feat: add stationary yaw self-calibration
This commit is contained in:
@@ -0,0 +1,180 @@
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"""Numeric-only stationary detector and yaw gyro bias estimator."""
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from __future__ import annotations
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from dataclasses import dataclass
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import math
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import numpy as np
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MOVING = 0
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CANDIDATE = 1
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STATIC = 2
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TIME_EPSILON_S = 1.0e-12
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@dataclass(frozen=True)
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class StaticCorrectionConfig:
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enter_seconds: float = 2.0
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gyro_threshold_dps: float = 0.5
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acc_norm_tolerance_g: float = 0.2
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acc_stability_threshold_g: float = 0.02
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@dataclass
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class StaticCorrectionState:
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config: StaticCorrectionConfig
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mode: int
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active_yaw_bias_z_dps: float
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candidate_elapsed_s: float
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candidate_count: int
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candidate_acc_mean_g: np.ndarray
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candidate_gyro_z_mean_dps: float
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static_count: int
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static_acc_mean_g: np.ndarray
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static_gyro_z_mean_dps: float
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def initialize(
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config: StaticCorrectionConfig,
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initial_yaw_bias_z_dps: float,
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) -> StaticCorrectionState:
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_validate_config(config)
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if not math.isfinite(initial_yaw_bias_z_dps):
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raise ValueError("initial_yaw_bias_z_dps must be finite")
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return StaticCorrectionState(
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config=config,
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mode=MOVING,
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active_yaw_bias_z_dps=float(initial_yaw_bias_z_dps),
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candidate_elapsed_s=0.0,
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candidate_count=0,
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candidate_acc_mean_g=np.zeros(3),
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candidate_gyro_z_mean_dps=0.0,
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static_count=0,
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static_acc_mean_g=np.zeros(3),
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static_gyro_z_mean_dps=0.0,
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)
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def step(
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state: StaticCorrectionState,
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dt_s: float,
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acc_g: np.ndarray,
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gyro_dps: np.ndarray,
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gyro_bias_xy_dps: np.ndarray,
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) -> bool:
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if not math.isfinite(dt_s) or dt_s < 0.0:
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raise ValueError("dt_s must be finite and non-negative")
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acc = _vector(acc_g, 3, "acc_g")
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gyro = _vector(gyro_dps, 3, "gyro_dps")
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bias_xy = _vector(gyro_bias_xy_dps, 2, "gyro_bias_xy_dps")
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gyro_residual = np.array(
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[
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gyro[0] - bias_xy[0],
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gyro[1] - bias_xy[1],
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gyro[2] - state.active_yaw_bias_z_dps,
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]
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)
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absolute_gate_ok = (
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abs(float(np.linalg.norm(acc)) - 1.0) <= state.config.acc_norm_tolerance_g
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and float(np.linalg.norm(gyro_residual)) <= state.config.gyro_threshold_dps
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)
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if state.mode == STATIC:
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stable_acc = (
