你已经派生过 gprMax
镜像自地址
https://gitee.com/sunhf/gprMax.git
已同步 2025-08-03 19:26:50 +08:00
91 行
3.4 KiB
Python
91 行
3.4 KiB
Python
# Copyright (C) 2015-2023: The University of Edinburgh
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# Authors: Craig Warren and Antonis Giannopoulos
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#
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# This file is part of gprMax.
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#
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# gprMax is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# gprMax is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with gprMax. If not, see <http://www.gnu.org/licenses/>.
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import argparse
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import os
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import sys
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import h5py
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import numpy as np
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import matplotlib.pyplot as plt
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from gprMax.exceptions import CmdInputError
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"""Plots a comparison of fields between given simulation output and experimental data files."""
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# Parse command line arguments
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parser = argparse.ArgumentParser(description='Plots a comparison of fields between given simulation output and experimental data files.', usage='cd gprMax; python -m tests.test_compare_experimental modelfile realfile output')
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parser.add_argument('modelfile', help='name of model output file including path')
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parser.add_argument('realfile', help='name of file containing experimental data including path')
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parser.add_argument('output', help='output to be plotted, i.e. Ex Ey Ez', nargs='+')
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args = parser.parse_args()
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# Model results
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f = h5py.File(args.modelfile, 'r')
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path = '/rxs/rx1/'
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availablecomponents = list(f[path].keys())
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# Check for polarity of output and if requested output is in file
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if args.output[0][0] == 'm':
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polarity = -1
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args.outputs[0] = args.output[0][1:]
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else:
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polarity = 1
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if args.output[0] not in availablecomponents:
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raise CmdInputError('{} output requested to plot, but the available output for receiver 1 is {}'.format(args.output[0], ', '.join(availablecomponents)))
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floattype = f[path + args.output[0]].dtype
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iterations = f.attrs['Iterations']
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dt = f.attrs['dt']
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model = np.zeros(iterations, dtype=floattype)
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model = f[path + args.output[0]][:] * polarity
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model /= np.amax(np.abs(model))
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timemodel = np.linspace(0, 1, iterations)
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timemodel *= (iterations * dt)
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f.close()
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# Find location of maximum value from model
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modelmax = np.where(np.abs(model) == 1)[0][0]
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# Real results
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with open(args.realfile, 'r') as f:
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real = np.loadtxt(f)
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real[:, 1] = real[:, 1] / np.amax(np.abs(real[:, 1]))
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realmax = np.where(np.abs(real[:, 1]) == 1)[0][0]
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difftime = - (timemodel[modelmax] - real[realmax, 0])
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# Plot modelled and real data
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fig, ax = plt.subplots(num=args.modelfile + ' versus ' + args.realfile, figsize=(20, 10), facecolor='w', edgecolor='w')
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ax.plot(timemodel + difftime, model, 'r', lw=2, label='Model')
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ax.plot(real[:, 0], real[:, 1], 'r', ls='--', lw=2, label='Experiment')
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ax.set_xlabel('Time [s]')
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ax.set_ylabel('Amplitude')
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ax.set_xlim([0, timemodel[-1]])
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ax.set_ylim([-1, 1])
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ax.legend()
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ax.grid()
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# Save a PDF/PNG of the figure
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savename = os.path.abspath(os.path.dirname(args.modelfile)) + os.sep + os.path.splitext(os.path.split(args.modelfile)[1])[0] + '_vs_' + os.path.splitext(os.path.split(args.realfile)[1])[0]
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# fig.savefig(savename + '.pdf', dpi=None, format='pdf', bbox_inches='tight', pad_inches=0.1)
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# fig.savefig((savename + '.png', dpi=150, format='png', bbox_inches='tight', pad_inches=0.1)
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plt.show()
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