Balanced Buck Converter for Common-Mode Noise Reduction

  • Kanjanasopa, Warong;Prempraneerach, Yothin
    • 제어로봇시스템학회:학술대회논문집
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    • 2004.08a
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    • pp.493-498
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    • 2004
  • The EMI noise source in a switching mode power supply is dominated by a common mode noise. If we can understand the common mode noise occurring mechanism, it is resulted to find out the method to suppress the EMI noise source in the switching mode power supply. The common mode noise is occurring mostly due to circuit is unbalanced which is caused by the capacitive coupling to frame ground, which passes through a heatsink of the switching devices. This research paper presents a new effective balancing method of buck converter circuit by mean of grounding the parasitic and compensation capacitors in correct proportion which is called that the common mode impedance balance (CMIB). The CMIB can be achieved by source, transmission line and termination balanced, such balancing, the common mode current will be cancelled out in the frame ground. The greatly reduced common mode noise can be confirmed by the experimental results.

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Lightning impulse characteristics of large-scale ground rods with different length (대형 봉상 접지전극의 길이에 따른 뇌 임펄스 특성)

  • Lee, B.H.;Chang, K.C.;Eom, J.H.;Kim, B.K.;Jeong, D.C.;Kil, H.J.
    • Proceedings of the KIEE Conference
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    • 2003.10a
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    • pp.233-235
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    • 2003
  • To obtain a low ground resistance in high resistivity soil or in insufficient place such as downtown, long vertical ground rods are often used. However, if the lightning current or fault current with high frequency flows into the grounding system, the ground impedance is significantly increased. This paper presents how the impulse current works on the long vertical ground rods with a different length. As a result, it can be estimated what the waveform is composed of and how the GPR is affected by the rate of current change.

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Modeling and Transient Analysis of Cable in Combined Transmission Line with HIF and Analysis of Transient Characterstic in CCPU of Uderground Cable (혼합송전선로에서 고저항 지락사고시 케이블 과도현상 해석 및 전력케이블 시스 접지저항에 따른 CCPU 과도특성 모의)

  • Jung, Che-Kyun;Lee, Jong-Beom
    • Proceedings of the KIEE Conference
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    • 2000.07a
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    • pp.446-448
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    • 2000
  • This paper discribes the modeling and transient analysis of cable in combined transmission line under high impedance fault(HIF). And also, transient characterstic analyzed on cable covering protection unit(CCPU) is presented. Modeling of the combined transmission line is established in PSCAD/EMTDC V3. The required data to analyze the transient phenomena is given from the actual system. The results show the HIF modeling in cable, fault current according to the value of fault resistance. And also when the value and method of grounding resistance is changed in CCPU, simulation results are presented.

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Analysis for Autotransformer-Fed AC Electric Railroad System Using Constant Current Mode (정전류 철도 부하를 이용한 교류 전기 철도 급전 시스템 해석)

  • 이승혁;정현수;김진오
    • Proceedings of the KSR Conference
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    • 2001.10a
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    • pp.329-334
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    • 2001
  • This paper presents exact autotransformer-fed AC electric railroad system modeling using constant current mode. The theory is based on the solution of algebraic. The proposed modeling is considered the line self-impedances and mutual-impedances. Besides, the load modeling improved results are obtained as application to the proposed constant current mode. In the analysis on AT-fed AC electric railroad system circuit, a generalized analysis method using the loop equation on a case by case. the simulation objectives are to calculate the catenary and rail voltages with respect to ground, as the train moves along a section of line between two adjacent ATs. The model contains assumptions regarding the representation of the autotransformer, the impedance of the track/catenary system, and the grounding arrangements, which all effect the accuracy of the result. The modeling results seem very reasonable. It is established that techniques for the AC electric railroad system modeling and analysis.

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Ground Impedance Characteristics for Grounding System on Power Substation (정상시 접지계통의 접지 임피던스 특성)

  • Kim, Jae-Yee;Ko, Young-Hyuk;Ko, Young-Gwon;Kim, Jeong-Bu;Jeong, Kil-Jo;Ki, Hyun-Chan;Choi, Jong-Ki
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.2207-2209
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    • 2000
  • 본 논문에서는 접지 모델을 활용하여 접지계의 임펄스 임피던스를 계산하고, 선로 임피던스에 연결된 접지 임피던스의 반사계수를 계산하여 대지로 유입되는 분류율을 평가하였다. 따라서 접지 저항을 낮추는 경우 평상시 전위 상승효과를 줄일 수는 있지만 위험전압의 인가시에는 인축의 안전과 기기의 절연 측면에서 악조건의 상황이 될 수 있다. 또한 접지 모델에서 용량의 변화와 접지 저항의 변화에 따른 반사계수의 변화를 확인하였고, 상용 주파수 근처에서는 저항 성분만 존재하고 리액턴스 효과는 없음을 확인하였다.

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Property of Long vertical rod according to the different injection point with impulse current (대형 봉상 접지전극의 임펄스 인가위치에 따른 특성)

  • 이복희;장근철;엄주홍;김병근;오성균;길형준
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2003.11a
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    • pp.369-372
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    • 2003
  • To obtain a low ground resistance in high resistivity soil or in insufficient place such as downtown, long vertical ground rods are often used. However, if the lightning current or fault current with high frequency flows into the grounding system, the ground impedance is remarkedly increased. This paper presents how the impulse and fault current works on the long. vertical ground rods associated with incoming points. When the test current was injected at the bottom of ground rod, the potential waveform of ground rod includes the oscillation with high frequency.

