display detected beat frequency
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parent
efc7ca9e32
commit
8b90d7395b
4
dmi.py
4
dmi.py
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@ -19,8 +19,8 @@ def main():
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induction = InductionHeater("/dev/ttyUSB0", 350e3, 445e3)
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induction.start()
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try:
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def stabilizer_cb(spectrum, tuning):
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gui.update_beat_spectrum(spectrum)
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def stabilizer_cb(spectrum, peak_freq, tuning):
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gui.update_beat_spectrum(spectrum, peak_freq)
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induction.set(tuning)
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stabilizer = Stabilizer(block_size, 80.0, 1088.1e6 - freq_base, 10e-6, stabilizer_cb)
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4
gui.py
4
gui.py
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@ -54,8 +54,8 @@ class GUI:
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os.path.join(os.path.dirname(os.path.abspath(__file__)), "gui_impl.py"),
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str(freq_sample), str(freq_base), str(block_size)])
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def update_beat_spectrum(self, data):
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obj = {"action": "update_beat_spectrum", "data": data}
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def update_beat_spectrum(self, block, peak_freq):
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obj = {"action": "update_beat_spectrum", "block": block, "peak_freq": peak_freq}
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self.impl.write_pyon(obj)
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def close(self):
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53
gui_impl.py
53
gui_impl.py
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@ -10,30 +10,49 @@ from sipyco.pipe_ipc import AsyncioChildComm
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from sipyco import pyon
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class SpectrogramWidget(pg.PlotWidget):
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class SpectrogramItem(pg.ImageItem):
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def __init__(self, freq_sample, freq_base, block_size):
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super(SpectrogramWidget, self).__init__()
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pg.ImageItem.__init__(self)
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depth = 100
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self.img_array = np.zeros((depth, block_size))
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self.img = pg.ImageItem()
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self.addItem(self.img)
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self.img.setImage(self.img_array, autoLevels=True)
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self.setImage(self.img_array, autoLevels=True)
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pos = np.array([0., 1., 0.5, 0.25, 0.75])
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color = np.array([[0,255,255,255], [255,255,0,255], [0,0,0,255], (0, 0, 255, 255), (255, 0, 0, 255)], dtype=np.ubyte)
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cmap = pg.ColorMap(pos, color)
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lut = cmap.getLookupTable(0.0, 1.0, 256)
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self.img.setLookupTable(lut)
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self.setLookupTable(lut)
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self.img.setRect(QtCore.QRectF(0.0, freq_base-freq_sample/2, float(depth), freq_sample))
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self.setRect(QtCore.QRectF(0.0, (freq_base-freq_sample/2)/1e6, float(depth), freq_sample/1e6))
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def update(self, block):
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def add_block(self, block):
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self.img_array = np.roll(self.img_array, -1, 0)
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self.img_array[-1:] = np.fft.fftshift(block)
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self.img.setImage(self.img_array, autoLevels=True)
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self.setImage(self.img_array, autoLevels=True)
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class MainWindow(pg.GraphicsWindow):
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def __init__(self, freq_sample, freq_base, block_size):
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pg.GraphicsWindow.__init__(self)
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self.setWindowTitle("NOPTICA Wavemeter")
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self.freq_sample = freq_sample
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self.freq_base = freq_base
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self.text = pg.LabelItem()
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self.addItem(self.text)
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p1 = self.addPlot(row=1, col=0)
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self.beat_spectrum = SpectrogramItem(freq_sample, freq_base, block_size)
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p1.addItem(self.beat_spectrum)
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def update_params(self, peak_freq):
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if peak_freq is None:
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self.text.setText("REF: NO BEAT")
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else:
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self.text.setText("REF: {:.3f}MHz".format((self.freq_base + self.freq_sample*peak_freq)/1e6))
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class IPCClient(AsyncioChildComm):
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@ -44,13 +63,14 @@ class IPCClient(AsyncioChildComm):
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line = await self.readline()
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return pyon.decode(line.decode())
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async def listen(self, spectrogram):
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async def listen(self, main_window):
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while True:
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obj = await self.read_pyon()
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try:
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action = obj["action"]
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if action == "update_beat_spectrum":
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spectrogram.update(obj["data"])
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main_window.beat_spectrum.add_block(obj["block"])
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main_window.update_params(obj["peak_freq"])
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if action == "terminate":
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self.close_cb()
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return
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@ -73,11 +93,10 @@ def main():
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ipc = IPCClient(os.getenv("NOPTICA2_IPC"))
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loop.run_until_complete(ipc.connect())
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try:
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main_widget = SpectrogramWidget(freq_sample, freq_base, block_size)
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main_widget.setWindowTitle("NOPTICA Wavemeter")
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main_widget.show()
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ipc.set_close_cb(main_widget.close)
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asyncio.ensure_future(ipc.listen(main_widget))
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main_window = MainWindow(freq_sample, freq_base, block_size)
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main_window.show()
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ipc.set_close_cb(main_window.close)
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asyncio.ensure_future(ipc.listen(main_window))
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loop.run_forever()
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finally:
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ipc.close()
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@ -116,14 +116,15 @@ class Stabilizer:
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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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i = np.argmax(spectrum)
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freq = self.freqs[i]
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amplitude = spectrum[i]
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if amplitude > self.amp_threshold:
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freq = self.freqs[i]
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tuning = (freq - self.freq_target)*self.k
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else:
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freq = None
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tuning = 0.0
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self.cb(spectrum, tuning)
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self.cb(spectrum, freq, tuning)
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def continuous_unwrap(last_phase, last_phase_unwrapped, p):
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