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# 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
from pydantic import confloat
from dcs.config import ConfigObject, ui_create, ConfigControlFrame
from typing import Dict
import numpy as np
from abc import abstractmethod, ABC
from .signal import Signal
from .chain import TxBasebandGenerator, RfBandGenerator, RxBasebandGenerator
from .filter import Filter
@ui_create
class IqOscillatorBase(ConfigObject, ABC):
freq: confloat(ge=0) = 100.0
phase: confloat(ge=-180.0, le=180.0, multiple_of=0.1) = 0.0
phase_imbalance: confloat(ge=-90.0, le=90.0, multiple_of=0.01) = 0.0
amplitude_imbalance: confloat(ge=-1.0, le=1.0, multiple_of=0.001) = 0.0
def calc_signal(self, t: np.ndarray) -> np.ndarray:
phase_rad = self.phase * np.pi / 180
phi = 2 * np.pi * self.freq * t
out_i = np.cos(phi + phase_rad)
out_q = (1 + self.amplitude_imbalance) * np.sin(phi + phase_rad + self.phase_imbalance)
return out_i + (1j * out_q)
@abstractmethod
def make_config_widget(self, parent: ttk.Widget) -> ConfigControlFrame:
...
def make_title(self):
return f'f={self.freq}, phi={self.phase}°'
def create_iq_oscillator_class(sample_rate: int, imbalance_wdg: bool = True):
@ui_create
class _IqOscillator(IqOscillatorBase):
freq: confloat(ge=0, lt=sample_rate/4, multiple_of=(4.0/sample_rate)) = 100.0
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='Phase:').grid(row=1, column=0)
w = self.ui_create_phase(frm)
frm.add_widget(w)
w.grid(row=1, column=1)
ttk.Label(frm, text='°').grid(row=1, column=2)
if imbalance_wdg:
ttk.Label(frm, text='Phase Imbalance:').grid(row=2, column=0)
w = self.ui_create_phase_imbalance(frm)
frm.add_widget(w)
w.grid(row=2, column=1)
ttk.Label(frm, text='°').grid(row=2, column=2)
ttk.Label(frm, text='Amplitude Imbalance:').grid(row=3, column=0)
w = self.ui_create_amplitude_imbalance(frm)
frm.add_widget(w)
w.grid(row=3, column=1)
ttk.Label(frm, text='Rel. Error').grid(row=3, column=2)
return frm
_IqOscillator.update_forward_refs(sample_rate=sample_rate)
return _IqOscillator
class IqUpMixer:
def __init__(self, tx_osc: IqOscillatorBase, noise_dBc: float, random_seed: int):
self.tx_osc = tx_osc
self.noise_dBc = noise_dBc
self.random_seed = random_seed
def _make_noise(self, t: np.ndarray) -> np.ndarray:
np.random.seed(self.random_seed)
noise_rms = np.power(10, (self.noise_dBc / 20))
noise_sigma = np.sqrt(2) * noise_rms
return np.random.normal(0, noise_sigma, len(t))
def calc_rf_signal(self, tx_baseband_signal: Signal) -> Signal:
t = tx_baseband_signal.t
baseband = tx_baseband_signal.signal
osc = self.tx_osc.calc_signal(t)
i_mixed = np.real(baseband) * np.real(osc)
q_mixed = np.imag(baseband) * np.imag(osc)
return Signal(
t=t,
signal=i_mixed - q_mixed + self._make_noise(t),
sample_rate=tx_baseband_signal.sample_rate,
)
class IqDownMixer:
def __init__(self, rx_osc: IqOscillatorBase, baseband_filter: Filter):
self.rx_osc = rx_osc
self.baseband_filter = baseband_filter
def calc_rx_baseband_signal(self, rf_signal: Signal) -> Signal:
osc = self.rx_osc.calc_signal(rf_signal.t)
i_mixed = 2 * rf_signal.signal * np.real(osc)
q_mixed = 2 * rf_signal.signal * np.imag(osc)
base = i_mixed - (1j * q_mixed)
return self.baseband_filter.filter(
Signal(
t=rf_signal.t,
signal=base,
sample_rate=rf_signal.sample_rate,
)
)
class IqTxBasebandGenerator(TxBasebandGenerator, ABC):
@abstractmethod
def generate_tx_baseband_signal(self, sample_rate: float) -> Signal:
...
def make_rf_band_generator(self, up_mix: IqUpMixer) -> IqRfBandGenerator:
return IqRfBandGenerator(self, up_mix)
class IqRfBandGenerator(RfBandGenerator):
def __init__(self, tx_baseband_generator: IqTxBasebandGenerator, up_mix: IqUpMixer):
self.tx_baseband_generator = tx_baseband_generator
self.up_mix = up_mix
self._lazy_eval_store: Dict[float, Signal] = {}
def generate_rf_signal(self, sample_rate: float) -> Signal:
if sample_rate not in self._lazy_eval_store:
tx_baseband_signal = self.tx_baseband_generator.generate_tx_baseband_signal(sample_rate)
self._lazy_eval_store[sample_rate] = self.up_mix.calc_rf_signal(tx_baseband_signal)
return self._lazy_eval_store[sample_rate]
def make_iq_down_mixer(self, down_mix: IqDownMixer) -> IqRxBasebandGenerator:
return IqRxBasebandGenerator(self, down_mix)
class IqRxBasebandGenerator(RxBasebandGenerator):
def __init__(self, rf_generator: IqRfBandGenerator, down_mix: IqDownMixer):
self.rf_generator = rf_generator
self.down_mix = down_mix
self._lazy_eval_store: Dict[float, Signal] = {}
def generate_rx_baseband_signal(self, sample_rate: float) -> Signal:
if sample_rate not in self._lazy_eval_store:
rf_signal = self.rf_generator.generate_rf_signal(sample_rate)
self._lazy_eval_store[sample_rate] = self.down_mix.calc_rx_baseband_signal(rf_signal)
return self._lazy_eval_store[sample_rate]