• Title/Summary/Keyword: Inductive Power Transmission

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The Properties of the Inductive Coupler for Power Line Communications as Nano Magnetic Materials (나노 자성 재료를 이용한 PLC용 비접촉식 커플러의 특성 향상 연구)

  • Kim, Hyun-Sik;Lee, Hae-Yeon;Kim, Jong-Ryung;Lee, Jun-Hui;Oh, Young-Woo
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.06a
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    • pp.346-346
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    • 2009
  • 저손실 고투자율 특성을 갖는 $\alpha$-Fe 나노결정 자심재료를 제조하기 위해 열처리 온도를 변화시켰으며 투자율과 신호전송 특성을 측정한 결과 $510^{\circ}C$에서 열처리된 자심재료에서 가장 우수한 특성을 얻었다. 저주파 대역에서의 신호전송 특성은 자심재료의 자기적 특성에 지배적인 영향을 받으며, 고주파 대역의 신호전송 특성은 임피던스 매칭으로 향상시킬 수 있었다. 에어-캡은 $500{\mu}m$ 이상 적용할 때, 100 A이상까지 안정적인 특성을 발휘하였다. 그리고 고역통과 필터의 설계와 신호결합장치에의 적용을 통해 통신대역 이외의 노이즈를 제거할 수 있었다.

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Analysis of the inductive interference on the conductor around power system (송전선로 주위의 도체에 미치는 유도장해 해석)

  • Choi, Se-Yong;Nah, Wan-Soo;Choi, Myung-Jun;Lee, Se-Hee;Kim, Dong-Hun;Park, Il-Han;Shin, Myung-Chul
    • Proceedings of the KIEE Conference
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    • 1999.11d
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    • pp.1034-1037
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    • 1999
  • In this paper, we analyze the inductive interference in conductive material around power transmission line. To compute induced eddy currents as well as electromagnetic fields, finite element method(FEM) is used for numerical calculation. The characteristics of conductive material such as gas pipeline, overhead guide wires, conducting earth and so on are taken account of FEM analysis. This research also shows that mitigation wire reduces amount of eddy current in buried gas pipe line.

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Development of a Non-contact Electric Power Transferring System by Using an Inductive Coupling Method (자기 유도방식을 이용한 550 VA 급 비접촉 전력전송기기의 개발)

  • Kim, Jin-Sung;Lee, Yu-Ki;Kim, Se-Ryong;Lee, Jae-Gil;Park, Gwan-Soo
    • Journal of the Korean Magnetics Society
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    • v.22 no.3
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    • pp.97-102
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    • 2012
  • In this paper, a non-contact power transferring has been performed. Power Transferring by using an electromagnetic inductive coupling is more suitable for high power transmission than by using a magnetic resonance method. Power transferring system has been designed with Loading Distribution Method to divide the electric and magnetic loading for designing the magnetic core and electric coil. To design optimum shapes of magnetic yoke, 3D finite element analysis has been performed. Experimental results show good agreement with numerical ones. So, it could be adopted in the electric power transferring system for a short-distance wireless electric power transferring machine.

The Noise Suppression of Data Transmission in MAGLEV (MAGLEV 정보 송수신상의 노이즈 억제에 관한 연구)

  • Kim, Jong-Bum;Lee, Jun-Koo;Park, Seok-Ha;Kim, Yang-Mo
    • Proceedings of the KIEE Conference
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    • 1998.07a
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    • pp.362-364
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    • 1998
  • The transmission of information by inductive loop is required for train-safety and fast running. FSK modulation has been used for transmission of information in fast running. Transmission channel between train and ground must be protected from interference of power line. To protect transmission data from noises, the analysis on the transmission line must be performed in advance. In this paper, transmission line is analyzed in view of reflection and time delay in both noise and signal.

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Decision of Optimal Magnetic Field Shielding Location around Power System Using Evolution Strategy Algorithm (Evolution Strategy 알고리즘을 이용한 송진선로 주변에서의 최적 자계차폐 위치선정)

  • Choe, Se-Yong;Na, Wan-Su;Kim, Dong-Hun;Kim, Dong-Su;Lee, Jun-Ho;Park, Il-Han;Sin, Myeong-Cheol;Kim, Byeong-Seong
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.51 no.1
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    • pp.5-14
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    • 2002
  • In this paper, we analyze inductive interference in conductive material around 345 kV power transmission line, and evaluate the effects of mitigation wires. Finite element method (FEM) is used to numerically compute induced eddy currents as well as magnetic fields around powder transmission lines. In the analysis model, geometries and electrical properties of various elements such as power transmission line, buried pipe lines, overhead ground wire, and conducting earth are taken into accounts. The calculation shows that mitigation wire reduces fairly good amount of eddy currents in buried pipe line. To find the optimum magnetic field shielding location of mitigation wire, we applied evolution strategy algorithm, a kind of stochastic approach, to the analysis model. Finally, it was shown that we can find more effective shielding effects with optimum location of one mitigation wire than with arbitrary location of multi-mitigation wires around the buried pipe lines.

