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| from jitcdde import jitcdde, y, t |
| import numpy as np |
| import csv |
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| def generator(tau, lyap_time, initial_condition): |
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| beta = 0.2 |
| gamma = 0.1 |
| n = 10 |
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| total_time = lyap_time*50 |
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| steps = 50 * 75 + 1 |
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| f = [beta*y(0,t-tau)/(1+y(0,t-tau)**n)-gamma*y(0)] |
| DDE = jitcdde(f) |
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| DDE.set_integration_parameters(atol=1e-17, rtol=1e-17, min_step=1e-17) |
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| DDE.constant_past([initial_condition]) |
| DDE.step_on_discontinuities() |
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| data = [] |
| for time in np.linspace(DDE.t, DDE.t+total_time, steps): |
| data.append(DDE.integrate(time)[0]) |
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| return np.array(data) |
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| if __name__ == '__main__': |
| taus = [] |
| lyap_times = [] |
| initial_conditions = [] |
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| with open('mackey_glass_parameters.csv', newline='') as csvfile: |
| reader = csv.reader(csvfile, delimiter=',') |
| for row in reader: |
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| if row[0] == 'tau': |
| continue |
| taus.append(int(row[0])) |
| lyap_times.append(int(row[1])) |
| initial_conditions.append(float(row[2])) |
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| for tau, lyap_time, initial_condition in zip(taus, lyap_times, initial_conditions): |
| data = generator(tau, lyap_time, initial_condition) |
| assert(len(data) == 50*75+1) |
| np.save('mg_{}.npy'.format(tau), data) |
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