2007-11-03
Electromagnetic Model for Microwave Components of Integrated Circuits
By
Progress In Electromagnetics Research B, Vol. 1, 81-94, 2008
Abstract
This paper presents an accurate and robust time-domain electromagnetic model for microwave components of integrated circuits. The time-domain model has been validated on different structures such as metallic waveguides, planer lines and the transition of waveguide-microstrip line under harmonic oscillation excitation. The results obtained from simulation were compared to the experimental test results. The simulation results demonstrated that the approach is suitable to model microwave components of integrated circuits.
Citation
Farah Mohammadi, and Mustapha C. E. Yagoub, "Electromagnetic Model for Microwave Components of Integrated Circuits," Progress In Electromagnetics Research B, Vol. 1, 81-94, 2008.
doi:10.2528/PIERB07101802
References

1. Park, J. K., D. H. Shin, J. N. Lee, and H. J. Eom, "A full-wave analysis of a coaxial waveguide slot bridge using the Fourier transform technique," Journal of Electromagnetic Waves and Applications, Vol. 20, No. 2, 143-158, 2006.
doi:10.1163/156939306775777198        Google Scholar

2. Tan, K.-B., L. Li, and C.-H. Liang, "Canonical analysis for dissipative electromagnetic medium," Journal of Electromagnetic Waves and Applications, Vol. 21, No. 11, 1499-1505, 2006.        Google Scholar

3. Taflove, M. A., Computational Electrodynamics: The Finite-Difference Time-Domain Method, 2nd Ed., Artech House, 2000.

4. Mur, G., "Total field absorbing boundary conditions for the time domain electromagnetic field equations," IEEE Trans. on Electromagnetic Compatibility, Vol. 40, No. 2, 100-102, May 1998.
doi:10.1109/15.673614        Google Scholar

5. Berenger, J. P., "Making use of the PML absorbing boundary condition in coupling and scattering FDTD computer codes," IEEE Trans. on Electromagnetic Compatibility, Vol. 45, No. 2, 189-197, May 2003.
doi:10.1109/TEMC.2003.810803        Google Scholar

6. Yu, T.-B., B.-H. Zhou, and B. Chen, "An unsplit formulation of the Berenger’s PML absorbing boundary condition for FDTD meshes," IEEE Microwave and Wireless Components Letters, Vol. 13, No. 8, 348-350, August 2003.
doi:10.1109/LMWC.2003.815694        Google Scholar

7. Watanabe, K. and K. Yasumoto, "Two-dimensional electromagnetic scattering of non-plane incident waves by periodic structures," Progress In Electromagnetics Research, Vol. 74, 241-271, 2007.
doi:10.2528/PIER07050902        Google Scholar

8. Gedney, S. D., G. Liu, J. A. Roden, and A. Zhu, "Perfectly matched layer media with CFS for an unconditionally stable ADI-FDTD method," IEEE Trans.on Antennas and Propagation, Vol. 49, 1554-1559, November 2001.
doi:10.1109/8.964091        Google Scholar

9. Arndt, F., R. Lotez, and J. Ritter, "Advanced FD-TD techniques for the CAD of microwave components," Electromagnetics, Vol. 23, 153-168, Feb.-Mar. 2003.        Google Scholar

10. Jiao, D. and J. M. Jin, "Time-domain finite-element modeling of dispersive media," IEEE Trans. Microwave and Wireless Components Letters, Vol. 11, 220-223, May 2001.
doi:10.1109/7260.923034        Google Scholar

11. Arnold, M. D., "An efficient solution for scattering by a perfectly conducting strip grating," Journal of Electromagnetic Waves and Applications, Vol. 20, No. 7, 891-900, 2006.
doi:10.1163/156939306776149905        Google Scholar

12. Gelius, L.-J., "Electromagnetic scattering approximations revisited," Progress In Electromagnetics Research, Vol. 76, 75-94, 2007.
doi:10.2528/PIER07062501        Google Scholar