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Volume 22 Issue 6
Nov.  2000
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Ji Fei, Zhang Guoji, Cui Furong, Lai Shengli. WIDE BAND ANALYSIS OF TRANSMISION CHARACTERISTICS IN GTEM CELL[J]. Journal of Electronics & Information Technology, 2000, 22(6): 1022-1027.
Citation: Ji Fei, Zhang Guoji, Cui Furong, Lai Shengli. WIDE BAND ANALYSIS OF TRANSMISION CHARACTERISTICS IN GTEM CELL[J]. Journal of Electronics & Information Technology, 2000, 22(6): 1022-1027.

WIDE BAND ANALYSIS OF TRANSMISION CHARACTERISTICS IN GTEM CELL

  • Received Date: 1999-02-03
  • Rev Recd Date: 1999-08-22
  • Publish Date: 2000-11-19
  • The TEM cell is limited in the upper useful test frequency but GHz TEM (GTEM) cell permits to overcome this restriction. This paper analyzes the transmisssion characteristics in GTEM cell using FDTD method in the nonorthogonal coordinate. The field distributions have been calculated and the upper useful frequency has been analyzed. The results are of great value to the using and designing of GTEM cells.
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  • Crawford Myron L. Generation of standard EM fields using TEM transmission cells[J].IEEE Trans.on Electromagn. Compat.1974, EMC-16(4):189-195[2]Spiegel R J, Joines W T, Blackman C F, Wood A W. A method for calculating electric and magnetic fields in TEM cells at ELF. IEEE Trans. on Electromagn. Compat., 1997, EMC-29(4):265-272.[3]Koenigstein D, Hansen D. A new family of TEM-cells with enlarged bandwidth and optimized working volume, In Proc. 7th Int. Zurich Symp. And Techn. Exh. on EMC, Zurich: 1987,127-132.[4]De Leo R, Rozzi T, Svara C, et al. Rigorous analysis of the GTEM cell. IEEE Trans. on Microwave Theory and Tech., 1991, MTT-39(3): 488-499.[5]Liu Y, Tang B, Gao Y. Sphere-TEM mode in rectangular top horn offset coaxial transmission line. IEEE Trans. on Electromagn. Compat., 1994, EMC-36(4): 390-394.[6]Kama Huang, Yongqin Liu. A simple method for calculating electric and magnetic fields in GTEM cell. IEEE Trans. on Electromagn. Compat., 1994, EMC-36(4): 355-358.[7]Holland R. Finite-difference solution of Maxwells equations in generalized nonorthogonal coordinates. IEEE Trans. on Nucl. Sci., 1983, NS-30(6): 4589-4595.[8]Jinfa Lee, Palandech R, Mittra R. Modeling three-dimensional discontinuities in waveguides using nonorthogonal FDTD algorithm. IEEE Trans. on Microwave Theory and Tech., 1992, MTT-40(2): 346-352.[9]Holland R, Williams J W. Total-field versus scattered-field finite-difference codes: A comparative assessment. IEEE Trans. on Nucl. Sci., 1983, NS-30(6): 4583-4588.[10]Berenger J P. A perfectly matched layer for the absorption of electromagnetic waves[J].J. Comput. Phys.1994, 114(2):185-200
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