For 1.10
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@ -36,12 +36,14 @@ colors = cm.get_cmap('OrRd')
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colors.set_bad('white')
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colors.set_bad('white')
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ax.set_xticklabels(np.arange(1, 46, 11))
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ax.set_xticklabels(np.arange(1, 46, 11))
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dct = ax.imshow(ndata, cmap=colors, origin='lower')#, norm=colors.LogNorm())
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dct = ax.imshow(ndata, cmap=colors, origin='lower')#, norm=colors.LogNorm())
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sc = ax.scatter(np.arange(7, 45), np.floor(45 / np.arange(8, 46)), s=20, facecolors='none', edgecolors='black', linewidths=0.75, linestyle='dotted', label='Maximal number of opponents')
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ax.plot(np.arange(7, 45), np.floor(45 / np.arange(8, 46)),
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plt.legend()
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marker='x', color='black', markersize=3, linestyle='none', markeredgewidth=0.5)
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# ax2 = ax.twinx()
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# ax2.set_ylabel("Maximal Number of opponents")
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ax.set_xlabel("Decision time")
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ax.set_xlabel("Decision time")
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ax.set_ylabel("Number of opponents")
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ax.set_ylabel("Number of partners")
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fig.colorbar(dct, ax=ax, orientation='horizontal', aspect=40)
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fig.colorbar(dct, ax=ax, orientation='horizontal', aspect=40)
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# plt.show()
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# plt.show()
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# print(plt.rcParams)
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plt.savefig('graph/decision_time.eps')
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plt.savefig('graph/decision_time.eps')
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29
theta_plot.py
Normal file
29
theta_plot.py
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@ -0,0 +1,29 @@
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import numpy as np
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from matplotlib import pyplot as plt
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import scipy as sp
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from matplotlib import markers
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blue = '#0984e3'
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red = '#d63031'
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x = np.arange(1, 16)
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tc = np.loadtxt("outputs/EID_CLASSIC.csv", delimiter=',')
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ts = np.loadtxt("outputs/EID_SURVIVE.csv", delimiter=',')
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fig = plt.figure(figsize=(6,4.5))
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ax = fig.gca()
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ax.plot(x[:-1], tc[:-1], 'o--', color='limegreen', linewidth=2, label=r"Classic")
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ax.plot(x[:-1], ts[:-1], 'o-', color='darkorange', linewidth=2, label=r"Dissipative")
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ax.set_ylim(-1500, 500)
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ax.set_yticks(sp.linspace(-1500, 500, 6))
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ax.tick_params(labelsize=14)
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ax.set_xlim(1, 15)
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ax.set_xticks(sp.linspace(1,15,8, dtype=int))
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ax.set_xlabel("Rounds", size=22)
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ax.set_ylabel(r"$\theta$", family='sans-serif', size=22)
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# ax.tick_params(axis='y', labelcolor=red)
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plt.legend(numpoints=2, fontsize=14)
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plt.tight_layout()
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# plt.show()
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plt.savefig("graph/theta_plot.eps")
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