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float(np.linalg.norm(acc - state.static_acc_mean_g))
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<= state.config.acc_stability_threshold_g
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)
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if not absolute_gate_ok or not stable_acc:
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_reset_candidate(state)
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state.mode = MOVING
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return False
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state.static_count += 1
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state.static_acc_mean_g += (acc - state.static_acc_mean_g) / state.static_count
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state.static_gyro_z_mean_dps += (
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gyro[2] - state.static_gyro_z_mean_dps
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) / state.static_count
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state.active_yaw_bias_z_dps = state.static_gyro_z_mean_dps
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return True
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if not absolute_gate_ok:
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_reset_candidate(state)
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state.mode = MOVING
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return False
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if state.mode == MOVING:
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_start_candidate(state, acc, gyro[2])
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return False
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stable_acc = (
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float(np.linalg.norm(acc - state.candidate_acc_mean_g))
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<= state.config.acc_stability_threshold_g
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)
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if not stable_acc:
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_start_candidate(state, acc, gyro[2])
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return False
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state.candidate_count += 1
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state.candidate_elapsed_s += dt_s
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state.candidate_acc_mean_g += (
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acc - state.candidate_acc_mean_g
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) / state.candidate_count
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state.candidate_gyro_z_mean_dps += (
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gyro[2] - state.candidate_gyro_z_mean_dps
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) / state.candidate_count
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if state.candidate_elapsed_s + TIME_EPSILON_S < state.config.enter_seconds:
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return False
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state.mode = STATIC
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state.static_count = state.candidate_count
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state.static_acc_mean_g = state.candidate_acc_mean_g.copy()
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state.static_gyro_z_mean_dps = state.candidate_gyro_z_mean_dps
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state.active_yaw_bias_z_dps = state.static_gyro_z_mean_dps
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return True
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def _start_candidate(
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state: StaticCorrectionState,
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acc_g: np.ndarray,
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gyro_z_dps: float,
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) -> None:
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state.mode = CANDIDATE
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state.candidate_elapsed_s = 0.0
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state.candidate_count = 1
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state.candidate_acc_mean_g = acc_g.copy()
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state.candidate_gyro_z_mean_dps = float(gyro_z_dps)
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def _reset_candidate(state: StaticCorrectionState) -> None:
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state.candidate_elapsed_s = 0.0
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state.candidate_count = 0
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state.candidate_acc_mean_g.fill(0.0)
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state.candidate_gyro_z_mean_dps = 0.0
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def _vector(value, size: int, name: str) -> np.ndarray:
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vector = np.asarray(value, dtype=float)
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if vector.shape != (size,) or not np.all(np.isfinite(vector)):
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raise ValueError(f"{name} must be a finite {size}-element vector")
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return vector
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def _validate_config(config: StaticCorrectionConfig) -> None:
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values = (
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config.enter_seconds,
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config.gyro_threshold_dps,
