Numerical Derivation of Design Guidelines for Tightness and Shaking Amplitude of Vibrating Intrinsic Reverberation Chamber by Method of Moment

Author:

HARA Makoto1,WANG Jianqing2,LEFERINK Frank3

Affiliation:

1. Kawasaki Heavy Industries, Ltd.

2. Nagoya Institute of Technology

3. University of Twente

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Software

Reference15 articles.

1. [1] IEC 61000-4-21 Edition 2.0, Electromagnetic Compatibility (EMC) -Part 4-21: Testing and measurement techniques-Reverberation chamber test methods, International Electrotechnical Commission, Geneva, 2011.

2. [2] Patent WO34795, NL1010745, AU18605 etc., “Test Chamber,” Hollandse Signaalapparaten B.V., Netherlands.

3. [3] F.B.J. Leferink, J.C. Boudenot, and W. van Etten, “Experimental results obtained in the vibrating intrinsic reverberation chamber,” 2000 IEEE International Symposium on Electromagnetic Compatibility, pp.639-644, Washington D.C., USA, Aug. 2000. 10.1109/isemc.2000.874695

4. [4] F. Leferink, “In-situ high field strength testing using a transportable reverberation chamber,” Proc. 2008 Asia-Pacific Symposium on Electromagnetic Compatibility and 19th International Zurich Symposium on Electromagnetic Compatibility, pp.383-386, Singapore, Singapore, May 2008. 10.1109/apemc.2008.4559891

5. [5] R. Serra and F. Leferink, “Optimizing the stirring strategy for the vibrating intrinsic reverberation chamber,” 9th International Symposium on EMC and 20th International Wroclaw Symposium on Electromagnetic Compatibility, pp.457-462, Wroclaw, Poland, Sept. 2010.

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