Field Uniformity Analysis of Reverberation Chamber with Asymmetric Structure

비대칭적 구조 전자파 잔향실 전자기장 균일도 해석

  • 정삼영 (한양대학교 전자통신전파공학과) ;
  • 이중근 (한양대학교 전자통신전파공학과) ;
  • 이황재 (한양대학교 전자통신전파공학과)
  • Published : 2001.08.01

Abstract

Conventional reverberation chamber has a rectangular structure including mode stirrers or mode-turned stirrers to obtain the field uniformity inside the chamber. This paper explained the way to improve the field uniformity in an asymmetric structure instead of conventional rectangular structure with right-angled planes. Two types of asymmetric structure were considered. One was an asymmetric reverberation chamber using Quadratic Residue Diffuser and the other was an asymmetric chamber with oblique enclosure including fixed Randomly Made Diffusers. The FDTD simulation method was used to analyze the field homogeneous characteristics of these asymmetric reverberation chambers.

전자파 잔향실은 일반적으로 직사작형 구조의 차폐실에 전자기장 균일도를 향상시키기 위한 모드 스터러 또는 모드-튜너로 구성된다. 본 논문은 기존에 많이 사용되는 직사각형의 잔향실 구조 대신 두 종류의 비대칭 구조를 사용하였을 경우의 전자기장 균일도 개선효과에 관하여 검토한 것이다. 하나는 Quadratic Residue Diffuser (QRD)를 사용한 비대칭 구조, 그리고 다른 하나는 Randomly Made Diffuser(RMD)를 사용한 비대칭 구조의 전자파 잔향실이다. Finite-Difference Time-domain(FDTD) 수치해석 방법을 사용하여 두 종류의 전자파 잔향실에 관한 전자기장 균일도 특성을 조사하였다.

Keywords

References

  1. NBS Tech. Note 1092 Design, evaluation, and use of a reverberation chamber for performing electromagnetic chamber for performing electromagnetic susceptibility/vulnerability measurements M. L. Crawford;G. H. Koepke
  2. Proc. of the IEEE v.73 no.3 A review of electromagnetic compatibility/interference measurement methodologies M. T. Ma;M. Kanda;M. L. Crawford;E. B. Larsen
  3. IEICE Trans. Commun. v.E81-B no.10 FDTD Analysis of Electromagnetic Fields in a Reverberation Chamber K. Harima
  4. IEEE Symposium on EMC High field strength in a large volume :The intrinsic reverberation chamber F. B. J. Leferink
  5. Proc. of 7th Int. EMC Conf. An experimental investigation of asymmetric screened chambers D. J. Edwards
  6. Number Theory in Science and Communication M. R. Schroeder
  7. IEEE Trans. on EMC v.41 no.4 Investigation of the Field Uniformity of a Mode-Stirred Chamber Using Diffusers Based on Acoustic Theory M. Petirsch;A. J. Schwab
  8. Room Acoustics(2nd edition) H. Kuttruff
  9. J. of Acoust. Soc. Am. v.65 Binaural Dissimilarity and Optimum Ceilings for Concert Halls: More Lateral Sound Diffusion M. R. Schroeder
  10. Acoustic and Electromagnetic Waves D. S. Jones
  11. 한국전자파학회 논문지 v.11 no.5 전자파 확산방식을 이용한 잔향실 내부의 필드 분포 해석 이광순;이중근;정삼영
  12. 한국전자파학회 논문지 v.12 no.2 전자파 잔향실내 확산기 배열 조건에 따른 필드 분포 특성 이광순;이중근;정삼영
  13. IEEE Trans. Electromagn. Compat. v.EMC-23 no.4 Absorbing boundary condition for the finite-difference approximation of the time- domain electromagnetic field equation G. Mur
  14. IEC 61000-4-21(Draft): Annex XX: Alternative method Reverberation chamber method (Draft document 77B/215/CD)