• 제목/요약/키워드: Line Current

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Study on the Distribution of Electromagnetic Force for 154 kV Power Transmission Cable on Dual Underground Lines by Normal and Earth Fault Current (지중 2회선 154 kV 송전케이블의 정상 및 지락고장에 따른 전자기력 분포에 관한 연구)

  • Kim, Hui Min;Kim, So Young;Im, Sang Hyeon;Park, Gwan Soo
    • KEPCO Journal on Electric Power and Energy
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    • v.1 no.1
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    • pp.21-27
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    • 2015
  • The goal of this study is the size and distribution of the electromagnetic force generated by the current flowing through the second underground line of 154kV power transmission cables by using electromagnetic finite element analysis. So we interpret how mutually electromagnetic force has an effect on the comparable judgement of Trefoil, Duct and Flat, which shows in a numerical arrangement. 154kV OF 1200SQ Cable 1.281km not only is applicable to modeling for underground transmission cable but also examine the effect of line to line, phase to phase and size and direction of the electromagnetic force preparing for the occurrence of normal state and single-phase earth fault, which are arranged in trefoil, duct and flat formation between sections. As showing how the trajectory, and size distribution of the electromagnetic force translate as the arrangement of the cables when a steady-state current and a fault current flows on the underground cables, I hope that when Underground transmission is designed, this data will be useful information.

Source-Overlapped Gate Length Effects at Tunneling current of Tunnel Field-Effect Transistor (소스영역으로 오버랩된 게이트 길이 변화에 따른 터널 트랜지스터의 터널링 전류에 대한 연구)

  • Lee, Ju-Chan;Ahn, Tae-Jun;Sim, Un-Sung;Yu, Yun Seop
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2016.10a
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    • pp.611-613
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    • 2016
  • The characteristics of tunnel field-effect transistor(TFET) structure with source-overlapped gate was investigated using a TCAD simulations. Tunneling is mostly divided into line-tunneling and point-tunneling, and line-tunneling is higher performance than point-tunneling in terms of subthreshold swing(SS) and on-current. In this paper, from the simulation results of source-overlapped gate length effects at silicon(Si), germanium(Ge), Si-Ge hetero TFET structure, the guideline of optimal structure with highest performance are proposed.

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Current Limiting Characteristics of a Flux-Lock Type SFCL for a Single-Line-to-Ground Fault

  • Oh, Geum-Kon;Jun, Hyung-Seok;Lee, Na-Young;Choi, Hyo-Sang;Nam, Gueng-Hyun
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.20 no.9
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    • pp.70-77
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    • 2006
  • We have fabricated an integrated three-phase flux-lock type SFCL, which consists of an YBCO($YB_a2Cu_3O_7$) thin film and a flux-lock reactor wound around an iron core of each phase. In order to apply the SFCL in a real power system, fault analyses for the three-phase system are essential. The short-circuit currents were effectively limited by adjusting the numbers of winding of each secondary coil and their winding directions. The flux flow generated in the iron core cancelled out under the normal operation due to the parallel connection between primary and secondary windings. However, the flux-lock type SFCL with same iron core was operated just after the fault due to the flux generating in the iron core. To analyze the current limiting characteristics, the additive polarity winding was compared with the subtractive one in the flux lock reactor. Whenever a single line-to-ground fault occurred in any phase, the peak value of the line current of the fault phase in the additive polarity winding increased up to about 12.87 times during the first-half cycle. On the other hand, the peak value in the subtractive polarity winding increased up to about 34.07 times under the same conditions. This is because the current flow between the primary and the secondary windings changed to additive or subtractive status according to the winding direction. We confirmed that the current limiting behavior in the additive polarity winding was more effective for a single-line-to-ground fault

Calculation of Induced Current in the Human Body around 765 kV Transmission Lines (765 kV 초고압 송전선 주변의 인체 유도전류 계산)

  • 명성호;이재복;허창수
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.9 no.6
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    • pp.802-812
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    • 1998
  • Safety related to electric field exposure for the personnel of high voltage power plant and substation is of importance. To analyze the induced current influencing on human body in this paper, we calculate directly capacitance in three dimension which is complex and time consuming, as not to separate the voltage source and the induced object using a effective modeling technique. The proposed algorithm in this paper has been applied to 765 kV high voltage transmission line to evaluate human hazard for the induced current through the case study. As the results, the short circuit current of human body has been identified in the range of 0.3 mA to 6.8 mA. Closing to transmission line, this range of short current can exceed 5 mA that ANSI recommended let-go current. Therefore, it is necessary to countermeasure such as putting on conductive clothing in live-line maintenance of transmission line.