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config.acc_norm_tolerance_g,
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config.acc_stability_threshold_g,
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)
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if not all(math.isfinite(value) for value in values):
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raise ValueError("static correction configuration must be finite")
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if config.enter_seconds <= 0.0:
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raise ValueError("enter_seconds must be positive")
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if config.gyro_threshold_dps <= 0.0:
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raise ValueError("gyro_threshold_dps must be positive")
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if config.acc_norm_tolerance_g <= 0.0:
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raise ValueError("acc_norm_tolerance_g must be positive")
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if config.acc_stability_threshold_g <= 0.0:
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raise ValueError("acc_stability_threshold_g must be positive")
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+145
-22
@@ -12,6 +12,7 @@ from pathlib import Path
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import numpy as np
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import numpy as np
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from scripts import imu_ekf_core as ekf
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from scripts import imu_ekf_core as ekf
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from scripts import imu_static_calibrator as static_calibrator
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REQUIRED_COLUMNS = (
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REQUIRED_COLUMNS = (
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@@ -62,10 +63,24 @@ def process_file(
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output_dir: Path,
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output_dir: Path,
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init_seconds: int = 3,
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init_seconds: int = 3,
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yaw_bias_seconds: int = 60,
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yaw_bias_seconds: int = 60,
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static_correction_seconds: float = 2.0,
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static_gyro_threshold_dps: float = 0.5,
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static_acc_norm_tolerance_g: float = 0.2,
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static_acc_stability_threshold_g: float = 0.02,
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max_points: int = 2500,
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max_points: int = 2500,
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) -> EkfFileResult:
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) -> EkfFileResult:
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init_seconds = _validate_init_seconds(init_seconds)
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init_seconds = _validate_init_seconds(init_seconds)
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yaw_bias_seconds = _validate_yaw_bias_seconds(yaw_bias_seconds)
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yaw_bias_seconds = _validate_yaw_bias_seconds(yaw_bias_seconds)
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static_correction_seconds = _validate_static_correction_seconds(static_correction_seconds)
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static_gyro_threshold_dps = _validate_positive_float(
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static_gyro_threshold_dps, "static_gyro_threshold_dps"
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)
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static_acc_norm_tolerance_g = _validate_positive_float(
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static_acc_norm_tolerance_g, "static_acc_norm_tolerance_g"
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)
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static_acc_stability_threshold_g = _validate_positive_float(
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static_acc_stability_threshold_g, "static_acc_stability_threshold_g"
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)
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input_csv = Path(input_csv)
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input_csv = Path(input_csv)
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output_dir = Path(output_dir)
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output_dir = Path(output_dir)
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output_dir.mkdir(parents=True, exist_ok=True)
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output_dir.mkdir(parents=True, exist_ok=True)
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@@ -93,6 +108,8 @@ def process_file(
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"gyro_bias_y_dps",
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"gyro_bias_y_dps",
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"gyro_bias_z_dps",
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"gyro_bias_z_dps",
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"fixed_yaw_bias_z_dps",
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"fixed_yaw_bias_z_dps",
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"active_yaw_bias_z_dps",
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"is_static",
