• 제목/요약/키워드: Induction Type Coupler

검색결과 4건 처리시간 0.017초

연자성체 코어형 결합기의 대전류 전력선통신 적용 (Application of High-Current PLC of Soft Magnetic Core Type Coupler)

  • 정재환;양승호;손경락
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2018년도 춘계학술대회
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    • pp.155-155
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    • 2018
  • In this study, we measured the communication performance of inductive coupler under high current condition. Ferrite and nanocrystalline cores were used to compare the available PLC communication range and bandwidth for current fluctuations.

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유도형 전력선 통신의 전기충전시스템 적용 연구 (A Study on Application of Inductive PLC to Electric Charging System)

  • 손경락;정재환;양승호
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2018년도 춘계학술대회
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    • pp.153-153
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    • 2018
  • In this paper, we have represented basic experiment results for the application of electric vehicle powerline communication using an induction type coupler. The coupler was fabricated using nano-crystalline alloy and it was applied to the charging system of electric vehicles to measure the communication performance. Experimental results showed a channel bandwidth over 48 Mbps.

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함침된 나노결정립 리본을 이용한 광대역 유도형 결합기 연구 (A Study on Broadband Inductive Coupler using Impregnated Nanocrystalline Ribbon)

  • 김현식;주우진;손경락
    • 전기전자학회논문지
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    • 제23권2호
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    • pp.599-605
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    • 2019
  • 페라이트 코어는 연자성 재료로서 유도형 전력선 통신을 위한 결합기 제작에 사용되고 있다. 그러나 전력선 통신환경에 따라 크기를 자유롭게 조절하기 어려운 재료이다. 본 논문에서는 페라이트 보다 투자율이 높은 나노 결정립합금을 이용하여 광대역 전력선 통신용 유도형 결합기 재료로 적용할 수 있음을 보고한다. 나노결정립은 얇은 리본 형태로 제조되므로 토로이달 코어에 감긴 리본의 횟수로 결합기의 크기를 자유롭게 조절할 수 있다. 함침법으로 만든 코어를 이용하여 유도형 결합기를 제작하였고, 이를 비접촉식 전력선 통신용에 적용할 수 있음을 보여주었다. 실험결과 100 A 이하의 선로 전류변동 조건에서 통신거리 100 m 까지는 45 Mbps, 200 m 까지는 8 Mbps의 대역폭을 보였으며 수신율은 100 %이였다.

Experimental Study on Frequency Support of Variable Speed Wind Turbine Based on Electromagnetic Coupler

  • You, Rui;Chai, Jianyun;Sun, Xudong;Bi, Daqiang;Wu, Xinzhen
    • Journal of Power Electronics
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    • 제18권1호
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    • pp.195-203
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    • 2018
  • In the variable speed Wind Turbine based on ElectroMagnetic Coupler (WT-EMC), a synchronous generator is coupled directly to the grid. Therefore, like conventional power plants, WT-EMC is able to inherently support grid frequency. However, due to the reduced inertia of the synchronous generator, WT-EMC is expected to be controlled to increase its output power in response to a grid frequency drop to support grid frequency. Similar to the grid frequency support control of Type 3 or Type 4 wind turbine, inertial control and droop control can be used to calculate the WT-EMC additional output power reference according to the synchronous generator speed. In this paper, an experimental platform is built to study the grid frequency support from WT-EMC with inertial control and droop control. Two synchronous generators, driven by two induction motors controlled by two converters, are used to emulate the synchronous generators in conventional power plants and in WT-EMCs respectively. The effectiveness of the grid frequency support from WT-EMC with inertial control and droop control responding to a grid frequency drop is validated by experimental results. The selection of the grid frequency support controller and its gain for WT-EMC is analyzed briefly.