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Operational Characteristics in integrated Three-Phase a Flux-Lock type SFCL according to Fault Conditions (3상 일체화된 자속구속형 전류제한기의 동작특성)

  • Lee, Na-Young;Choi, Hyo-Sang;Jeong, Soo-Bok;Lee, Sang-Il;Nam, Gueng-Hyun;Lim, Sung-Hun
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2006.05a
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    • pp.467-470
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    • 2006
  • Superconducting fault current(SFCLs) are expected to improve not only reliability but also stability of real power systems. The analysis on the single line-to-ground fault current of the integrated three phase flux-lock type SFCL, which consists of three flux-lock reactor wound on an iron core in each single phase and three YBCO thin films, was investigated in current limiting operating characteristics. We compared additive polarity winding with the subtractive one in the flux lock reactor. Its turns ratio each phase between the primary and the secondary coils is 63:42. When a single line-to-ground fault occurred in any phase, the peak value of line current in the fault phase of the additive polarity winding increased up to 31.44[A] during first-half cycle. On the other hand, the peak value in the subtractive polarity winding increased up to 81.77[A] under the same conditions. This is because the current flow between the primary and the secondary windings becomes to be additive or subtractive in each winding direction. We confirmed that the current limiting behavior in the additive polarity winding was more effective for a single-line-to ground fault.

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An Advanced Simulation Model for Brushless DC Motor Drives

  • Lee B. K.;Ehsani M.
    • Proceedings of the KIPE Conference
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    • 2001.10a
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    • pp.390-394
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    • 2001
  • A dynamic simulation model for the brush less dc (BLDC) motor drives using Matlab is presented. In this model, an entire BLDC motor drive, including power conversion unit, BLDC motor, and speed/torque control system, is investigated. Especially, the PWM inverter is modeled using switching function concept, so that the detailed voltage and current waveforms, such as line-to-line voltages, inverter input current, ac line current, and switch/diode currents, can be obtained and average/rms ratings of the components can be easily calculated. Also, the proposed model is made into modular blocks and it can be easily extended to other ac motor applications with a little modification. The detailed modeling method is explained and its actual implementation is described. The validity of the proposed model is verified by various simulation results.

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A Case Study of Productivity Improvement in Filling a Print Cartridge with Toner (프린터 카트리지 충전생산라인의 생산성향상 사례연구)

  • Yang, Joo-Man;Yang, Moon-Hee
    • IE interfaces
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    • v.24 no.3
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    • pp.258-266
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    • 2011
  • In this paper, we deal with a problem improving the productivity of a discrete production line for filling a printer cartridge with toner. We develop a new technology for controlling the weight of toner which must be filled in a cartridge and reform the current line based on our new control technology to result in more than 35% improvement of productivity as well as the control accuracy. In detail, first, we find a bottleneck process, the toner-filling process which gives the current production cycle times. Second, we divide the processing time of the bottleneck into several work elements and find the rotation time of an AC servomotor to be further reduced. Third, in order to reduce the rotation time, we develop a mathematical control-time model for determining the rotation time. Finally, we reform the current line partially as required by the change of the new control method.

A Study on the Bypassing Device for Short-fault Current produced in Low Voltage Distributed Line (저압배전계통에서 발생한 단락전류의 Bypassing 장치에 관한 연구)

  • Youn, Y.J.;Kim, O.K.;Lee, S.H.;Han, S.O.
    • Proceedings of the KIEE Conference
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    • 1998.11c
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    • pp.976-978
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    • 1998
  • In this paper, we designed basic concept and structure of bypassing device which promoted the activity of low voltage line-fuse, when it perceived the too small short-fault current to activate line-fuse which located at the between secondary of pole transformer and home immediately. And we study displacement of bypass contact and electromagnetic force caused by the short-fault current by the basic experiment to understand the basic characteristic of bypassing movements.

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Harmonic Current Reference Generation of Single-Phase Active Filter for the Converter-Fed Locomotives (고속전철용 단상능동필터의 기준고조파전류 발생 방법)

  • Sung, Gi-Seok;Song, Joong-Ho;Choi, Ik;Choi, Ju-Yeop;Kim, Gwang-Bae;Kim, Kwon-Ho;Lim, Myo-Taek
    • Proceedings of the KIPE Conference
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    • 1999.07a
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    • pp.338-341
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    • 1999
  • PWM controlled line-side converters of modern ac traction locomotives inject harmonic currents into the feeding overhead line. This causes problem of electromagnetic interference. Passive and Active filters are usually provided for a reduction of the line harmonics. Active filters are more reasonable than passive filters in terms of weight and space of the filters. Successful control of active filters requires an accurate harmonic current reference. A technique to generate the harmonic current reference is proposed in this paper. The analysis is performed in frequency domain and its effectiveness is verified by simulation.

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The plan for fault coordination improvement of underground distribution line (지중 배전선로의 보호협조 개선방안)

  • Ha, Bok-Mam;Yoon, Tae-Sang;Ilm, Seong-Il;Kang, Mun-Ho;Jeong, Chang-Soo;Lee, Heung-Ho
    • Proceedings of the KIEE Conference
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    • 2001.05a
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    • pp.132-135
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    • 2001
  • To improve the fault coordination of underground distribution line we study the several contents such as the magnitude of fault current in distribution line tripping time of CB by acting of over current relay with instantaneous trip and time delay trip. We also examine the melting time of current limiting fuse inside power fuse Through the research as above. we suggest the modification scheme of fault coordination to reduce the interruption times of power failure.

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