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FVTD analysis of radiowave propagation in two-dimensional tunnels with arbitrary bending angle

✍ Scribed by Kyung- Koo; Kiyotoshi Yasumoto; Kazunori Uchida; Toshiaki Matsunaga


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
321 KB
Volume
82
Category
Article
ISSN
8756-6621

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✦ Synopsis


The problem of electromagnetic wave propagation in a two-dimensional tunnel with an arbitrary bending angle is numerically analyzed by the FVTD method. The FVTD representations for the electromagnetic field in a lossy medium and the PML absorbing boundary condition are formulated and a procedure for the numerical analysis of the two-dimensional tunnel is provided. Next, as specific numerical examples, the electromagnetic propagation characteristics near the bend of tunnels with bending angles of 30°, 45°, and 60° are computed. It is confirmed that the results agree well with those of the model experiment using microwaves. Detailed numerical calculations are performed for the case in which the width of the tunnel is much larger than the wavelength. In this way, the propagation characteristics are predicted for an electromagnetic wave in the mobile communication frequency band, used inside a tunnel.


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