• Title/Summary/Keyword: Line Current

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Analysis of Return Current Effect for Track Circuit on Ho-Nam high Speed Line (고속열차 운행에 따른 호남고속철도 궤도회로 귀선전류 영향 분석)

  • Baek, Jong-hyen
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.42 no.5
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    • pp.1110-1116
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    • 2017
  • Depending on the operating characteristics, track circuit is installed for the purpose of direct or indirect control of the signal device, point switch machine and other security device. These are mainly used for train detection, transmission of information, broken rail detection and transmission of return current. Especially, the return current is related to signal system, power system and catenary line, and track circuit systems. It is one of the most important component shall be dealt for the safety of track side staff and for the protection of railway-related electrical system according to electrification. Therefore, an accurate analysis of the return current is needed to prevent the return current unbalance and the system induced disorder and failure due to an over current condition. Also, if the malfunction occurred by the return current harmonics, it can cause problems including train operation interruption. In this paper, we presented measurement and analysis method at return current and it's harmonics by high speed train operation on the honam high speed line.

The Operational Characteristics of High-speed Interrupter by Fault Types (고장 유형별 고속 인터럽터의 동작 특성)

  • Jeong, In-Sung;Choi, Hyo-Sang;Jung, Byung-Ik
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.2
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    • pp.278-283
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    • 2013
  • With the increasing power demands, size of the fault current in electrical grids is steadily increasing, and it exceeds the breaking capacity of circuit breakers. To effectively cope with these problems, a high-speed interrupter was suggested. The high-speed interrupter provides fault current with a bypass to a fault current limiter in case of accidents and consequently, fault current can be restricted. In this study, behavioral characteristics of high-speed interrupter were analyzed by accident types occurred in a distribution system. When accidents occurred, a and b contact of the high-speed interrupter were turned-off and then, turned-on. Accordingly, fault current flowed to the circuit connected to a current limiting element, and the fault current limiter restricted fault current to within a half-cycle. Nevertheless, the behavior of the high-speed interrupter was slowed down by a switching surge. As a result, fault current was confirmed to be restricted not to within the anticipated half-cycle, but to after a half-cycle. Moreover, the behavioral characteristics of the high-speed interrupter changed not only by accident types, but by behaviors of R, S, and T phases. This was due to the errors in stroke lengths of the high-speed interrupters, which resulted in a slight time discrepancy among three interrupters. In addition, the switching behaviors of the b and a contact were confirmed not to have coincided due to the switching surge; b contact behaved first and a contact followed. because of this, accuracy of stroke length and switching surges through the solenoid suction increases may be necessary to resolve.

mechanism of Equivalent Power Distribution in Parallel Connected ICP for Large Area Processing

  • Lee, Jin-Won;Bae, In-Sik;An, Sang-Hyeok;Jang, Hong-Yeong;Yu, Sin-Jae
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.510-510
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    • 2012
  • 반도체, 디스플레이, 태양광 등의 공정에서 사용되는 웨이퍼의 크기가 증가하고, 생산률이 플라즈마의 밀도에 비례한다는 연구 결과가 발표되면서 대면적 고밀도 플라즈마 소스 개발에 대한 연구가 활발히 진행되고 있다. 특히, ECR, ICP, Helicon plasma 등 고밀도 플라즈마 소스에 대한 관심이 높아지고 있다. 이에 따라, 여러 개의 ICP를 결합한 multiple ICP를 이용해 대면적 고밀도 플라즈마 소스 개발을 진행했다. Multiple ICP의 경우 각 ICP 소스에 같은 power (current)를 공급해야만 균일한 플라즈마 방전이 발생되어 균일도를 확보 할 수 있다. Current controller 같은 추가적인 장비를 설치하지 않고, power를 분배하는 transmission line을 coaxial 형태로 설계하고 같은 길이로 병렬 연결함으로써 각각의 ICP소스에서 균일한 플라즈마를 방전시킬 수 있었다. Power generator에서 보는 각 ICP의 total impedance는 각 ICP 소스의 impedance와 coaxial 형태의 transmission line의 characteristic impedance, frequency, 길이의 함수로 구할 수 있고, 이 total impedance가 일정하기 때문에 current가 균등하게 분배되어 각 ICP소스에 균등한 power 분배가 가능한 것이다. 실질적으로 ICP 소스의 impedance는 플라즈마 방전 유무에 따라 변화하기 때문에 일정하게 유지하는 것은 어렵다. Transmission line의 characteristic을 사용함으로써 ICP의 impedance의 변화에 상관없이 Total impedance를 일정하게 유지시킴으로써 균등한 power 분배가 가능하다는 것을 연구했다. Frequency는 13,56MHz, characteristic impedance를 $50{\Omega}$ (coaxial cable)으로 고정하고, ICP 소스의 플라즈마 방전 유무/antenna turn/소스 위치에 따른 total impedance를 transmission line의 길이에 따라 측정하고, 이를 이론값, 그래프와 비교하였다. 특정 length에서 플라즈마 방전 유무(ICP의 impedance 변화)와 상관없이 비교적 일정한 total impedance를 유지하는 것을 확인 했다. 이것은 특정 길이를 갖는 coaxial형태의 transmission line를 연결하면, total impedance는 플라즈마 방전 유무로 발생하는 ICP의 impedance 변화와 상관없이 일정하게 유지되어 각 ICP소스에 균등한 파워 분배가 가능하다는 것을 보여준 결과이다. 이것을 토대로 frequency에 따라(또는 characteristic impedance에 따라) 균등한 파워 분배가 가능한 coaxial 형태 transmission line의 특정 길이를 구할 수 있고, 대면적 소스에서 균등한 파워 분배를 위한 병렬연결에 적용할 수 있을 것이다.