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"acc_residual_norm",
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"acc_residual_norm",
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"dt_s",
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"dt_s",
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"acc_update_used",
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"acc_update_used",
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@@ -102,44 +119,79 @@ def process_file(
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segment_id = 0
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segment_id = 0
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state: ekf.ImuEkfState | None = None
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state: ekf.ImuEkfState | None = None
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static_state: static_calibrator.StaticCorrectionState | None = None
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yaw_bias_buffer: list[ImuRow] = []
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yaw_bias_buffer: list[ImuRow] = []
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init_buffer: list[ImuRow] = []
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init_buffer: list[ImuRow] = []
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fixed_yaw_bias_enabled = yaw_bias_seconds > 0
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fixed_yaw_bias_enabled = yaw_bias_seconds > 0
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fixed_yaw_bias_z_dps: float | None = 0.0 if yaw_bias_seconds == 0 else None
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fixed_yaw_bias_z_dps: float | None = 0.0 if yaw_bias_seconds == 0 else None
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active_yaw_bias_z_dps: float | None = fixed_yaw_bias_z_dps
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static_correction_enabled = static_correction_seconds > 0.0
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wrapper_yaw_bias_enabled = fixed_yaw_bias_enabled or static_correction_enabled
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static_config = None
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if static_correction_enabled:
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static_config = static_calibrator.StaticCorrectionConfig(
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enter_seconds=static_correction_seconds,
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gyro_threshold_dps=static_gyro_threshold_dps,
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acc_norm_tolerance_g=static_acc_norm_tolerance_g,
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acc_stability_threshold_g=static_acc_stability_threshold_g,
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)
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previous_input_time: float | None = None
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previous_input_time: float | None = None
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previous_output_time: float | None = None
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previous_output_time: float | None = None
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relative_yaw_deg = 0.0
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relative_yaw_deg = 0.0
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previous_yaw_deg: float | None = None
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previous_yaw_deg: float | None = None
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def reset_segment() -> None:
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def reset_segment() -> None:
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nonlocal state, yaw_bias_buffer, init_buffer, fixed_yaw_bias_z_dps
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nonlocal state, static_state, yaw_bias_buffer, init_buffer
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nonlocal fixed_yaw_bias_z_dps, active_yaw_bias_z_dps
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nonlocal previous_output_time, relative_yaw_deg, previous_yaw_deg
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nonlocal previous_output_time, relative_yaw_deg, previous_yaw_deg
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state = None
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state = None
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static_state = None
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yaw_bias_buffer = []
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yaw_bias_buffer = []
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init_buffer = []
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init_buffer = []
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fixed_yaw_bias_z_dps = 0.0 if yaw_bias_seconds == 0 else None
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fixed_yaw_bias_z_dps = 0.0 if yaw_bias_seconds == 0 else None
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active_yaw_bias_z_dps = fixed_yaw_bias_z_dps
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previous_output_time = None
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previous_output_time = None
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relative_yaw_deg = 0.0
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relative_yaw_deg = 0.0
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previous_yaw_deg = None
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previous_yaw_deg = None
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def write_row(row: ImuRow) -> None:
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def write_row(row: ImuRow) -> None:
