• Title/Summary/Keyword: ground impedance

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A Study on Improving Impedance Characteristics of Planar Monopole Antenna with Vertical Ground Plane (수직 접지면을 갖는 평판형 모노폴 안테나의 임피던스 특성 개선에 관한 연구)

  • Jung, Jin-Woo;Lee, Hyeon-Jin;Lim, Yeong-Seog
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.48 no.5
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    • pp.54-63
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    • 2011
  • This paper presents the improving impedance charactersitics of a planar monopole antenna with a vertical ground plane. For improving impedance characteristics, we used the effect of a vertical ground plane. To analyze the effect of vertical ground plane, we proposed the dipole antenna mode. the impedance characteristics of planar monopole antenna are improved by correlation between monopole antenna and vertical ground plane, based on each operating mode. Our analysis indicates can improve the impedance characteristics of varying planae monopole antennas.

Charicteristics of Stationary and Transient Ground Impedance of Large-Scale Grounding Piles (임펄스 전류에 대한 대규모 접지시스템의 정상상태 및 과도상태의 접지임피던스 특성)

  • Lee, B.H.;Lee, S.C.;Park, J.S.
    • Proceedings of the KIEE Conference
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    • 1999.07e
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    • pp.2296-2298
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    • 1999
  • The stationary ground resistance and the transient ground impedance of grounding system are very important parameters in the field of lightning and surge protection. But, it is very difficult to obtain correct values of them in large-scale grounding system. In this paper, the stationary and transient ground impedances of a large-scale grounding system have been measured and analyzed under impulse currents. In order to obtain correct values of them, we have described Z-v(impedance vs ground potential rise) distributions and Z-t waveforms. The transient ground impedance of 36 [m] long three-parallel grounding piles have showed the inductive aspects and the hysterisis region under impulse currents.

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Effects of the Finite Ground Impedance on the Excess Attenuation of Noise (지표면 임피던스에 의한 소음의 초과감쇠에 관한 연구)

  • Kim, Dong-Il;Kang, Byoung-Yong;Chang, Ho-Gyeong;Kim, Ye-Hyun
    • The Journal of the Acoustical Society of Korea
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    • v.13 no.5
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    • pp.5-14
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    • 1994
  • In this study, the ground impedance is measured using the standing wave method in a free field on the grass, the soil, and the ground covered with asphalt and cement. And the excess attenuation of sound is investigated. Results are obtained in the frequency range between 300Hz and 1000Hz. There are very good agreements between the results of the measured ground impedance and the prediction of Delanyand Bazley. The ground impedance is increased in order the grass, the soil, the asphalt and the cement road, decreased with frequency for each the ground. The excess attenuation of sound is mainly determined by the ground impedance. The experimental results of the excess attenuation over the different types and the microphone heights are compared with the theoretical values.

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Design and Fabrication of a Wideband Ground Impedance Meter (광대역 접지임피던스 측정기의 설계 및 제작)

  • Kil, Gyung-Suk;Park, Dae-Won;Jang, Un-Yong;Han, Ju-Seop;Gil, Hyoung-Jun
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.23 no.10
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    • pp.793-797
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    • 2010
  • The basic performance of the ground system is evaluated as the ground resistance by applying low frequency current below 1 kHz. However, characteristics of the ground system should be analyzed by high frequency current up to 1 MHz since transient currents having a few hundred kHz component flow during a line-to-ground fault and/or a lightning strike. This paper deals with the design and fabrication of a wideband ground impedance meter (WGIM) which measures the impedance of ground systems in ranges from 65 Hz to 1.28 MHz. Also, a noise elimination algorithm using a digital bandpass filter is proposed. The maximum error of the WGIM is 4.91% in the measurement frequency range.

Analysis of error factors of the Fall-of-potential test method in measurements of grounding impedance (전위강하법에 의한 접지임피던스 측정 시 오차요인 분석)

  • Jeon, Byung-Wook;Lee, Su-Bong;Jung, Dong-Cheol;Lee, Bok-Hee;Ahn, Chang-Hwan
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2008.05a
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    • pp.313-316
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    • 2008
  • This paper presents the error factors of Fall-of-potential test method used in measurements of the grounding-system impedance. This test methods inherently can introduce two possible errors in the measurements of grounding-system impedance: (1) ground mutual resistance due to current flow through ground from the ground electrode to the current probe, (2) ac mutual coupling between the current test lead and the potential test lead. The errors of ground mutual resistances and ac mutual coupling are expressed by the equation in calculating grounding impedance. These equations were calculated by Matlab that is commercial tool using mathematical calculation. The results of calculation were applied to correct grounding impedance.

