feat: Ch05 Modulation
Change-Id: I129ed510b31f7dfed6c6213263dba5a6bf111b50
diff --git a/dcs/frames/__init__.py b/dcs/frames/__init__.py
index 1172ee0..0aa1b95 100644
--- a/dcs/frames/__init__.py
+++ b/dcs/frames/__init__.py
@@ -15,6 +15,7 @@
from .ch04_sampling import Ch04SamplingWindow
from .ch04_window import Ch04WindowWindow
from .ch04_quantization_noise import Ch04QuantizationNoiseWindow
+from .ch05_modulation import Ch05ModulationWindow
def get_windows() -> List[Type[base.Window]]:
@@ -27,6 +28,7 @@
Ch04SamplingWindow,
Ch04WindowWindow,
Ch04QuantizationNoiseWindow,
+ Ch05ModulationWindow,
]
diff --git a/dcs/frames/ch05_modulation.py b/dcs/frames/ch05_modulation.py
new file mode 100644
index 0000000..76d0fbe
--- /dev/null
+++ b/dcs/frames/ch05_modulation.py
@@ -0,0 +1,238 @@
+# SPDX-License-Identifier: MPL-2.0
+# Copyright (c) 2022 Philipp Le <philipp@philipple.de>.
+# This Source Code Form is subject to the terms of the Mozilla Public
+# License, v. 2.0. If a copy of the MPL was not distributed with this
+# file, You can obtain one at https://mozilla.org/MPL/2.0/.
+
+from __future__ import annotations
+
+from tkinter import ttk, LEFT, BOTH
+from pydantic import confloat
+from dcs.config import default_store, ConfigObject, ui_create, ConfigControlFrame
+import numpy as np
+from dcs.frames.base import BaseFrame, Window
+from dcs.frames.groups import Ch05Group
+from dcs.utils import swap_freq, abs_log_fft
+from typing import List
+from enum import Enum
+
+import matplotlib
+matplotlib.use('TkAgg')
+from matplotlib.figure import Figure
+from matplotlib.backends.backend_tkagg import FigureCanvasTkAgg
+
+
+SAMPLE_LEN = 512
+FFT_OVERSAMPLING = 64
+
+
+@ui_create
+class Function(ConfigObject):
+ freq: confloat(ge=0.0, lt=SAMPLE_LEN/4, multiple_of=(4.0/FFT_OVERSAMPLING)) = 1.0
+ amplitude: confloat(ge=0.0, lt=10.0, multiple_of=0.01) = 5.0
+ phase: confloat(ge=-180.0, le=180.0, multiple_of=0.1) = 0.0
+ offset: confloat(ge=-5.0, lt=5.0, multiple_of=0.01) = 0.0
+
+ def make_config_widget(self, parent: ttk.Widget) -> ConfigControlFrame:
+ frm = ConfigControlFrame(parent)
+
+ ttk.Label(frm, text='Frequency:').grid(row=0, column=0)
+ w = self.ui_create_freq(frm)
+ frm.add_widget(w)
+ w.grid(row=0, column=1)
+
+ ttk.Label(frm, text='Amplitude:').grid(row=1, column=0)
+ w = self.ui_create_amplitude(frm)
+ frm.add_widget(w)
+ w.grid(row=1, column=1)
+
+ ttk.Label(frm, text='Phase:').grid(row=2, column=0)
+ w = self.ui_create_phase(frm)
+ frm.add_widget(w)
+ w.grid(row=2, column=1)
+ ttk.Label(frm, text='°').grid(row=2, column=2)
+
+ ttk.Label(frm, text='Offset:').grid(row=3, column=0)
+ w = self.ui_create_offset(frm)
+ frm.add_widget(w)
+ w.grid(row=3, column=1)
+
+ return frm
+
+ def calc_signal(self, t: np.ndarray, phi_mod_deg: int | np.ndarray = 0) -> np.ndarray:
+ phasor = self.amplitude * np.exp(1j * ((self.phase * np.pi / 180) + phi_mod_deg))
+ phi = np.exp(1j * 2 * np.pi * self.freq * t)
+ return np.real(self.offset + (phasor * phi))
+