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nonlocal input_rows, previous_output_time, relative_yaw_deg, previous_yaw_deg
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nonlocal input_rows, previous_output_time, relative_yaw_deg, previous_yaw_deg
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nonlocal active_yaw_bias_z_dps
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if state is None:
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if state is None:
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raise ValueError("EKF state is not initialized")
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raise ValueError("EKF state is not initialized")
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if fixed_yaw_bias_z_dps is None:
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if fixed_yaw_bias_z_dps is None:
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raise ValueError("fixed yaw bias is not initialized")
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raise ValueError("fixed yaw bias is not initialized")
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if fixed_yaw_bias_enabled:
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if active_yaw_bias_z_dps is None:
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raise ValueError("active yaw bias is not initialized")
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if wrapper_yaw_bias_enabled:
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state.gyro_bias_rad_s[2] = 0.0
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state.gyro_bias_rad_s[2] = 0.0
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dt_s = 0.0 if previous_output_time is None else row.sensor_uptime_s - previous_output_time
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dt_s = 0.0 if previous_output_time is None else row.sensor_uptime_s - previous_output_time
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previous_output_time = row.sensor_uptime_s
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previous_output_time = row.sensor_uptime_s
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used_update, residual_norm = ekf.step(state, dt_s, _acc_mps2(row), _gyro_rad_s(row))
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is_static = False
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if fixed_yaw_bias_enabled:
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if static_state is not None:
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bias_xy_dps = np.degrees(state.gyro_bias_rad_s[0:2])
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is_static = static_calibrator.step(
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static_state,
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dt_s,
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np.array(row.acc_g, dtype=float),
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np.array(row.gyro_dps, dtype=float),
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bias_xy_dps,
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)
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active_yaw_bias_z_dps = static_state.active_yaw_bias_z_dps
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corrected_row = _row_with_yaw_bias(row, active_yaw_bias_z_dps)
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used_update, residual_norm = ekf.step(
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state, dt_s, _acc_mps2(corrected_row), _gyro_rad_s(corrected_row)
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)
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if wrapper_yaw_bias_enabled:
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state.gyro_bias_rad_s[2] = 0.0
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state.gyro_bias_rad_s[2] = 0.0
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roll, pitch, yaw = ekf.quaternion_to_euler_deg(state.q)
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roll, pitch, yaw = ekf.quaternion_to_euler_deg(state.q)
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if previous_yaw_deg is None:
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if previous_yaw_deg is None:
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relative_yaw_deg = 0.0
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relative_yaw_deg = 0.0
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previous_yaw_deg = yaw
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previous_yaw_deg = yaw
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elif is_static:
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previous_yaw_deg = yaw
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else:
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else:
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relative_yaw_deg += _unwrap_delta_deg(yaw - previous_yaw_deg)
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relative_yaw_deg += _unwrap_delta_deg(yaw - previous_yaw_deg)
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previous_yaw_deg = yaw
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previous_yaw_deg = yaw
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@@ -159,6 +211,8 @@ def process_file(
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"gyro_bias_y_dps": bias_dps[1],
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"gyro_bias_y_dps": bias_dps[1],
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"gyro_bias_z_dps": bias_dps[2],
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"gyro_bias_z_dps": bias_dps[2],
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"fixed_yaw_bias_z_dps": fixed_yaw_bias_z_dps,
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"fixed_yaw_bias_z_dps": fixed_yaw_bias_z_dps,
|
||||||
|
"active_yaw_bias_z_dps": active_yaw_bias_z_dps,
|
||||||
