RISS 학술연구정보서비스

검색

인기 검색어

    다국어 입력

    http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

    변환된 중국어를 복사하여 사용하시면 됩니다.

    예시)
    • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
    • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
    닫기

    ETC용 전파흡수체의 개발에 관한 연구 = A Study on development of EM wave absorbers for ETC

    한글로보기

    https://www.riss.kr/link?id=T11329841

    • 0

      상세조회
    • 0

      다운로드
    서지정보 열기
    • 내보내기
    • 내책장담기
    • 공유하기
    • 오류접수

    부가정보

    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    According to the increase of occupation density of microwave frequency band in use, electromagnetic environments become congested extensively. It often cause TV ghost, radar false echoes by wave reflection 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 those reflected from these constrictions. Thus, to Countermeasure the electromagnetic wave interference, the radiated electromagnetic fields of digital electronic products must be measured and must not exceed the specified levels.
    In addition, the increase of new devices Electromagnetic Interference (EMI) or Electromagnetic Susceptibility (EMS) problems. Therefore, the international or local regulations suggest certain standards for EMI / EMS.
    These problems can be eliminated by using EM wave absorbers. It is important to develop absorbing material for preventing EMI.
    MnZn-ferrite or Carbon is useful as a microwave absorbing material because their electric and magnetic loss contribute to the microwave absorption efficiently.
    This thesis deal with basic research for development of EM wave absorbers in sheet type for Electronic Toll Collection (ETC), By controlling the MnZn-ferrite ratio, the Carbon ratio, the thickness, the kind of binders, the milling time, EM wave absorbers were prepared and examined. Matching frequency shifts toward higher with decreasing thickness of the absorber, and absorption ability controlled by adjusting MnZn-ferrite and Carbon amount. MnZn-ferrite and Carbon composite microwave absorbers mixed with CPE were prepared at 70℃ in temperature. The fabricated EM wave absorbers show a reflection coefficient - 23 dB at 5.8 GHz in thickness of 3.3 mm by transmission line method. In case incident wave angle was 15°, the EM wave absorber was observed -17 dB at 5.8 GHZ with the thickness of 3.38±0.05 mm, in case incident wave angle was 30°, the EM wave absorber was observed -14 dB at 5.8 GHZ with the thickness of 3.38±0.05 mm, in case incident wave angle was 45°, the EM wave absorber was observed -12 dB at 5.8 GHZ with the thickness of 3.38±0.05 mm by free space method.
    번역하기

    According to the increase of occupation density of microwave frequency band in use, electromagnetic environments become congested extensively. It often cause TV ghost, radar false echoes by wave reflection from adjacent constructions. Especially, in t...

    According to the increase of occupation density of microwave frequency band in use, electromagnetic environments become congested extensively. It often cause TV ghost, radar false echoes by wave reflection 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 those reflected from these constrictions. Thus, to Countermeasure the electromagnetic wave interference, the radiated electromagnetic fields of digital electronic products must be measured and must not exceed the specified levels.
    In addition, the increase of new devices Electromagnetic Interference (EMI) or Electromagnetic Susceptibility (EMS) problems. Therefore, the international or local regulations suggest certain standards for EMI / EMS.
    These problems can be eliminated by using EM wave absorbers. It is important to develop absorbing material for preventing EMI.
    MnZn-ferrite or Carbon is useful as a microwave absorbing material because their electric and magnetic loss contribute to the microwave absorption efficiently.
    This thesis deal with basic research for development of EM wave absorbers in sheet type for Electronic Toll Collection (ETC), By controlling the MnZn-ferrite ratio, the Carbon ratio, the thickness, the kind of binders, the milling time, EM wave absorbers were prepared and examined. Matching frequency shifts toward higher with decreasing thickness of the absorber, and absorption ability controlled by adjusting MnZn-ferrite and Carbon amount. MnZn-ferrite and Carbon composite microwave absorbers mixed with CPE were prepared at 70℃ in temperature. The fabricated EM wave absorbers show a reflection coefficient - 23 dB at 5.8 GHz in thickness of 3.3 mm by transmission line method. In case incident wave angle was 15°, the EM wave absorber was observed -17 dB at 5.8 GHZ with the thickness of 3.38±0.05 mm, in case incident wave angle was 30°, the EM wave absorber was observed -14 dB at 5.8 GHZ with the thickness of 3.38±0.05 mm, in case incident wave angle was 45°, the EM wave absorber was observed -12 dB at 5.8 GHZ with the thickness of 3.38±0.05 mm by free space method.

    더보기

    목차 (Table of Contents)

    • Nomenclature ⅲ
    • Abbreviations ⅴ
    • Abstract ⅵ
    • 제 1 장 서 론 1
    • Nomenclature ⅲ
    • Abbreviations ⅴ
    • Abstract ⅵ
    • 제 1 장 서 론 1
    • 1.1 연구 배경 1
    • 1.2 연구 목적 2
    • 제 2 장 전파흡수체 이론 및 측정방법 3
    • 2.1 전파흡수체의 정의 3
    • 2.1.1 전자파환경과 대책 3
    • 2.1.2 전파흡수체의 역사 4
    • 2.2 전파흡수체의 분류 6
    • 2.2.1 전파흡수체 재료 6
    • 2.2.2 전파흡수체의 종류 9
    • 2.3 전파흡수체 설계식 15
    • 2.3.1 파동방정식 14
    • 2.3.2 분포정수 회로화 19
    • 2.4 전파흡수체의 반사계수 측정 25
    • 2.5 재료정수 측정방법 26
    • 제 3 장 전파흡수체의 제작 및 전파흡수 특성평가 31
    • 3.1 전파흡수체의 제작방법 31
    • 3.2 MnZn-ferrite의 혼합비에 따른 전파흡수특성 32
    • 3.3 MnZn-ferrite에 Carbon을 첨가한 전파흡수특성 36
    • 3.4 전파의 입사각에 따른 전파흡수체의 전파흡수능 측정 43
    • 제 4 장 결 론 46
    • 참고문헌 47
    • 본 연구와 관련된 발표논문 49
    더보기

    분석정보

    View

    상세정보조회

    0

    Usage

    원문다운로드

    0

    대출신청

    0

    복사신청

    0

    EDDS신청

    0

    동일 주제 내 활용도 TOP

    더보기

    주제

    연도별 연구동향

    연도별 활용동향

    연관논문

    연구자 네트워크맵

    공동연구자 (7)

    유사연구자 (20) 활용도상위20명

    이 자료와 함께 이용한 RISS 자료

    나만을 위한 추천자료

    해외이동버튼