Add a real-time Plot tab to brewpi_gui, mirroring demo_sud figure 1

Embeds a dark-themed matplotlib canvas (3 stacked strip charts: theta
ist/soll, heatrate ist/soll, heater power_set/power_eff) in a new Plot
tab, sampled once per second from the latest websocket-received values.

HeaterTask now also emits a PowerSet message (the pre-discretization
target power) alongside the existing Power (effective) message, since
the GUI had no way to see the set-point side of figure 1's bottom plot
otherwise.
This commit is contained in:
2026-06-20 22:31:07 +02:00
parent bb94e065f4
commit 93b5667a64
5 changed files with 133 additions and 3 deletions
+13 -1
View File
@@ -708,8 +708,20 @@
</widget> </widget>
<widget class="QWidget" name="tab_2"> <widget class="QWidget" name="tab_2">
<attribute name="title"> <attribute name="title">
<string>Seite</string> <string>Plot</string>
</attribute> </attribute>
<layout class="QVBoxLayout" name="verticalLayout_plot">
<item>
<widget class="QWidget" name="widget_plot" native="true">
<property name="minimumSize">
<size>
<width>0</width>
<height>400</height>
</size>
</property>
</widget>
</item>
</layout>
</widget> </widget>
</widget> </widget>
<widget class="QWidget" name="gridLayoutWidget"> <widget class="QWidget" name="gridLayoutWidget">
+107 -1
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@@ -1,14 +1,87 @@
#!/usr/bin/env python3 #!/usr/bin/env python3
from main_window import Ui_MainWindow from main_window import Ui_MainWindow
from PyQt5 import QtWidgets, QtGui from PyQt5 import QtWidgets, QtGui, QtCore
import json import json
import sys import sys
import time
import matplotlib
matplotlib.use("Qt5Agg")
import matplotlib.style
matplotlib.style.use("dark_background")
from matplotlib.backends.backend_qt5agg import FigureCanvasQTAgg
from matplotlib.figure import Figure
from ws.client.ws_client import WsClient from ws.client.ws_client import WsClient
from ws.message import MessageDispatcherSync from ws.message import MessageDispatcherSync
from queue import Queue from queue import Queue
import asyncio import asyncio
class RealtimePlot(FigureCanvasQTAgg):
"""Live theta/heatrate/heater-power strip charts, mirroring figure 1 of
scripts/demos/sud/demo_sud.py but fed from the websocket connection
instead of an offline simulation run."""
def __init__(self):
figure = Figure()
FigureCanvasQTAgg.__init__(self, figure)
self.ax_temp, self.ax_rate, self.ax_power = figure.subplots(3, 1, sharex=True)
self.line_temp_ist, = self.ax_temp.plot([], [], '-c', linewidth=1, label="theta_ist")
self.line_temp_soll, = self.ax_temp.plot([], [], '-m', linewidth=1, label="theta_soll")
self.ax_temp.set_ylabel("Temp [°C]")
self.ax_temp.legend(loc='upper left', fontsize='small')
self.ax_temp.grid(True)
self.line_rate_ist, = self.ax_rate.plot([], [], '-c', linewidth=1, label="heatrate_ist")
self.line_rate_soll, = self.ax_rate.plot([], [], '-m', linewidth=1, label="heatrate_soll")
self.ax_rate.set_ylabel("Rate [K/min]")
self.ax_rate.legend(loc='upper left', fontsize='small')
self.ax_rate.grid(True)
self.line_power_set, = self.ax_power.plot([], [], '-m', linewidth=1, label="power_set")
self.line_power_eff, = self.ax_power.plot([], [], '-c', linewidth=1, label="power_eff")
self.ax_power.set_ylabel("Power [W]")
self.ax_power.set_xlabel("t [s]")
self.ax_power.legend(loc='upper left', fontsize='small')
self.ax_power.grid(True)
figure.tight_layout()
self.reset()
def reset(self):
self.t0 = time.monotonic()
self.t = []
self.temp_ist = []
self.temp_soll = []
self.rate_ist = []
self.rate_soll = []
self.power_set = []
self.power_eff = []
def sample(self, temp_ist, temp_soll, rate_ist, rate_soll, power_set, power_eff):
self.t.append(time.monotonic() - self.t0)
self.temp_ist.append(temp_ist)
self.temp_soll.append(temp_soll)
self.rate_ist.append(rate_ist)
self.rate_soll.append(rate_soll)
self.power_set.append(power_set)
self.power_eff.append(power_eff)
self.line_temp_ist.set_data(self.t, self.temp_ist)
self.line_temp_soll.set_data(self.t, self.temp_soll)
self.line_rate_ist.set_data(self.t, self.rate_ist)
self.line_rate_soll.set_data(self.t, self.rate_soll)
self.line_power_set.set_data(self.t, self.power_set)
self.line_power_eff.set_data(self.t, self.power_eff)
for ax in (self.ax_temp, self.ax_rate, self.ax_power):
ax.relim()
ax.autoscale_view()
self.draw_idle()
class Window(QtWidgets.QMainWindow, Ui_MainWindow): class Window(QtWidgets.QMainWindow, Ui_MainWindow):
def __init__(self): def __init__(self):
QtWidgets.QMainWindow.__init__(self) QtWidgets.QMainWindow.__init__(self)
@@ -55,6 +128,25 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
self.heatrate_soll_initial_update = True self.heatrate_soll_initial_update = True