Analysis of the influence of magnetic field generated from power transmission on the inductance interference (송전선에서 발생되는 자계에 의한 유도장해 해석)

  • Choi, Se-Yong;Nah, Wan-Soo;Choi, Myung-Jun;Lee, Se-Hee;Kim, Dong-Su;Park, Il-Han;Shin, Myung-Cheol
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.1993-1995
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    • 2000
  • In this paper, we calculate the magnetic field and analyze the inductive interference in conductive material around power transmission line. To compute induced eddy currents as well as magnetic fields, finite element method(FEM) is used for numerical calculation. The characteristics, transmission line height, conductive earth and mitigation wire are taken account of FEM analysis. This research also shows that mitigation wire reduces amount of eddy current in buried pipe line.

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The Influence of Inductive Loads on the Power System Voltage (유도부하가 전력계통 부하모선의 전압에 미치는 영향)

  • 조양행;정재길
    • The Proceedings of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.9 no.1
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    • pp.37-46
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    • 1995
  • Along with the recent trend of complexity and long distance transmission in power system, dynamic analysis of stability considering the load characteristics is an important subject. In this paper, the influence of the induction motor loads on the power system voltage is investigated. The influence of the inductive load ratio and the inertia of induction motor on the voltage response of the power system are examined, and in the case of the high percentage of the induction motor load, induction motors in the power system can lead to transient voltage instability even under the system condition such as switching operation. The application of static condenser(SC) to prevent the transient voltage instability is introduced.

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Effect of 3D Printed Spiral Antenna Design on Inductive Coupling Wireless Power Transmission System (3차원 프린팅을 이용한 무선전력전송의 안테나 설계 특성 규명)

  • Kim, Ji-Sung;Park, Min-Kyu;Lee, Ho;Kim, Chiyen
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.19 no.8
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    • pp.73-80
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    • 2020
  • The 3D printing of electronics has been a major application topics in additive manufacturing technology for a decade. In this paper, wireless power transfer (WPT) technology for 3D electronics is studied to supply electric power to its inner circuit. The principle of WPT is that electric power is induced at the recipient antenna coil under an alternating magnetic field. Importantly, the efficiency of WPT does rely on the design of the antenna coil shape. In 3D printed electronics, a flat antenna that can be placed on the printed plane within a layer of a 3D printed part is used, but provided a different antenna response compared to that of a conventional PCB antenna for NFC. This paper investigates the WPT response characteristics of a WPT antenna for 3D printed electronics associated with changes in its design elements. The effects of changing the antenna curvature and the gap between the wires were analyzed through experimental tests.

The Study of Steady-State Interaction Between AC and DC Lines on the Same Transmission Tower (AC 및 DC 송전 선로 병렬 연계에 따른 정상상태 커플링 영향 분석)

  • Yoon, Jong-Su
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.59 no.7
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    • pp.1221-1225
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    • 2010
  • The application of the AC and DC lines on the same transmission tower is an economical and practical approaching that increase the power transmission capacity of an existing transmission corridor. But, In this case, Inductive and capacitive coupling between AC and DC lines on the same tower should be investigated in advance. According to the installation plan of 80kV ${\pm}$60MW bipole HVDC in Cheju, KOREA that will be commissioned until 2011, DC lines will parallely operate with 154kV 2 AC lines in existed 154kV AC 4 lines transmission tower. This paper presents the steady state analysis results about the interaction between 154kV AC and 80kV DC lines in the same transmission tower.

The Study of Transient Coupling between AC and DC lines on the Same Transmission Tower (AC 및 DC 송전선로 과도상태 커플링 영향 분석)

  • Yoon, Jong-Su
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.60 no.1
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    • pp.14-19
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    • 2011
  • The implemetation of the AC and DC lines on the same transmission tower is an economical and practical approaching that increase the power transmission capacity of an existing transmission corridor. But, In this case, Inductive and capacitive coupling between AC and DC lines on the same tower should be investigated in advance. According to the installation plan of ${\pm}80kV$ 60MW bipole HVDC in Jeju island, KOREA that will be commissioned until 2011, DC lines will parallely operate with 154kV 2 AC lines in existed 154kV AC 4 lines transmission tower. This paper presents the transient analysis results about the interaction between 154kV AC and 80kV DC lines in the same transmission tower.