SoC for stacks
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@ -54,6 +54,22 @@ MASTER_THRESH_OT = 1
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MASTER_THRESH_UV = 2
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MASTER_THRESH_OV = 3
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INTERNAL_RESISTANCE_CURVE_X = [2.0, 4.12]
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INTERNAL_RESISTANCE_CURVE_Y = [0.0528, 0.0294]
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SOC_OCV_X = [2.1, 2.9, 3.2, 3.3, 3.4, 3.5, 3.68, 4.0, 4.15, 4.2]
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SOC_OCV_Y = [0, 0.023, 0.06, 0.08, 0.119, 0.227, 0.541, 0.856, 0.985, 1.0]
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def estimate_soc(voltage: float) -> float:
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r_i = np.interp(
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[voltage],
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INTERNAL_RESISTANCE_CURVE_X,
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INTERNAL_RESISTANCE_CURVE_Y,
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)[0]
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i = data.current / PARALLEL_CELLS
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ocv = voltage - i * r_i
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return np.interp([ocv], SOC_OCV_X, SOC_OCV_Y)[0] * 100
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class SlaveData:
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cell_voltages: list[float]
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@ -135,63 +151,58 @@ class AccumulatorData:
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class StackGuiElement:
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title: str
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stack_id: int
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min_voltage_label: QLabel
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max_voltage_label: QLabel
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min_temp_label: QLabel
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max_temp_label: QLabel
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voltage_label: QLabel
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soc_label: QLabel
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temp_label: QLabel
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groupBox: QGroupBox
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detail_popup: QWidget
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def __init__(self, title: str, stack_id: int):
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self.title = title
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self.stack_id = stack_id
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self.min_voltage_label = QLabel()
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self.max_voltage_label = QLabel()
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self.min_temp_label = QLabel()
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self.max_temp_label = QLabel()
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self.voltage_label = QLabel()
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self.soc_label = QLabel()
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self.temp_label = QLabel()
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self.groupBox = QGroupBox()
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self.detail_popup = None
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self.__post__init__()
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def __post__init__(self):
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l1 = QLabel("Min Voltage [V]")
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l2 = QLabel("Max Voltage [V]")
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l3 = QLabel("Min Temperature [°C]")
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l4 = QLabel("Max Temperature [°C]")
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l1 = QLabel("Voltage [V]")
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l2 = QLabel("SoC [%]")
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l3 = QLabel("Temperature [°C]")
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popup_btn = QPushButton("Details")
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popup_btn.clicked.connect(self.show_popup)
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l1.setAlignment(Qt.AlignLeft)
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l2.setAlignment(Qt.AlignLeft)
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l3.setAlignment(Qt.AlignLeft)
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l4.setAlignment(Qt.AlignLeft)
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self.min_voltage_label.setAlignment(Qt.AlignLeft)
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self.max_voltage_label.setAlignment(Qt.AlignLeft)
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self.min_temp_label.setAlignment(Qt.AlignLeft)
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self.max_temp_label.setAlignment(Qt.AlignLeft)
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self.voltage_label.setAlignment(Qt.AlignLeft)
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self.soc_label.setAlignment(Qt.AlignLeft)
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self.temp_label.setAlignment(Qt.AlignLeft)
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grid = QGridLayout()
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grid.addWidget(l1, 0, 0)
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grid.addWidget(l2, 1, 0)
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grid.addWidget(l3, 2, 0)
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grid.addWidget(l4, 3, 0)
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grid.addWidget(self.min_voltage_label, 0, 1)
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grid.addWidget(self.max_voltage_label, 1, 1)
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grid.addWidget(self.min_temp_label, 2, 1)
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grid.addWidget(self.max_temp_label, 3, 1)
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grid.addWidget(self.voltage_label, 0, 1)
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grid.addWidget(self.soc_label, 1, 1)
