Analyse fonctionnelle by Brezis H.

By Brezis H.

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A. C. Polycarpou, “Multilayer effects on cavity-backed slot antennas,” IEEE Trans. , vol. 52, no. 3, pp. 880–887, Mar. 2004. 824672 38. T. T. Zygiridis, N. V. Kantartzis, and T. D. , vol. 24, nos. 1–2, pp. 95–111, 2004. 1080/02726340490261572 Printed Circuit Boards in EMC Structures 43 39. I. Eshrah, A. A. Kishk, A. B. Yakovlev, and A. W. Glisson, “Theory and implementation of dielectric resonator antenna excited by a waveguide slot,” IEEE Trans. , vol. 53, no. 1, pp. 483–494, Jan. 2005. 40. -H.

To evade this difficulty, the particular device is analyzed through a hybrid FDTD/MRTD and a FDTD/PSTD technique accompanied by an 8 cell PML absorber. In this way, the computational domain is discretized into a grid of 202 ´ 186 ´ 72 cells, thus allowing for the satisfactory modeling of the embedded circuits. 27 depicts the input impedance (resistance and reactance) of the antenna for two values of the slot dimension Ws. As observed, both hybrid algorithms are in promising agreement with the reference data [33] in the entire range of the frequency spectrum.

To derive the time-domain FIT expressions, one simply has to use forward and backward finite-difference approximators for the temporal derivatives. 10) � η0 Mε 0 , η0−1 M μ 0 � η01/2 j Π= , 0 η0 = � μ0 ε0 In this manner, it is easy to acquire the leapfrog integration scheme of the FDTD method. 11) in the complex plane and therefore found to be conditionally stable as long as the time-step remains smaller than a prefixed value, determined by a certain criterion. Basically, the most convenient one is the Courant condition explained in Chapter 2.

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