+ def make_title(self):
+ return f'n={self.freq}, {self.amplitude}, {self.phase}°'
+
+
+class ModulationMethod(str, Enum):
+ AM_DSB_TC = 'Amplitude Modulation (DSB-TC)'
+ AM_DSB_SC = 'Amplitude Modulation (DSB-SC)'
+ PM = 'Phase Modulation'
+
+
+@ui_create
+class ConfigCh05Modulation(ConfigObject):
+ _KEY = 'ch05_modulation'
+
+ baseband_funcs: List[Function] = [
+ Function(freq=1.0, amplitude=1.0),
+ Function(freq=1.5, amplitude=1.0),
+ ]
+ carrier: Function = Function(freq=10.0, amplitude=5.0)
+ method: ModulationMethod = ModulationMethod.AM_DSB_TC
+ am_mod_index: confloat(ge=0.0, lt=10.0, multiple_of=0.01) = 0.5
+ pm_mod_index: confloat(ge=0.0, lt=10.0, multiple_of=0.00001) = 0.5
+
+ def make_config_widget(self, parent: ttk.Widget) -> ConfigControlFrame:
+ frm = ConfigControlFrame(parent, borderwidth=1, relief='raised')
+
+ ttk.Label(frm, text='Functions:').pack()
+ w = self.ui_create_baseband_funcs_list(frm, lambda e: e.make_title())
+ frm.add_widget(w)
+ w.pack()
+
+ frm2 = ttk.Frame(frm, borderwidth=1, relief='raised')
+ frm2.pack()
+ ttk.Label(frm2, text='Carrier:').pack()
+ carrier_frm = self.carrier.make_config_widget(frm2)
+ for w in carrier_frm.ctrl_widgets:
+ frm.add_widget(w)
+ carrier_frm.pack()
+
+ frm1 = ttk.Frame(frm)
+ frm1.pack()
+
+ ttk.Label(frm1, text='Modulation Method:').grid(row=0, column=0)
+ w = self.ui_create_method_dropdown(frm1)
+ frm.add_widget(w)
+ w.grid(row=0, column=1)
+
+ ttk.Label(frm1, text='AM Modulation Index:').grid(row=1, column=0)
+ w = self.ui_create_am_mod_index(frm1)
+ frm.add_widget(w)
+ w.grid(row=1, column=1)
+
+ ttk.Label(frm1, text='PM Modulation Index:').grid(row=2, column=0)
+ w = self.ui_create_pm_mod_index(frm1)
+ frm.add_widget(w)
+ w.grid(row=2, column=1)
+
+ return frm
+
+ def calc_baseband_signal(self, t: np.ndarray) -> np.ndarray:
+ x = np.zeros((len(self.baseband_funcs), len(t)))
+ for index, func in enumerate(self.baseband_funcs):
+ x[index, :] = func.calc_signal(t)
+ return np.sum(x, axis=0)
+
+ def calc_carrier_signal(self, t: np.ndarray, phi_mod_deg: int | np.ndarray = 0) -> np.ndarray:
+ return self.carrier.calc_signal(t, phi_mod_deg)
+
+ def _calc_am_dsb_tc(self, t: np.ndarray) -> np.ndarray:
+ return self.calc_carrier_signal(t) * (1 + (self.am_mod_index * self.calc_baseband_signal(t)))
+
+ def _calc_am_dsb_sc(self, t: np.ndarray) -> np.ndarray:
+ return self.calc_carrier_signal(t) * self.am_mod_index * self.calc_baseband_signal(t)
+
+ def _calc_pm(self, t: np.ndarray) -> np.ndarray:
+ phi_mod_deg = 2 * np.pi * self.pm_mod_index * self.calc_baseband_signal(t)
+ return self.calc_carrier_signal(t, phi_mod_deg)
+
+ def calc_modulated(self, t: np.ndarray) -> np.ndarray:
+ if self.method == ModulationMethod.AM_DSB_TC:
+ return self._calc_am_dsb_tc(t)
+ elif self.method == ModulationMethod.AM_DSB_SC:
+ return self._calc_am_dsb_sc(t)
+ elif self.method == ModulationMethod.PM:
+ return self._calc_pm(t)
+ else:
+ raise Exception('Unknown modulation method')
+
+
+class Ch05ModulationFrame(BaseFrame):