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grid.addWidget(self.temp_label, 2, 1)
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grid.addWidget(popup_btn, 0, 2)
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grid.addWidget(popup_btn, 3, 0)
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self.groupBox.setTitle(self.title)
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self.groupBox.setLayout(grid)
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def update_data_from_slave(self, slave: SlaveData):
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self.min_voltage_label.setText(f"{min(slave.cell_voltages):.02f}")
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self.max_voltage_label.setText(f"{max(slave.cell_voltages):.02f}")
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self.min_temp_label.setText(f"{min(slave.cell_temps):.02f}")
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self.max_temp_label.setText(f"{max(slave.cell_temps):.02f}")
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min_v, max_v = min(slave.cell_voltages), max(slave.cell_voltages)
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self.voltage_label.setText(f"[{min_v:.02f}, {max_v:.02f}]")
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min_soc, max_soc = estimate_soc(min_v), estimate_soc(max_v)
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self.soc_label.setText(f"[{min_soc:02.0f}, {max_soc:02.0f}]")
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min_t, max_t = min(slave.cell_temps), max(slave.cell_temps)
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self.temp_label.setText(f"[{min_t:.02f}, {max_t:.02f}]")
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def show_popup(self):
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if self.detail_popup is None:
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@ -265,6 +276,7 @@ class StackPopup(QWidget):
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groupbox.setLayout(grid)
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layout.addWidget(groupbox)
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self.setLayout(layout)
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self.setWindowTitle(f"FT22 Charger Display - Stack {stack_id} Details")
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self.update_data()
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timer.timeout.connect(self.update_data)
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@ -470,8 +482,8 @@ class Window(QWidget):
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# Accumulator
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self.l_min_voltage.setText(f"{data.min_voltage:.02f}")
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self.l_max_voltage.setText(f"{data.max_voltage:.02f}")
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self.l_min_soc.setText(f"{data.min_soc:.01f}")
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self.l_max_soc.setText(f"{data.max_soc:.01f}")
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self.l_min_soc.setText(f"{data.min_soc:02.0f}")
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self.l_max_soc.setText(f"{data.max_soc:02.0f}")
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self.l_min_temp.setText(f"{data.min_temp:.02f}")
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self.l_max_temp.setText(f"{data.max_temp:.02f}")
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self.l_current.setText(f"{data.current:.02f}")
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@ -612,8 +624,8 @@ class Worker(QObject):
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]
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data.min_voltage = min(voltages)
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data.max_voltage = max(voltages)
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data.min_soc = self.calculate_soc(data.min_voltage)
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data.max_soc = self.calculate_soc(data.max_voltage)
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data.min_soc = estimate_soc(data.min_voltage)
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data.max_soc = estimate_soc(data.max_voltage)
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data.min_temp = min(temps)
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data.max_temp = max(temps)
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data.time_since_last_frame = time.time() - data.last_frame
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@ -678,22 +690,6 @@ class Worker(QObject):
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data.ts_state = TSState(state)
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data.panic = data.ts_state == TSState.TS_ERROR
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INTERNAL_RESISTANCE_CURVE_X = [2.0, 4.12]
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INTERNAL_RESISTANCE_CURVE_Y = [0.0528, 0.0294]
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SOC_OCV_X = [2.1, 2.9, 3.2, 3.3, 3.4, 3.5, 3.68, 4.0, 4.15, 4.2]
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SOC_OCV_Y = [0, 0.023, 0.06, 0.08, 0.119, 0.227, 0.541, 0.856, 0.985, 1.0]
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def calculate_soc(self, voltage: float):
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r_i = np.interp(
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[voltage],
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self.INTERNAL_RESISTANCE_CURVE_X,
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self.INTERNAL_RESISTANCE_CURVE_Y,
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)[0]
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# i = data.current / PARALLEL_CELLS
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i = 3 / PARALLEL_CELLS
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ocv = voltage - i * r_i
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return np.interp([ocv], self.SOC_OCV_X, self.SOC_OCV_Y)[0] * 100
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def parse_cell_temps(self, slave: int):
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temps = list(
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filter(lambda t: t > 0 and t < 60, data.slaves[slave].cell_temps[:16])
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