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Development of Ground Impedance Measuring Instrument for Lightning Protection System (뇌보호 설비를 위한 접지임피던스 측정기 개발)

  • Lee, Tae-Hyung;Cha, Sung-Chul;Earn, Ju-Hang
    • Proceedings of the KIEE Conference
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    • 2006.10a
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    • pp.194-195
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    • 2006
  • This study evaluated the impedance characteristics of earth termination system and developed a variable frequency-typed inverter (measuring tool) for the utilization in ground design for lightning protection. The variable-frequency-typed inverter were composed of rectification part, voltage adjuster, IGBT controller and measuring part. Meanwhile, the square wave signal of variable frequency converted its frequency up to lightning surge band by using an IGBT after rectifying an alternating current (AC). It conducted performance evaluation of ground impedance of actual earth termination system by using the developed measuring tool for ground impedance and confirmed that such impedance-oriented performance evaluation was effective in the design of lightning protection.

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Design and Fabrication of a Surge Impedance Meter (서지임피던스 측정기의 설계 및 제작)

  • Kil, Gyung-Suk;Rhyu, Keel-Soo;Kim, Il-Kwon;Moon, Byung-Doo;Kim, Hwang-Kuk;Park, Chan-Yong
    • Journal of the Korean Society for Railway
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    • v.10 no.6
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    • pp.645-649
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    • 2007
  • Ground systems flow fault currents into the ground, and suppress Ground Potential Rise (GPR) by the current. In this paper, we designed and fabricated a surge impedance meter to analyze the ground impedance in wide frequency ranges. The meter consists of a surge generator, a high speed sample/hold (S/H) circuit and an associated electronics. The surge generator produces surge voltage up to 5kV in ranges of $50\sim500ns$. Field tests were carried out to evaluate the surge impedance meter at a driven-rod ground system. The results showed that surge impedance of ground systems should be measured by various fast surge waveforms, since the impedance increases as the rise time of applied voltage increases.

Transient Ground Impedance of Small-sized Ground Electrode considering Underground Discharge in Frozen Soil (동결 토양에서 지중방전을 고려한 소규모 전극의 과도접지임피던스 특성)

  • Lee, Tae-Hyung;Cho, Sung-Chul;Eom, Ju-Hong;Lee, Bok-Hee
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2009.05a
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    • pp.324-327
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    • 2009
  • This paper presents the transient impedance in a discharge region when high voltage lightning impulse is applied to small-sized ground electrodes in frozen soil. For a realistic analysis of ionization characteristics near the ground electrode in the soil, ground rod installed outdoors and high voltage impulse voltage generator were used. From the analysis of response voltage and current flowing ground electrode to earth, it was verified that the ionization near the ground electrode contributes to reduction of ground impedance and limits the ground potential rise effectively under high impulse voltage.

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The Ground Impedance Modeling using pattern Search Method for Neutral Hormonic Analysis (Pattern Search 법을 이용한 중성선 고조파 해석용 접지 임피던스 모델링)

  • 백승현;김경철;최종기;이일무;백남웅
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.18 no.4
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    • pp.181-187
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    • 2004
  • With the proliferation of nonlinear loads, high neutral harmonic currents in three-phase four-wire distribution system have been observed. It has been known that the ground impedance has an effect on the neutral currents of a system which operates with harmonics present. On-site measurements of harmonic currents and voltages according to the fall-of-potential method under case study system were made and the ground impedance modeling using the pattern search method for the harmonic analysis was developed The ground impedance model obtained by the proposed method was compared with the frequency characteristics by field tests and has shown appropriate results, and would be applicable to evaluate the harmonic and transient response characteristics of the ground system.

Fault Detection Technique in Railway High Voltage Distribution Lines using Wavelet Transform (웨이브렛 변환을 이용한 철도 고압배전선로의 고장검출기법)

  • Jung Ho-Sung;Han Moon-Seob;Lee Chang-Mu;Kim Joorak;Lee Han-Min
    • Proceedings of the KSR Conference
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    • 2004.06a
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    • pp.1274-1279
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    • 2004
  • This paper proposes technique to detect ground fault in railway high voltage distribution lines. Overcurrent relay technique is widely used for detecting one line ground fault that occurs most frequently in railway high voltage distribution lines. However, ground fault in distribution line is usually high impedance fault with arc. Because the fault current magnitude measured in substation is very small, the conventional overcurrent relay can't detect the high impedance ground fault. Therefore this paper proposes the advanced technique using wavelet transform. It extracts D1 component from fault signals and detects fault comparing magnitude of D1 component in each phase. To evaluate this proposed technique, we model distribution system using PSCAD/EMTDC and extract various fault data. In conclusion this technique can detect ground fault including high impedance fault regardless of fault distance, fault impedance etc.

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