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Breakdown Characteristics of Soils Caused by Impulse Currents (임펄스전류에 의한 토양의 절연파괴특성)

  • Lee, Bok-Hee;Lee, Kang-Soo;Kim, Hoe-Gu
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.24 no.4
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    • pp.103-109
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    • 2010
  • In this paper, breakdown characteristics of soil in a coaxial cylindrical electrode system stressed by impulse currents were experimentally investigated. The breakdown voltage and current waveforms for 4 types of soils were measured, and the threshold electric field intensity, the time-lag to breakdown and the voltage-current (V-I) curves were analyzed and discussed. As a result, the breakdown voltage and current waveforms are strongly dependent on the grain size of soil, and the voltage and current waveforms for gravel and sand differ from those for silt and loess. The threshold electric field intensity Ec is increased in the order of gravel, sand, loess and silt. The V-I curves for all test samples show a 'cross-closed loop' of ${\infty}$-shape. Also, the time-lag to breakdown for gravel and sand are longer than those for silt and loess. It is expected that the results presented in this paper will provide useful information on the design of improving transient performance of a grounding electrode system subjected to lightning current considering the soil ionization.

Design of an Active Shaft Grounding System for the Elimination of Alternating Electromagnetic Field in Vessel (선체 교류 전자장 제거를 위한 능동 축 접지 시스템 설계)

  • Kim, Tae-kue;Ahn, Ho-kyun;Yoon, Tae-sung;Park, Seung-kyu;Kwak, Gun-pyong
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.19 no.6
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    • pp.1515-1524
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    • 2015
  • Recently, for the purpose of preventing the corrosion of a vessel, the electrical corrosion protection device that prevents the corrosions of the hull and the propeller is widely used. However, the electrical corrosion protection method artificially emits the current into the seawater around the hull using the power supply in order to make the hull and propeller be in the state of not being corrosion, so that electromagnetic field is generated outside the hull by the current emitted into the seawater. In this paper, the static and alternating constituents of the electromagnetic field generated in underwater outside the hull are analyzed and a countermeasure is investigated to reduce the strength of the electromagnetic field. In conventional shaft grounding system, the shaft potential is maintained above at least 100mV and the alternating current component constitutes more than 10% of the total current. However, in this paper, a control system was designed in order that the alternating current component and the shaft potential which generate electromagnetic field are maintained within 1% and 2mV respectively, and the performance was verified by simulation.

Analysis of Transient Potential Rises of Horizontal Ground Electrodes Considering the Frequency-Dependent of Soil (토양의 주파수의존성을 고려한 정보통신설비용 수평접지전극의 과도전위상승 분석)

  • Ahn, Chang Hwan
    • Journal of the Institute of Electronics and Information Engineers
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    • v.53 no.2
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    • pp.147-153
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    • 2016
  • The lightning protection of information and communication facilities is very important factor to improve a reliability of the action of these equipment. Especially the transient potential rise of ground electrode being injected with the lightning current is to be a basic data of the dielectric strength for both power and communication facilities so that more accurate analysis should be required. The transient potential rise can be calculated from the ground impedance and the ground impedance is strongly dependent upon the shape of the ground electrode and the frequency-dependence of soil. The Debye's equation which is able to calculate the characteristics of dielectrics is used to analyze the frequency-dependent of soil. Also, the method to calculate the transient potential rise from the ground impedance is specified in this paper. In order to analyze the transient potential rise resulting from calculations with Debye's equation, TLM(transmission line method) and case of ${\rho}$(resistivity)-constant are simulated, respectively. The length of a horizontal ground electrode is 30 m and simulations were performed at 10, 100, $1000{\Omega}{\cdot}m$ with the standard lightning current waveform. In result, the transient potential rise of horizontal ground electrode calculating with Debye's equation is lower than it of other models.

Comparison Analysis of Soil Structure Methods for Deciding the Position of a Deeply Driven Ground Rod (심매설 접지봉의 위치결정을 위한 대지구조 분석 방법들의 비교분석)

  • Eom, Ju-Hong;Cho, Sung-Chul;Lee, Tae-Hyung;Lee, Bok-Hee
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.21 no.7
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    • pp.37-45
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    • 2007
  • Recently, there has been an increase of the use of ground system for lightning protection called deeply driven grounding electrode. In the case of deeply driven grounding electrode, the rod electrode is equipped perpendicularly and deeply, therefore, it has a benefit to have less restriction of place compared to mesh grid electrode. However, ground impedance is largely changed by the local earth resistivity, so it requires a detailed analysis of the ground structure when planning. The measurement of earth resistivity by existing Wenner's method has been widely used, however, this method can not find out a change in the local ground resistance and it shows the result outwardly to be difficult to estimate exact depth. Therefore, this study analyzed the ground structure as 2-D image using 96 channels measurement facility and tried to analyze change in the local ground resistance and depth of the ground in order to design a deeply driven electrode effectively for lightning protection. It used Wenner alpha method dipole-dipole method and Schlumberger method for 2-D image analysis of the ground resistivity ma based on, it the result was compared with the ground structure analyzed with the result using the CDEGS and Wenner 1-D method.