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A New Control Method for Single-Phase Active Power Line Contioners (단상 능동 전력 조절 장치를 위한 새로운 제어기법)

  • 서영조
    • Proceedings of the KIPE Conference
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    • 2000.07a
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    • pp.155-158
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    • 2000
  • A new control method for single-phase shunt active power line conditioners(APLC's) operated under zero average power consumption is proposed in this paper. The amplitude of the sinusoidal source current which is in-phase with the source voltage can be determined from the average value of the instantaneous load power. Then the command current for the shunt APLC is obtained by subtraction the source current from the load current. Neither bulky filter nor time-consuming computation is required. The shunt power compensator supplies all the harmonics of he load current and the source only supplies the fundamental component,. Experimental results on a prototype verify the feasibility of the presented scheme,

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LCL Filter Design with the consideration of Fault Current Minimization in Mode Transfer of a Grid Connected Type PCS (계통 연계형 PCS의 운전모드 전환시 사고전류 최소화를 고려한 LCL 필터 설계)

  • Jung, Jae-Hun;Kwon, Chang-Keun;Nho, Eui-Cheol;Kim, In-Dong;Kim, Heung-Geun;Chun, Tae-Won
    • Proceedings of the KIPE Conference
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    • 2011.07a
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    • pp.48-49
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    • 2011
  • A new LCL filter design of a PCS with the consideration of fault current minimization is proposed. The magnitude of fault current is analysed with the variation of inverter side $L_i$, line side $L_u$, and filter capacitor $C_f$ under constant line side $THD_i$ of 5%. It is found that inverter side fault current reaches up to 200%~660% of the rated current with the variation of $L_i$. It is expected that the results can be applied to the detailed design of PCS filter.

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Degradation Diagnosis of Overhead Power Lines Using Eddy Current Technology (와전류 기법을 이용한 가공전력선 열화 진단)

  • Kim, Chng-Hyeok;Kim, Tag-Yong;Oh, Yong-Cheul;Choi, Woon-Sik;Jo, Choon-Nam
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.27 no.5
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    • pp.322-327
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    • 2014
  • Internal corrosion of the distribution line can be detected in order to develop techniques of non-destructive inspection methods that operate only on the metal track eddy current diagnosis is possible by applying the technique investigated. Sensor for the production of a finite element method modeled by using an eddy current sensor, a distribution line by using an accelerated aging samples of sodium hydroxide was prepared. Sheathed cables for internal corrosion studies detected using an eddy current sensor is considered to be possible.

Neutral Current Calculation of the One Step Type Pole using KEPCO's Distribution System (한전 실 배전계통 모델을 이용한 1단 장주 중성선 전류 계산)

  • Seo, H.C.;Park, K.W.;Kim, C.H.;Jung, C.S.;Yoo, Y.P.;Lim, Y.H.;Seol, I.H.
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.56 no.1
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    • pp.35-40
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    • 2007
  • The one step type and two step type pole are used in distribution line. If the three phases are not balanced, the communication line can be damaged by induced voltage. This paper calculates the neutral current using KEPCO's distribution system model which is only composed by one step type pole. The used system model is modelled by using ATPDraw and the neutral current is calculated by using EMTP/MODELS. Many cases for abstracting the neutral current characteristics in KEPCO's distribution system are simulated and analyzed.

A design for a robust active power filter in unbalanced and distortion source voltages in three-phase four-wire systems (전원전압의 불평형 및 왜곡에 강인한 3상 4선식 전력용 능동 필터의 설계)

  • Min J.K.;Choi J.H.;Kim H.S.;Kim K.H.
    • Proceedings of the KIPE Conference
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    • 2003.07b
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    • pp.729-733
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    • 2003
  • This paper proposed a novel current control strategy on active power filters using p-q-r instantaneous power theory which can compensate the line current harmonics and the neutral line current in unbalanced and/or distorted source conditions in three-phase four-wire systems. The proposed current control method is based on a sinusoidal PWM for fully-digital implementation which was compared with a hysteresis PWM. Simulation results showed good performance of the proposed current control strategy on shunt type APFs.

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A Fault Location Algorithm of a Double-Circuit Line (병행 2회선 송전선로에서의 고장점 표정 알고리즘)

  • Ahn, Yong-Jin;Choi, Myeon-Song;Kang, Sang-Hee;Lee, Seung-Jae
    • Proceedings of the KIEE Conference
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    • 1999.11b
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    • pp.255-257
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    • 1999
  • Fault location algorithms based on the current distribution factors under the one-phase to earth fault condition of a double-circuit line are presented. The derivation method for current distribution factors is showed, to calculate fault current, fault resistance and the zero sequence current of other parallel circuit which are unknown. As the proposed algorithms 1,2,3 embodies an accurate location by the voltage and the current of the relaying point.

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Phase Selection Algorithm using Sequence Voltages for Transmission Line Protection (대칭분 전압을 이용한 송전선로 보호용 고장상 선택 알고리즘)

  • Lee, Myoung-Soo;Kim, Soo-Nam;Lee, Jae-Gyu;You, Seok-Ku
    • Proceedings of the KIEE Conference
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    • 2001.11b
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    • pp.124-126
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    • 2001
  • A reliable fault type identification (phase selection) plays a very important role in transmission line protection, particularly in Extra High Voltage(EHV) networks. The conventional fault type identification algorithm used the phase difference between positive and negative sequence current excluding load current. But, it is difficult to pick out only fault current since we can not know when a fault occurs and identify the fault type in weak-infeed conditions that dominate zero-sequence current in phase current. The proposed algorithm can identify the accurately fault type using the sum of unit vectors which are calculated by positive-sequence votage and negative-sequence voltage.

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