add LinearPhaseFilter and Delay
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noptica.py
35
noptica.py
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@ -4,7 +4,7 @@ import threading
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import SoapySDR
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import SoapySDR
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import numpy as np
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import numpy as np
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from scipy.signal import blackmanharris
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from scipy import signal
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class BufferedSDR:
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class BufferedSDR:
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@ -127,7 +127,7 @@ class Stabilizer:
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self.wiggle_amplitude = 0.15
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self.wiggle_amplitude = 0.15
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def input(self, samples):
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def input(self, samples):
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spectrum = np.abs(np.fft.fft(samples*blackmanharris(len(samples))))
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spectrum = np.abs(np.fft.fft(samples*signal.blackmanharris(len(samples))))
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i = np.argmax(spectrum)
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i = np.argmax(spectrum)
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amplitude = spectrum[i]
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amplitude = spectrum[i]
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@ -189,3 +189,34 @@ class PositionTracker:
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self.last_phase = phase[-1]
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self.last_phase = phase[-1]
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self.last_position = position[-1]
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self.last_position = position[-1]
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return position
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return position
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class LinearPhaseFilter:
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def __init__(self, numtaps, *args, **kwargs):
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self.numtaps = numtaps
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self.coef = signal.firwin(numtaps, *args, **kwargs)
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self.state = np.zeros(self.numtaps - 1)
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def input(self, block):
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output, self.state = signal.lfilter(self.coef, [1.0], block, zi=self.state)
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return output
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def delay(self):
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assert(self.numptaps % 2 == 1)
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return (self.numptaps - 1)//2
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class Delay:
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def __init__(self, block_size, delay_amount):
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self.block_size = block_size
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self.delay_amount = delay_amount
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self.output = np.zeros(block_size)
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self.next = np.zeros(delay_amount)
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def input(self, block):
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assert(len(block) == self.block_size)
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split = self.block_size - self.delay_amount
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self.output[:self.delay_amount] = self.next
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self.output[self.delay_amount:] = block[:split]
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self.next = block[split:]
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return self.output
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