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FGMM을 이용한 2중 유전체층 사이의 저항띠 격자구조에 의한 TM 산란 해

Solution of E-polarized Scattering by a Resistive Strip Grating Between a Double Dielectric Layer Using FGMM

  • 투고 : 2023.03.05
  • 심사 : 2023.05.03
  • 발행 : 2023.05.31

초록

본 논문에서는 2중 유전체층 사이의 저항띠 격자구조에 의한 TM(transverse magnetic) 산란 문제를 전자파 수치해석 방법으로 알려진 FGMM(fourier galerkin moment method)를 이용하여 해석하였다. 경계조건들은 미지의 계수를 구하기 위하여 이용하였고, 산란 전자계는 Floquet 모드 함수의 급수로 전개하였고, 저항띠의 해석을 위해 저항 경계조건을 적용하였다. 전반적으로, 저항띠의 균일저항율이 증가하면 저항띠에 유도되는 전류밀도의 크기는 감소하였고 반사 전력은 감소하였으며, 상대적으로 투과전력은 증가하였다. 또한 유전체 층의 두께가 증가할수록 반사전력은 증가하였고 상대적으로 투과전력은 상대적으로 감소하였다. 본 논문에서 제안된 구조에 대한 수치결과들은 기존 논문의 수치해석 방법인 PMM의 결과들과 비교하여 매우 잘 일치하였다.

In this paper, TM(transverse magnetic) scattering problems by a resistive strip grating between a double dielectric layer are analyzed by using the FGMM(fourier galerkin moment method) known as a numerical method of electromagnetic fileld. The boundary conditions are applied to obtain the unknown field coefficients, the scattered electromagnetic fields are expanded in a series of Floquet mode functions, and the resistive boundary condition is applied to analysis of the resistive strip. Overall, as the uniform resistivity of the resistive strip increased, the size of the current density induced in the resistance band decreased, the reflected power decreased, and the transmitted power increased. In addition, As the thickness of the dielectric layer increased, the reflected power increased and the transmitted power relatively decreased. The numerical results of the structure proposed in this paper are shown in good agreement compared to the results of PMM, a numerical analysis method of the existing paper.

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참고문헌

  1. M. Ando and K. Takei, "Reflection and Transmission Coefficient of a Thin Strip Grating for Antenna Application," IEEE Transactions on Antennas and Propagation, Vol. AP-35, No.4, pp.367-371, Mar. 1987. DOI: http://dx.doi.org/10.1109/TAP.1987.1144112
  2. J. H. Richmond, "On the Edge Mode in the Theory of TM Scattering by a Strip or Strip Grating," IEEE Transactions on Antennas and Propagation, Vol. AP-28, pp. 883-887, Sept. 1980. DOI: http://dx.doi.org/10.1109/TAP.1980.1142427
  3. R. C. Hall and R. Mittra, "Scattering from a Periodic Array of Resistive Strips," IEEE Transactions on Antennas and Propagation, Vol. AP-33, pp. 1009-1011, Sept. 1985. DOI: http://dx.doi.org/10.1109/TAP.1985.1143706
  4. H. A. Kalhor, "Electromagnetic Scattering by a Dielectric Slab Loaded with a Periodic Array of Srips Over a Grounded Plane," IEEE Transactions on Antennas and Propagation, Vol. AP-36, No. 1, pp. 147-151, Jan. 1988. OI: http://dx.doi.org/10.1109/8.1088
  5. J. L. Volakis, Y. C. Lin and H. Anastassiu, "TE Characterizatin of Resistive Strip Grating on a Dielectric Slab Using a Single Edge-Mode Expansion," IEEE Transactions on Antennas and Propagation, Vol. AP-42, No. 2, pp. 205-212, Feb. 1994. https://doi.org/10.1109/8.277214
  6. K. C. Ho, "Design of Frequency-Selective Reflector for Large Reflecting Antennas using a Periodic Dielectric Layer," The Journal of The Institute of Internet, Broadcasting and Communication(JIIBC), Vol. 10, No. 1, pp. 33-38, 2010.
  7. U. J. Yoon, "A Study on TE Scattering by a Conductive Strip Grating Between a Double Dielectric Layer," The Journal of The Institute of Internet, Broadcasting and Communication (JIIBC), Vol.17, No.2, pp.83-88, 2017. https://doi.org/10.7236/JIIBC.2017.17.2.83
  8. U. J. Yoon, "A Study on TM Scattering by a Conductive Strip Grating Between a Double Dielectric Layer," The Journal of The Institute of Internet, Broadcasting and Communication (JIIBC), Vol.18, No.2, pp.73-79, 2018.DOI: http://doi.org/10.7236/JIIBC.2018.18.2.73
  9. U. J. Yoon, "Analysis of E-polarized Electromagnetic Scattering by a Conductive Strip Grating Between a Double Dielectric Layer Using FGMM," Journal of the Institute of Internet, Broadcasting and Communication(IIBC), Vol. 20, No. 1, pp. 77-82, 2020. DOI: http://dx.doi.org/10.7236/JIIBC.2020.20.1.77
  10. U. J. Yoon, "A Study on TM Scattering by a Resistive Strip Grating Between a Double Dielectric Layer," Journal of the Institute of Internet, Broadcasting and Communication(IIBC), Vol. 21, No. 1, pp. 49-54, 2021.DOI: http://dx.doi.org/10.7236/JIIBC.2021.21.1.49