Abstract

본 논문에서는 함체 케이스의 내부에 손실 유전체를 충진한 부공동을 설치하고 함체 케이스 내부로 공급된 전력과 반사 계수를 계산하여 함체의 공진 특성을 검토하고 있다. 이론 해석으로는 내부 전자파원의 전류 분포 및 부공동 개구면에서의 전계 분포에 관한 연립 적분방정식을 유도하고 Galerkin의 모멘트법으로 해석하였다. 이론 해석 결과, carbon을 함유한 발포 폴리스티렌을 손실 유전체로 사용하여 부공동의 크기와 carbon 함유량을 조절함으로써 함체 케이스의 공진 특성을 제어하여 함체 내부의 전자파 방사 크기를 저감시킬 수 있음을 보이고 있으며, 공급 전력의 실험치와도 비교하여 이론 해석의 타당성을 확인하고 있다. This paper presents the delivered power and reflection coefficient in metallic shielding enclosure with a sub-cavity, which are evaluated with the method of moments, sad describes a method for controlling the resonance characteristics of the metallic cavity by putting lossy dielectric material in the sub-cavity. In this paper we introduce carbon polystyrene-foam as lossy dielectric material and observe it's effects of reduction when the dimensions of the sub-cavity and permittivity of lossy dielectric material are changed. The results show that the reduction of the electromagnetic radiation can be achieved by controlling the amount of carbon in lossy dielectric material and the dimensions of the sub-cavity. The theoretical analysis is verified by the measured delivered power.

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