Created
January 15, 2016 18:09
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Downconverting band-limited real-valued signal is a mess I don't have time to clean up. :-)
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#!/usr/bin/env python | |
import numpy | |
import scipy.fftpack | |
import matplotlib.pyplot as plt | |
def plot_time_domain_of(items): | |
for t, samples, label in items: | |
plt.plot(t, samples, label=label) | |
plt.legend() | |
plt.show() | |
def plot_spectrum_of(items): | |
for t, samples, label in items: | |
f = scipy.fftpack.fft(samples) / len(samples) | |
f_mag = numpy.absolute(f) | |
f_db = numpy.log10(f_mag) * 20 | |
plt.plot(f_db, label=label) | |
plt.legend() | |
plt.show() | |
sampling_rate = 137.5e6 | |
intermediate_frequency = 35e6 | |
target_center_frequency = 20e6 | |
frequency_shift = target_center_frequency - intermediate_frequency | |
sample_count = 200 | |
test_signal_frequency = 20e6 | |
n = numpy.arange(0, sample_count, dtype=numpy.float64) | |
t = n / sampling_rate | |
w = t * 2 * numpy.pi | |
signal = numpy.cos(w * test_signal_frequency) | |
sinusoid = numpy.cos(w * frequency_shift) | |
output = signal * sinusoid | |
signals = ( | |
(t, signal, 'signal'), | |
(t, sinusoid, 'mix'), | |
(t, output, 'out'), | |
) | |
plot_time_domain_of(signals) | |
plot_spectrum_of(signals) |
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