forked from M-Labs/thermostat
PyThermostat GUI: Incorporate autotuning
Co-authored-by: topquark12 <aw@m-labs.hk> Co-authored-by: linuswck <linuswck@m-labs.hk> Co-authored-by: Egor Savkin <es@m-labs.hk>
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@ -18,6 +18,7 @@ class PIDAutotuneState(Enum):
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STATE_RELAY_STEP_DOWN = 'relay step down'
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STATE_SUCCEEDED = 'succeeded'
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STATE_FAILED = 'failed'
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STATE_READY = "ready"
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class PIDAutotune:
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@ -57,6 +58,21 @@ class PIDAutotune:
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self._Ku = 0
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self._Pu = 0
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def setParam(self, target, step, noiseband, sampletime, lookback):
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self._setpoint = target
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self._outputstep = step
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self._out_max = step
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self._out_min = -step
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self._noiseband = noiseband
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self._inputs = deque(maxlen=round(lookback / sampletime))
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def setReady(self):
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self._state = PIDAutotuneState.STATE_READY
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self._peak_count = 0
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def setOff(self):
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self._state = PIDAutotuneState.STATE_OFF
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def state(self):
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"""Get the current state."""
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return self._state
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@ -82,6 +98,13 @@ class PIDAutotune:
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kd = divisors[2] * self._Ku * self._Pu
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return PIDAutotune.PIDParams(kp, ki, kd)
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def get_tec_pid(self):
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divisors = self._tuning_rules["tyreus-luyben"]
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kp = self._Ku * divisors[0]
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ki = divisors[1] * self._Ku / self._Pu
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kd = divisors[2] * self._Ku * self._Pu
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return kp, ki, kd
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def run(self, input_val, time_input):
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"""To autotune a system, this method must be called periodically.
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84
pythermostat/pythermostat/gui/model/pid_autotuner.py
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84
pythermostat/pythermostat/gui/model/pid_autotuner.py
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@ -0,0 +1,84 @@
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from PyQt6.QtCore import QObject, pyqtSlot, pyqtSignal
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from qasync import asyncSlot
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from autotune import PIDAutotuneState, PIDAutotune
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class PIDAutoTuner(QObject):
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autotune_state_changed = pyqtSignal(int, PIDAutotuneState)
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def __init__(self, parent, thermostat, num_of_channel):
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super().__init__(parent)
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self._thermostat = thermostat
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self._thermostat.report_update.connect(self.tick)
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self.autotuners = [PIDAutotune(25) for _ in range(num_of_channel)]
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self.target_temp = [20.0 for _ in range(num_of_channel)]
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self.test_current = [1.0 for _ in range(num_of_channel)]
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self.temp_swing = [1.5 for _ in range(num_of_channel)]
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self.lookback = [3.0 for _ in range(num_of_channel)]
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self.sampling_interval = [1 / 16.67 for _ in range(num_of_channel)]
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def set_params(self, params_name, ch, val):
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getattr(self, params_name)[ch] = val
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def get_state(self, ch):
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return self.autotuners[ch].state()
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def load_params_and_set_ready(self, ch):
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self.autotuners[ch].setParam(
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self.target_temp[ch],
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self.test_current[ch] / 1000,
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self.temp_swing[ch],
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1 / self.sampling_interval[ch],
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self.lookback[ch],
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)
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self.autotuners[ch].setReady()
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self.autotune_state_changed.emit(ch, self.autotuners[ch].state())
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async def stop_pid_from_running(self, ch):
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self.autotuners[ch].setOff()
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self.autotune_state_changed.emit(ch, self.autotuners[ch].state())
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if self._thermostat.connected():
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await self._thermostat.set_param("output", ch, "i_set", 0)
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@asyncSlot(list)
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async def tick(self, report):
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for channel_report in report:
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ch = channel_report["channel"]
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self.sampling_interval[ch] = channel_report["interval"]
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# TODO: Skip when PID Autotune or emit error message if NTC is not connected
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if channel_report["temperature"] is None:
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continue
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match self.autotuners[ch].state():
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case (
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PIDAutotuneState.STATE_READY
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| PIDAutotuneState.STATE_RELAY_STEP_UP
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| PIDAutotuneState.STATE_RELAY_STEP_DOWN
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):
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self.autotuners[ch].run(
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channel_report["temperature"], channel_report["time"]
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)
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await self._thermostat.set_param(
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"output", ch, "i_set", self.autotuners[ch].output()
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)
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case PIDAutotuneState.STATE_SUCCEEDED:
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kp, ki, kd = self.autotuners[ch].get_tec_pid()
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self.autotuners[ch].setOff()
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self.autotune_state_changed.emit(ch, self.autotuners[ch].state())
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await self._thermostat.set_param("pid", ch, "kp", kp)
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await self._thermostat.set_param("pid", ch, "ki", ki)
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await self._thermostat.set_param("pid", ch, "kd", kd)
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await self._thermostat.set_param("output", ch, "pid")
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await self._thermostat.set_param(
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"pid", ch, "target", self.target_temp[ch]
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)
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case PIDAutotuneState.STATE_FAILED:
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self.autotuners[ch].setOff()
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self.autotune_state_changed.emit(ch, self.autotuners[ch].state())
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await self._thermostat.set_param("output", ch, "i_set", 0)
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@ -8,7 +8,9 @@ from PyQt6 import QtWidgets, QtGui, uic
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from PyQt6.QtCore import pyqtSlot
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import qasync
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from qasync import asyncSlot, asyncClose
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from pythermostat.autotune import PIDAutotuneState
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from pythermostat.gui.model.thermostat import Thermostat, ThermostatConnectionState
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from pythermostat.gui.model.pid_autotuner import PIDAutoTuner
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from pythermostat.gui.view.connection_details_menu import ConnectionDetailsMenu
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from pythermostat.gui.view.info_box import InfoBox
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from pythermostat.gui.view.thermostat_settings_menu import ThermostatSettingsMenu
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@ -55,6 +57,19 @@ class MainWindow(QtWidgets.QMainWindow):
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self._on_connection_state_changed
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)
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self._autotuners = PIDAutoTuner(self, self._thermostat, 2)
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self._autotuners.autotune_state_changed.connect(
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self._on_pid_autotune_state_changed
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)
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# Handlers for disconnections
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async def autotune_disconnect():
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for ch in range(self.NUM_CHANNELS):
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if self._autotuners.get_state(ch) != PIDAutotuneState.STATE_OFF:
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await self._autotuners.stop_pid_from_running(ch)
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self._thermostat.disconnect_cb = autotune_disconnect
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@pyqtSlot()
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def handle_connection_error():
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self._info_box.display_info_box(
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@ -117,6 +132,28 @@ class MainWindow(QtWidgets.QMainWindow):
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self.connect_btn.setText("Connect")
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self.status_lbl.setText("Disconnected")
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@pyqtSlot(int, PIDAutotuneState)
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def _on_pid_autotune_state_changed(self, _ch, _state):
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autotuning_channels = []
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for ch in range(self.NUM_CHANNELS):
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if self._autotuners.get_state(ch) in {
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PIDAutotuneState.STATE_READY,
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PIDAutotuneState.STATE_RELAY_STEP_UP,
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PIDAutotuneState.STATE_RELAY_STEP_DOWN,
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}:
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autotuning_channels.append(ch)
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if len(autotuning_channels) == 0:
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self.background_task_lbl.setText("Ready.")
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self.loading_spinner.hide()
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self.loading_spinner.stop()
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else:
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self.background_task_lbl.setText(
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f"Autotuning channel {autotuning_channels}..."
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)
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self.loading_spinner.start()
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self.loading_spinner.show()
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@asyncSlot()
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async def on_connect_btn_clicked(self):
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match self._thermostat.connection_state:
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