+ def __init__(self, *args, **kwargs):
+ super().__init__(*args, **kwargs)
+
+ self._config: ConfigCh05Modulation = default_store().get_config(ConfigCh05Modulation)
+
+ ctrl_frm = self._create_control()
+ ctrl_frm.pack(side=LEFT)
+
+ signal_frm = self._create_signal_canvas()
+ signal_frm.pack(expand=True, fill=BOTH)
+
+ def _create_control(self) -> ConfigControlFrame:
+ frm = self._config.make_config_widget(self)
+ frm.widgets_on_change(self._on_change)
+ return frm
+
+ def _on_change(self, _, __, ___):
+ default_store().save()
+ self.draw_signal()
+
+ def _create_signal_canvas(self) -> ttk.Widget:
+ frm = ttk.Frame(self)
+
+ self._signal_fig = Figure(figsize=(12, 6), dpi=100)
+
+ self._signal_canvas = FigureCanvasTkAgg(self._signal_fig, frm)
+ self._signal_canvas.get_tk_widget().pack(expand=True, fill=BOTH)
+
+ self.draw_signal()
+
+ return frm
+
+ def draw_signal(self):
+ self._signal_fig.clear()
+
+ ax_inp = self._signal_fig.add_subplot(3, 1, 1)
+ ax_inp.set_xlim(0.0, 1.0)
+ ax_inp.set_xlabel('time')
+ ax_inp.set_ylabel('value')
+ ax_inp.set_title('Input Signals')
+ ax_mod = self._signal_fig.add_subplot(3, 1, 2)
+ ax_mod.set_xlim(0.0, 1.0)
+ ax_mod.set_xlabel('time')
+ ax_mod.set_ylabel('value')
+ ax_mod.set_title('Modulated Signal')
+ ax_fft = self._signal_fig.add_subplot(3, 1, 3)
+ ax_fft.set_xlim(0, int(SAMPLE_LEN/4))
+ ax_fft.set_xlabel('frequency')
+ ax_fft.set_ylabel('value (logarithmic)')
+ ax_fft.set_title('Frequency-Domain')
+
+ t = np.arange(0, SAMPLE_LEN, 1) / SAMPLE_LEN
+ t_ovs = np.arange(0, (SAMPLE_LEN * FFT_OVERSAMPLING), 1) / SAMPLE_LEN
+
+ f_ovs = swap_freq(np.fft.fftfreq(t_ovs.shape[-1], 1.0/SAMPLE_LEN))
+
+ ax_inp.plot(t, self._config.calc_baseband_signal(t), label='Baseband', linestyle='solid', color='blue', linewidth=1)
+ ax_inp.plot(t, self._config.calc_carrier_signal(t), label='Carrier', linestyle='solid', color='red', linewidth=1)
+ ax_inp.legend()
+
+ ax_mod.plot(t, self._config.calc_modulated(t), label='Modulated', linestyle='solid', color='green', linewidth=1)
+ ax_mod.legend()
+
+ ax_fft.plot(f_ovs, abs_log_fft(self._config.calc_baseband_signal(t_ovs)), label='Baseband', linestyle='solid', color='blue', linewidth=1)
+ ax_fft.plot(f_ovs, abs_log_fft(self._config.calc_carrier_signal(t_ovs)), label='Carrier', linestyle='solid', color='red', linewidth=1)
+ ax_fft.plot(f_ovs, abs_log_fft(self._config.calc_modulated(t_ovs)), label='Modulated', linestyle='solid', color='green', linewidth=1)
+ ax_fft.legend()
+
+ self._signal_fig.tight_layout()
+
+ self._signal_canvas.draw()
+
+
+class Ch05ModulationWindow(Window):
+ GROUP = Ch05Group
+ TITLE = 'Modulation'
+ FRAME = Ch05ModulationFrame
+
+
+if __name__ == '__main__':
+ Ch05ModulationWindow.main()
+
diff --git a/dcs/frames/groups.py b/dcs/frames/groups.py
index 91bdd37..b3c8d10 100644
--- a/dcs/frames/groups.py
+++ b/dcs/frames/groups.py
@@ -17,3 +17,7 @@
class Ch04Group(Group):
NAME = 'Chapter 04'
+
+
+class Ch05Group(Group):
+ NAME = 'Chapter 05'