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已同步 2025-08-07 04:56:51 +08:00
Updated numerical comparisons example.
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@@ -12,28 +12,39 @@ The Finite-Difference Time-Domain (FDTD) method from gprMax is compared with the
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Bowtie antenna in free space
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Bowtie antenna in free space
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----------------------------
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:download:`antenna_bowtie_fs.in <../../tests/numerical/vs_MoM_MATLAB/antenna_bowtie_fs/antenna_bowtie_fs.in>`
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This example considers the input impedance of a planar bowtie antenna in free space. The length and height of the bowtie are 100mm, giving a flare angle of :math:`90^\circ`.
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This example considers the input impedance of a planar bowtie antenna in free space. The length and height of the bowtie are 100mm, giving a flare angle of :math:`90^\circ`.
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FDTD model
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^^^^^^^^^^
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:download:`antenna_bowtie_fs.in <../../tests/numerical/vs_MoM_MATLAB/antenna_bowtie_fs/antenna_bowtie_fs.in>`
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.. literalinclude:: ../../tests/numerical/vs_MoM_MATLAB/antenna_bowtie_fs/antenna_bowtie_fs.in
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.. literalinclude:: ../../tests/numerical/vs_MoM_MATLAB/antenna_bowtie_fs/antenna_bowtie_fs.in
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:language: none
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:language: none
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:linenos:
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:linenos:
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For the MoM, the bowtie antenna was created in MATLAB using the ``bowtieTriangular`` class:
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A Gaussian waveform with a centre frequency of 1.5GHz was used to excite the antenna, which was fed by a transmission line with a characteristic impedance of 50 Ohms.
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The module ``plot_antenna_params`` from the ``tools`` subpackage was used to calculate and plot the input impedance from the FDTD model.
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MoM model
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^^^^^^^^^
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The bowtie antenna was created using the antenna toolbox in MATLAB, and the ``bowtieTriangular`` class.
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.. code-block:: matlab
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.. code-block:: matlab
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bowtie = bowtieTriangular('Length', 0.1)
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bowtie = bowtieTriangular('Length', 0.1)
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zin = impedance(bowtie, 33.33e6:33.33e6:6e9)
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Results
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Results
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-------
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-------
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:numref:`antenna_bowtie_fs_zin_results` shows the input impedance (resistive and reactive) for the FDTD (gprMax) and MoM (MATLAB) models.
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:numref:`antenna_bowtie_fs_ant_params` shows the input impedance (resistive and reactive) for the FDTD (gprMax) and MoM (MATLAB) models. The frequency resolution for the FFT used in both models was :math:`\Delta f = 33.33~MHz`
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.. _hertzian_dipole_fs_results:
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.. _hertzian_dipole_fs_results:
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.. figure:: ../../tests/numerical/vs_MoM_MATLAB/antenna_bowtie_fs/antenna_bowtie_fs_zin_results.png
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.. figure:: ../../tests/numerical/vs_MoM_MATLAB/antenna_bowtie_fs/antenna_bowtie_fs_ant_params.png
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:width: 600 px
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:width: 600 px
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Input impedance (resistive and reactive) of a bowtie antenna in free space using FDTD (gprMax) and MoM (MATLAB) models.
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Input impedance (resistive and reactive) of a bowtie antenna in free space using FDTD (gprMax) and MoM (MATLAB) models.
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之前 宽度: | 高度: | 大小: 225 KiB 之后 宽度: | 高度: | 大小: 238 KiB |
@@ -53,6 +53,5 @@ gprMax User Guide
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:caption: Appendices
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:caption: Appendices
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comparisons_analytical
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comparisons_analytical
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comparisons_numerical
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references
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references
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之后 宽度: | 高度: | 大小: 143 KiB |
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