• 제목/요약/키워드: Magnetic field canceling

검색결과 3건 처리시간 0.015초

Coated Conductor의 Bifilar 구조에서의 통전 교류 손실 측정 및 해석 (Measurement & Analysis of Transport Current AC loss in Coated Conductor Bifilar Structure)

  • 방주석;박동근;심기덕;장기성;양성은;안민철;강형구;석복렬;고태국
    • 한국초전도ㆍ저온공학회논문지
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    • 제9권1호
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    • pp.22-26
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    • 2007
  • Superconductor is weak in AC condition. Bifilar geometry provides a solution to reduce AC loss. Bifialr geometry is piled up or wound with more than two layers. When a layer of superconductor abuts on other layers, AC loss is affected by not only self-field, but also magnetic field induced by adjacent layers. In this study, two superconductors are piled up as a series connection so that current flows in different directions. By this method, magnetic field is cancelled. If magnetic field is cancelled, AC loss is reduced. To compare AC loss with respect to piling method, we measured the AC loss difference between the case facing each other with substrate side and the case facing with YBCO side. Measured AC loss is compared with one-way current flow single layer AC loss. In addition, we analyzed how much AC loss was increased, or reduced. All results were compared with those calculated with Norris equation. By this experiment, we concluded that distance between two wires is the important cause of AC loss. The distance between two wires affects magnetic field reduction in YBCO and induced current flow on substrate side.

Determination of Surface Currents on Circular Microstrip Antennas

  • Godaymi, Wa'il A.;Mohammed, Abdul-Kareem Abd Ali;Ahmed, Zeki A.
    • Journal of electromagnetic engineering and science
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    • 제12권4호
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    • pp.260-270
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    • 2012
  • This work aims to present a theoretical analysis of the electric and magnetic surface current densities of a circular microstrip antenna (CMSA) as a body of revolution. The rigorous analysis of these problems begins with the application of the equivalence principle, which introduces an unknown electric current density on the conducting surface and both unknown equivalent electric and magnetic surface current densities on the dielectric surface. These current densities satisfy the integral equations (IEs) obtained by canceling the tangential components of the electric field on the conducting surface and enforcing the continuity of the tangential components of the fields across the dielectric surface. The formulation of the radiation problems is based on the combined field integral equation. This formulation is coupled with the method of moments (MoMs) as a numerical solution for this equation. The numerical results of the electric and magnetic surface current densities on the outside boundary of a CMSA excited by $TM_{11^-}$ and $TM_{21^-}$ modes are presented. The radiation pattern is calculated numerically in the two principle planes for a CMSA and gives a good results compared with measured results published by other research workers.

애스터리스크(*) 배열구조 기반 전력저감 수배전반 (Asterisk(*) Array structure based power reduction power distribution board)

  • 김미숙;박동삼
    • 한국산학기술학회논문지
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    • 제18권11호
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    • pp.138-144
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    • 2017
  • 오늘날 전력수요 급증에 따른 전력소비량이 증가하고 있어 전력손실을 줄일 수 있는 에너지 저감을 위한 설계 또는 설비 대체로 전력의 고품질화가 필요하다. 배전반이란 한전의 발전설비로부터 전기를 공급받아 각 건물에 필요한 설비에 계통별 또는 용도별로 나누어 주는 기계장치이다. 배전반은 일반적으로 외함, 개폐기, 전력용 도체, 제어부분으로 구성된다. 본 연구는 배전반내의 메인 요소인 통전을 위한 전력용 도체에 관한 것이다. 실효교류저항 측정시험을 통해 기존방식 판상도체의 수직 배열구조가 비효율적 구조임을 입증해 본다. 실효교류저항이 많이 증가하면 표피효과로 인해 상대적으로 도체의 단면적이 커지게 된다. 본 연구는표피효과를 줄여 실효교류저항을 최소화시키는 애스터리스크(*) 배열구조를 기반으로 설계하여 에너지 절약과 원자재 절감을 연구하였다. 본 연구의 핵심기술 원리는 애스터리스크 배열구조를 적용하여 도체저항 감소기술 기반 에너지 절감 수배전반이다. 수배전반의 교류전력 공급용 판상도체 각각(rst 또는 abc)의 상에서 발생한 자기장이 상호작용으로 상쇄 소멸될 수 있도록 한 판상도체 배열구조에 관한 것으로 효과로는 판상도체에서 유도성 리액턴스의 발생량이 줄어들면서 유효단면적이 증가, 실효교류저항을 줄인다.