blob: 8563c4b049c2efe671edfafd1467864edf1605ae [file] [log] [blame]
Philipp Lec2a590b2022-04-26 21:31:47 +02001# SPDX-License-Identifier: MPL-2.0
2# Copyright (c) 2022 Philipp Le <philipp@philipple.de>.
3# This Source Code Form is subject to the terms of the Mozilla Public
4# License, v. 2.0. If a copy of the MPL was not distributed with this
5# file, You can obtain one at https://mozilla.org/MPL/2.0/.
6
7from __future__ import annotations
8
9from tkinter import ttk, Listbox, LEFT, BOTH
10from pydantic import confloat, conint
11from dcs.config import default_store, ConfigObject, ui_create, ConfigControlFrame
12import numpy as np
13from dcs.frames.base import BaseFrame, Window
14from dcs.frames.groups import Ch03Group
15from typing import List
16
17import matplotlib
18matplotlib.use('TkAgg')
19from matplotlib.figure import Figure
20from matplotlib.backends.backend_tkagg import FigureCanvasTkAgg
21
22
23@ui_create
24class Function(ConfigObject):
25 freq_mult: conint(ge=0, lt=3) = 0
26 amplitude: confloat(ge=0.0, lt=10.0, multiple_of=0.01) = 5.0
27 phase: confloat(ge=-180.0, le=180.0, multiple_of=0.1) = 0.0
28
29 offset: confloat(ge=-5.0, lt=5.0, multiple_of=0.01) = 0.0
30
31 sigma: confloat(ge=0, le=3.0, multiple_of=0.01) = 1.0
32
33 def make_config_widget(self, parent: ttk.Widget) -> ConfigControlFrame:
34 frm = ConfigControlFrame(parent, borderwidth=1, relief='raised')
35
36 ttk.Label(frm, text='Frequency:').grid(row=0, column=0)
37 self.ui_create_freq_mult(frm).grid(row=0, column=1)
38
39 ttk.Label(frm, text='Amplitude:').grid(row=1, column=0)
40 self.ui_create_amplitude(frm).grid(row=1, column=1)
41
42 ttk.Label(frm, text='Phase:').grid(row=2, column=0)
43 self.ui_create_phase(frm).grid(row=2, column=1)
44 ttk.Label(frm, text='°').grid(row=2, column=2)
45
46 ttk.Label(frm, text='Offset:').grid(row=3, column=0)
47 self.ui_create_offset(frm).grid(row=3, column=1)
48
49 ttk.Label(frm, text='Standard Deviation:').grid(row=4, column=0)
50 self.ui_create_sigma(frm).grid(row=4, column=1)
51
52 return frm
53
54 def calc_signal(self, t: np.ndarray | int = 0) -> np.ndarray:
55 phas = self.amplitude * np.exp(1j * self.phase * np.pi / 180)
56 phi = np.exp(1j * 2 * np.pi * self.freq_mult * t)
57 if type(t) == int:
58 ran_vec = np.random.normal(self.offset, self.sigma)
59 else:
60 ran_vec = np.random.normal(self.offset, self.sigma, len(t))
61 return (phas * phi) + ran_vec
62
63 def make_title(self):
64 return f'n={self.freq_mult}, {self.amplitude}, {self.phase}°, sigma={self.sigma}'
65
66
67class ConfigCh03ErgodicFrame(ConfigControlFrame):
68 wdg_seed: ttk.Spinbox
69 wdg_funcs: Listbox
70
71
72@ui_create
73class ConfigCh03Ergodic(ConfigObject):
74 _KEY = 'ch03_ergodic'
75
76 random_seed: conint(ge=0, lt=10000) = 1000
77 functions: List[Function] = [
78 Function(),
79 Function(),
80 Function(),
81 Function(),
82 Function(),
83 Function(),
84 ]
85
86 def make_config_widget(self, parent: ttk.Widget) -> ConfigControlFrame:
87 frm = ConfigCh03ErgodicFrame(parent, borderwidth=1, relief='raised')
88
89 frm1 = ttk.Frame(frm)
90 frm1.pack()
91
92 ttk.Label(frm1, text='Random Seed:').grid(row=0, column=0)
93 frm.wdg_seed = self.ui_create_random_seed(frm1)
94 frm.wdg_seed.grid(row=0, column=1)
95
96 ttk.Label(frm, text='Functions:').pack()
97 frm.wdg_funcs = self.ui_create_functions_list(frm, lambda e: e.make_title())
98 frm.wdg_funcs.pack()
99
100 return frm
101
102
103class Ch03ErgodicFrame(BaseFrame):
104 def __init__(self, *args, **kwargs):
105 super().__init__(*args, **kwargs)
106
107 self._config: ConfigCh03Ergodic = default_store().get_config(ConfigCh03Ergodic)
108
109 ctrl_frm = self._create_control()
110 ctrl_frm.pack(side=LEFT)
111
112 signal_frm = self._create_signal_canvas()
113 signal_frm.pack(expand=True, fill=BOTH)
114
115 def _create_control(self) -> ConfigCh03ErgodicFrame:
116 frm: ConfigCh03ErgodicFrame = self._config.make_config_widget(self)
117 frm.wdg_seed.listen_change(self._on_change)
118 frm.wdg_funcs.listen_change(self._on_change)
119 return frm
120
121 def _on_change(self, _, __, ___):
122 default_store().save()
123 self.draw_signal()
124
125 def _create_signal_canvas(self) -> ttk.Widget:
126 frm = ttk.Frame(self)
127
128 self._signal_fig = Figure(figsize=(12, 6), dpi=100)
129
130 self._signal_canvas = FigureCanvasTkAgg(self._signal_fig, frm)
131 self._signal_canvas.get_tk_widget().pack(expand=True, fill=BOTH)
132
133 self.draw_signal()
134
135 return frm
136
137 def draw_signal(self):
138 LENGTH = 200
139
140 np.random.seed(self._config.random_seed)
141
142 self._signal_fig.clear()
143 ax = self._signal_fig.add_subplot(1, 1, 1)
144 ax.set_xlim(-1.2, 1.2)
145 ax.set_xlabel('time')
146 ax.set_ylabel('value')
147 ax.set_title('Signal')
148
149 t = np.linspace(-1.0, 1.0, LENGTH)
150
151 x = np.zeros((len(self._config.functions), LENGTH))
152 temp_mean = np.zeros((len(self._config.functions), ))
153 for index, func in enumerate(self._config.functions):
154 x[index, :] = func.calc_signal(t)
155 temp_mean[index] = np.mean(x[index, :])
156
157 stoch_mean = np.mean(x, axis=0)
158
159 for index, func in enumerate(self._config.functions):
160 ax.plot(t, x[index, :], label=f'{func.make_title()}', linestyle='solid', linewidth=1)
161 ones = np.ones(len(t))
162 ax.plot(t, ones*temp_mean[index], label=f'Temp. Mean {func.make_title()}', linestyle='solid', linewidth=2)
163 ax.plot(t, stoch_mean, label='Stochastic Mean', linestyle='solid', linewidth=3)
164 ax.legend()
165
166 self._signal_canvas.draw()
167
168
169class Ch03ErgodicWindow(Window):
170 GROUP = Ch03Group
171 TITLE = 'Ergodic Process'
172 FRAME = Ch03ErgodicFrame
173
174
175if __name__ == '__main__':
176 Ch03ErgodicWindow.main()
177