한국해양대학교

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Carbon을 이용한 다층형 전파흡수체에 관한 연구

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dc.contributor.author 최윤석 -
dc.date.accessioned 2017-02-22T02:17:56Z -
dc.date.available 2017-02-22T02:17:56Z -
dc.date.issued 2007 -
dc.date.submitted 2007-01-17 -
dc.identifier.uri http://kmou.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000002174203 ko_KR
dc.identifier.uri http://repository.kmou.ac.kr/handle/2014.oak/8166 -
dc.description.abstract The remarkable progress of electronics and radio communications technology has made mankind very convenient. On the other hand, the countermeasure of EMC becomes more important socially according to the increas of electromagnetic waves. It often causes TV ghost, radar false echoes by the reflected waves from adjacent constructions. Especially, in the area where strong reflectors such as high building, steel tower, iron bridge, etc. exist around radio wave facilities, the performance of such apparatus often deteriorates due to multipath interference between direct wave and reflected wave from these constructions. To meet the circumstance, the international or local regulations and rules suggest the standards for Electromagnetic Compatibility (EMC) in which there are EMI (Electromagnetic Interference) and Electromagnetic Susceptability (EMS). Especially, it has been reported by many researchers that microwave radiated from mobile phones may be a cause of biological influence such as cancer. So, it is very important to develop absorbing and/or shielding material for preventing EMI. Ferrite or Sendust is very useful as a microwave absorbing material because its magnetic loss contributes to the microwave absorption efficiently. This thesis deals with basic research for development of EM wave absorbers for multi-layer using carbon. The multi-layered type EM wave absorber was simulated and designed by using the measured complex relative permittivity by changing the thickness and layer, which was fabricated based on the simulated design. First, the fabricated EM wave absorber consists of 1 mm first layer sheet facing metal with composition ratio of Carbon : CPE = 40 : 60 wt% and 0.8 mm second layer sheet with Carbon composition ratio of Carbon : CPE = 45 : 55 wt%. Secondly, the fabricated EM wave absorber consists of 0.7 mm first layer sheet facing metal with composition ratio of Carbon : CPE = 50 : 50 wt% and 0.7 mm second layer sheet with Carbon composition ratio of Carbon : CPE = 45 : 55 wt% and 0.7 mm third layer sheet with Carbon composition ratio of Carbon : CPE = 40 : 60 wt%. As a result, the optimized absorption ability of the 2-layered type EM wave absorber with thickness of 1.8 mm is 30.6 dB at 9.4 GHz. The optimized absorption ability of the 3-layered type EM wave absorber with thickness of 2.1 mm was obtained by 14.6 dB at 9 GHz. It has been a bandwidth from 8 GHz to 12 GHz of 10 dB in reflectivity. -
dc.description.tableofcontents 제 1 장 서론 = 1 1.1 연구 배경 = 1 1.2 연구 목적 = 3 제 2 장 전파흡수체 이론 및 측정법 = 5 2.1 전파흡수체의 이론 = 5 2.1.1 전파흡수체의 분류 = 7 2.1.2 전파흡수체의 재료 = 10 2.2 전파흡수체에 요구되는 특성 = 13 2.3 전파흡수체의 분포정수회로화 = 15 2.3.1 파동방정식(HelmholtzEquation) = 15 2.3.2 분포정수회로화 = 19 2.4 다층형 전파흡수체 = 25 2.5 전파흡수체 측정법 = 29 2.5.1 반사계수 측정 방법 = 29 2.5.2 표면저항 측정 방법 = 31 2.5.3 재료정수 측정 방법 = 34 제 3 장 시뮬레이션 및 측정 결과 = 37 3.1 표면저항 및 재료정수 측정 결과 = 37 3.1.1 표면저항 측정 결과 = 37 3.1.2 재료정수 측정 결과 = 38 3.2 Carbon을 이용한 단층형 전파흡수체 = 41 3.2.1 단층형 전파흡수체의 설계 시뮬레이션 결과 = 41 3.2.2 시뮬레이션 값과 측정 결과 분석 = 44 3.2.3 Carbon 의 조성비에 따른 적층순서 결정 = 48 3.3 Carbon을 이용한 2층형 전파흡수체 = 49 3.3.1 2층형 전파흡수체의 설계 시뮬레이션 결과 = 50 3.3.2 시뮬레이션 값과 측정 결과 분석 = 51 3.4 Carbon을 이용한 3층형 전파흡수체 = 51 3.4.1 3층형 전파흡수체의 설계 시뮬레이션 결과 = 52 3.4.2 시뮬레이션 값과 측정 결과 분석 = 53 제 4 장 결론 = 54 참고문헌 = 56 -
dc.language kor -
dc.publisher 한국해양대학교 대학원 -
dc.title Carbon을 이용한 다층형 전파흡수체에 관한 연구 -
dc.title.alternative A Study on Multi-layer EM Wave Absorbers Using Carbon -
dc.type Thesis -
dc.date.awarded 2007-02 -
dc.contributor.alternativeName Choi -
dc.contributor.alternativeName Yun-Seok -
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전파공학과 > Thesis
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