self.sud_download_path = None self.sud_download_path = None
# Latest values sampled by the plot timer - written from the
# websocket recv thread, read from the GUI thread; plain floats so
# no locking, consistent with how the rest of the GUI is wired.
self.plot_temp_ist = 0.0
self.plot_temp_soll = 0.0
self.plot_rate_ist = 0.0
self.plot_rate_soll = 0.0
self.plot_power_set = 0.0
self.plot_power_eff = 0.0
self.plot = RealtimePlot()
plot_layout = QtWidgets.QVBoxLayout(self.widget_plot)
plot_layout.setContentsMargins(0, 0, 0, 0)
plot_layout.addWidget(self.plot)
self.plot_timer = QtCore.QTimer(self)
self.plot_timer.timeout.connect(self.on_plot_timer)
self.plot_timer.start(1000)
def connect(self): def connect(self):
self.slider_pwr_initial_update = True self.slider_pwr_initial_update = True
self.slider_temp_soll_initial_update = True self.slider_temp_soll_initial_update = True
@@ -62,8 +154,15 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
self.checkbox_heater_activate_initial_update = True self.checkbox_heater_activate_initial_update = True
self.checkbox_stirrer_activate_initial_update = True self.checkbox_stirrer_activate_initial_update = True
self.heatrate_soll_initial_update = True self.heatrate_soll_initial_update = True
self.plot.reset()
self.ws_client.connect(uri=self.plainTextUri.toPlainText()) self.ws_client.connect(uri=self.plainTextUri.toPlainText())
def on_plot_timer(self):
self.plot.sample(
self.plot_temp_ist, self.plot_temp_soll,
self.plot_rate_ist, self.plot_rate_soll,
self.plot_power_set, self.plot_power_eff)
def disconnect(self): def disconnect(self):
self.ws_client.disconnect() self.ws_client.disconnect()
@@ -127,6 +226,7 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
elif "Soll" in key: elif "Soll" in key:
submsg = msg['Soll'] submsg = msg['Soll']
if 'Temp' in submsg: if 'Temp' in submsg:
self.plot_temp_soll = submsg['Temp']
self.lcdNumber_temp_soll.display(str(submsg['Temp'])) self.lcdNumber_temp_soll.display(str(submsg['Temp']))
if self.slider_temp_soll_initial_update: if self.slider_temp_soll_initial_update:
self.Slider_temp_soll.setValue(int(round(submsg['Temp']))) self.Slider_temp_soll.setValue(int(round(submsg['Temp'])))
@@ -135,6 +235,7 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
subsubmsg = submsg['Rate'] subsubmsg = submsg['Rate']
for subkey in subsubmsg: for subkey in subsubmsg:
if "Current" in subkey: if "Current" in subkey:
self.plot_rate_soll = subsubmsg['Current']
self.lcdNumber_heatrate_soll.display(str(subsubmsg['Current'])) self.lcdNumber_heatrate_soll.display(str(subsubmsg['Current']))
if "Set" in subkey: if "Set" in subkey:
if self.heatrate_soll_initial_update: if self.heatrate_soll_initial_update:
@@ -143,8 +244,10 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
if "Ist" in key: if "Ist" in key:
submsg = msg['Ist'] submsg = msg['Ist']
if 'Temp' in submsg: if 'Temp' in submsg:
self.plot_temp_ist = submsg['Temp']
self.lcdNumber_temp_ist.display(str(submsg['Temp'])) self.lcdNumber_temp_ist.display(str(submsg['Temp']))
if 'Rate' in submsg: if 'Rate' in submsg:
self.plot_rate_ist = submsg['Rate']
self.lcdNumber_heatrate_ist.display(str(submsg['Rate'])) self.lcdNumber_heatrate_ist.display(str(submsg['Rate']))
def on_heater_changed(self, msg): def on_heater_changed(self, msg):
@@ -154,7 +257,10 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
if self.checkbox_heater_activate_initial_update: if self.checkbox_heater_activate_initial_update:
self.checkbox_heater_activate.setCheckState(2 if msg['Activate'] == 1 else 0) self.checkbox_heater_activate.setCheckState(2 if msg['Activate'] == 1 else 0)
self.checkbox_heater_activate_initial_update = False self.checkbox_heater_activate_initial_update = False
elif "PowerSet" in key:
self.plot_power_set = msg['PowerSet']
elif "Power" in key: elif "Power" in key:
self.plot_power_eff = msg['Power']
self.lcdNumber_power_heater.display(msg['Power']) self.lcdNumber_power_heater.display(msg['Power'])
if self.slider_pwr_initial_update: if self.slider_pwr_initial_update:
self.Slider_pwr_soll.setValue(int(round(msg['Power']))) self.Slider_pwr_soll.setValue(int(round(msg['Power'])))
+7 -1
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@@ -249,6 +249,12 @@ class Ui_MainWindow(object):
self.horizontalTabWidget.addTab(self.tab, "") self.horizontalTabWidget.addTab(self.tab, "")
self.tab_2 = QtWidgets.QWidget() self.tab_2 = QtWidgets.QWidget()
self.tab_2.setObjectName("tab_2") self.tab_2.setObjectName("tab_2")
self.verticalLayout_plot = QtWidgets.QVBoxLayout(self.tab_2)
self.verticalLayout_plot.setObjectName("verticalLayout_plot")
self.widget_plot = QtWidgets.QWidget(self.tab_2)
self.widget_plot.setMinimumSize(QtCore.QSize(0, 400))
self.widget_plot.setObjectName("widget_plot")
self.verticalLayout_plot.addWidget(self.widget_plot)
self.horizontalTabWidget.addTab(self.tab_2, "") self.horizontalTabWidget.addTab(self.tab_2, "")
self.gridLayoutWidget = QtWidgets.QWidget(self.centralwidget) self.gridLayoutWidget = QtWidgets.QWidget(self.centralwidget)
self.gridLayoutWidget.setGeometry(QtCore.QRect(480, 70, 481, 374)) self.gridLayoutWidget.setGeometry(QtCore.QRect(480, 70, 481, 374))
@@ -1270,7 +1276,7 @@ class Ui_MainWindow(object):
self.label_11.setText(_translate("MainWindow", "Speed [%]")) self.label_11.setText(_translate("MainWindow", "Speed [%]"))
self.horizontalTabWidget.setTabText(self.horizontalTabWidget.indexOf(self.horizontalTabWidgetPage1), _translate("MainWindow", "Manual")) self.horizontalTabWidget.setTabText(self.horizontalTabWidget.indexOf(self.horizontalTabWidgetPage1), _translate("MainWindow", "Manual"))
self.horizontalTabWidget.setTabText(self.horizontalTabWidget.indexOf(self.tab), _translate("MainWindow", "Automatic")) self.horizontalTabWidget.setTabText(self.horizontalTabWidget.indexOf(self.tab), _translate("MainWindow", "Automatic"))
self.horizontalTabWidget.setTabText(self.horizontalTabWidget.indexOf(self.tab_2), _translate("MainWindow", "Seite")) self.horizontalTabWidget.setTabText(self.horizontalTabWidget.indexOf(self.tab_2), _translate("MainWindow", "Plot"))
self.label.setText(_translate("MainWindow", "Ist")) self.label.setText(_translate("MainWindow", "Ist"))
self.label_2.setText(_translate("MainWindow", "Soll")) self.label_2.setText(_translate("MainWindow", "Soll"))
self.label_3.setText(_translate("MainWindow", "Temperature [°C]")) self.label_3.setText(_translate("MainWindow", "Temperature [°C]"))
+1
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@@ -1,2 +1,3 @@
pyqt5 pyqt5
matplotlib
websockets==10.4 websockets==10.4
+5
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@@ -26,6 +26,9 @@ class HeaterTask(ATask):
def on_changed_power(self, power): def on_changed_power(self, power):
asyncio.create_task(self.send({'Power': power})) asyncio.create_task(self.send({'Power': power}))
def on_changed_power_set(self, power):
asyncio.create_task(self.send({'PowerSet': power}))
async def recv(self, data): async def recv(self, data):
for pair in data.items(): for pair in data.items():
if 'Power' in pair[0]: if 'Power' in pair[0]:
@@ -53,6 +56,7 @@ class HeaterTask(ATask):
await self.send({'Capabilities': {'Power': {'Min': 0, 'Max': self.device.get_power_max()}}}) await self.send({'Capabilities': {'Power': {'Min': 0, 'Max': self.device.get_power_max()}}})
self.device.set_on_changed('power_eff', ChangedInteger(self.on_changed_power).set) self.device.set_on_changed('power_eff', ChangedInteger(self.on_changed_power).set)
power_set_changed = ChangedInteger(self.on_changed_power_set).set
pulse_period_s = 10 pulse_period_s = 10
pulse_period_count = pulse_period_s/self.interval pulse_period_count = pulse_period_s/self.interval
@@ -61,6 +65,7 @@ class HeaterTask(ATask):
while True: while True:
# Combine power set from different sources # Combine power set from different sources
power_soll = max(self.power_soll, self.power_actor) power_soll = max(self.power_soll, self.power_actor)
power_set_changed(power_soll)
# Calculate duty cycle # Calculate duty cycle
power_low = self.get_next_smaller_power(power_soll) power_low = self.get_next_smaller_power(power_soll)