|
"is_static": int(is_static),
|
||||||
"acc_residual_norm": residual_norm,
|
"acc_residual_norm": residual_norm,
|
||||||
"dt_s": dt_s,
|
"dt_s": dt_s,
|
||||||
"acc_update_used": int(used_update),
|
"acc_update_used": int(used_update),
|
||||||
@@ -169,37 +223,47 @@ def process_file(
|
|||||||
_append_bounded(samples, _sample_for_html(out), max_points)
|
_append_bounded(samples, _sample_for_html(out), max_points)
|
||||||
|
|
||||||
def initialize_and_write_buffer() -> None:
|
def initialize_and_write_buffer() -> None:
|
||||||
nonlocal state, init_buffer
|
nonlocal state, static_state, init_buffer
|
||||||
state = _initialize_state(init_buffer, init_seconds)
|
if active_yaw_bias_z_dps is None:
|
||||||
if fixed_yaw_bias_enabled:
|
raise ValueError("active yaw bias is not initialized")
|
||||||
|
corrected_init_rows = [
|
||||||
|
_row_with_yaw_bias(row, active_yaw_bias_z_dps) for row in init_buffer
|
||||||
|
]
|
||||||
|
state = _initialize_state(corrected_init_rows, init_seconds)
|
||||||
|
if wrapper_yaw_bias_enabled:
|
||||||
state.gyro_bias_rad_s[2] = 0.0
|
state.gyro_bias_rad_s[2] = 0.0
|
||||||
|
if static_config is not None:
|
||||||
|
static_state = static_calibrator.initialize(
|
||||||
|
static_config,
|
||||||
|
initial_yaw_bias_z_dps=active_yaw_bias_z_dps,
|
||||||
|
)
|
||||||
buffered_rows = init_buffer
|
buffered_rows = init_buffer
|
||||||
init_buffer = []
|
init_buffer = []
|
||||||
for buffered_row in buffered_rows:
|
for buffered_row in buffered_rows:
|
||||||
write_row(buffered_row)
|
write_row(buffered_row)
|
||||||
|
|
||||||
def process_row_with_fixed_yaw_bias(row: ImuRow) -> None:
|
def process_row_with_yaw_bias(row: ImuRow) -> None:
|
||||||
if fixed_yaw_bias_z_dps is None:
|
if active_yaw_bias_z_dps is None:
|
||||||
raise ValueError("fixed yaw bias is not initialized")
|
raise ValueError("active yaw bias is not initialized")
|
||||||
corrected_row = _row_with_fixed_yaw_bias(row, fixed_yaw_bias_z_dps)
|
|
||||||
if state is None:
|
if state is None:
|
||||||
init_buffer.append(corrected_row)
|
init_buffer.append(row)
|
||||||
if init_seconds == 0 or corrected_row.sensor_uptime_s - init_buffer[0].sensor_uptime_s >= init_seconds:
|
if init_seconds == 0 or row.sensor_uptime_s - init_buffer[0].sensor_uptime_s >= init_seconds:
|
||||||
initialize_and_write_buffer()
|
initialize_and_write_buffer()
|
||||||
else:
|
else:
|
||||||
write_row(corrected_row)
|
write_row(row)
|
||||||
|
|
||||||
def initialize_fixed_yaw_bias_from_buffer() -> None:
|
def initialize_fixed_yaw_bias_from_buffer() -> None:
|
||||||
nonlocal yaw_bias_buffer, fixed_yaw_bias_z_dps
|
nonlocal yaw_bias_buffer, fixed_yaw_bias_z_dps, active_yaw_bias_z_dps
|
||||||
if fixed_yaw_bias_z_dps is not None:
|
if fixed_yaw_bias_z_dps is not None:
|
||||||
return
|
return
|
||||||
if not yaw_bias_buffer:
|
if not yaw_bias_buffer:
|
||||||
raise ValueError("at least one IMU row is required for fixed yaw bias initialization")
|
raise ValueError("at least one IMU row is required for fixed yaw bias initialization")
|
||||||
fixed_yaw_bias_z_dps = _fixed_yaw_bias_z_dps(yaw_bias_buffer)
|
fixed_yaw_bias_z_dps = _fixed_yaw_bias_z_dps(yaw_bias_buffer)
|
||||||
|
active_yaw_bias_z_dps = fixed_yaw_bias_z_dps
|
||||||
buffered_rows = yaw_bias_buffer
|
buffered_rows = yaw_bias_buffer
|
||||||
yaw_bias_buffer = []
|
yaw_bias_buffer = []
|
||||||
for buffered_row in buffered_rows:
|
for buffered_row in buffered_rows:
|
||||||
process_row_with_fixed_yaw_bias(buffered_row)
|
process_row_with_yaw_bias(buffered_row)
|
||||||
|
|
||||||
def flush_segment() -> None:
|
def flush_segment() -> None:
|
||||||
if fixed_yaw_bias_z_dps is None and yaw_bias_buffer:
|
if fixed_yaw_bias_z_dps is None and yaw_bias_buffer:
|
||||||
@@ -223,11 +287,11 @@ def process_file(
|
|||||||
if fixed_yaw_bias_z_dps is None:
|
if fixed_yaw_bias_z_dps is None:
|
||||||
if yaw_bias_buffer and row.sensor_uptime_s - yaw_bias_buffer[0].sensor_uptime_s >= yaw_bias_seconds:
|
if yaw_bias_buffer and row.sensor_uptime_s - yaw_bias_buffer[0].sensor_uptime_s >= yaw_bias_seconds:
|
||||||
initialize_fixed_yaw_bias_from_buffer()
|
initialize_fixed_yaw_bias_from_buffer()
|
||||||
process_row_with_fixed_yaw_bias(row)
|
process_row_with_yaw_bias(row)
|
||||||
else:
|
else:
|
||||||
yaw_bias_buffer.append(row)
|
yaw_bias_buffer.append(row)
|
||||||
else:
|
else:
|
||||||
process_row_with_fixed_yaw_bias(row)
|
process_row_with_yaw_bias(row)
|
||||||
|
|
||||||
previous_input_time = row.sensor_uptime_s
|
previous_input_time = row.sensor_uptime_s
|
||||||
|
|
||||||
@@ -291,6 +355,16 @@ def write_html_report(results: list[EkfFileResult], html_path: Path, max_points:
|
|||||||
const labels = {{ roll_deg: 'roll deg', pitch_deg: 'pitch deg', relative_yaw_deg: 'relative yaw deg' }};
|
const labels = {{ roll_deg: 'roll deg', pitch_deg: 'pitch deg', relative_yaw_deg: 'relative yaw deg' }};
|
||||||
const redraws = [];
|
const redraws = [];
|
||||||
|
|
||||||
|
function drawStaticRanges(ctx, rows, xmin, xspan, left, top, plotWidth, plotHeight) {{
|
||||||
|
ctx.fillStyle = 'rgba(20, 108, 46, 0.10)';
|
||||||
|
for (let i = 0; i + 1 < rows.length; i += 1) {{
|
||||||
|
if (rows[i].is_static < 0.5) continue;
|
||||||
|
const x0 = left + ((rows[i].sensor_uptime_s - xmin) / xspan) * plotWidth;
|
||||||
|
const x1 = left + ((rows[i + 1].sensor_uptime_s - xmin) / xspan) * plotWidth;
|
||||||
|
ctx.fillRect(x0, top, Math.max(1, x1 - x0), plotHeight);
|
||||||
|
}}
|
||||||
|
}}
|
||||||
|
|
||||||
function drawChart(canvas, rows, fields) {{
|
function drawChart(canvas, rows, fields) {{
|
||||||
const ctx = canvas.getContext('2d');
|
const ctx = canvas.getContext('2d');
|
||||||
const dpr = window.devicePixelRatio || 1;
|
const dpr = window.devicePixelRatio || 1;
|
||||||
@@ -323,6 +397,8 @@ def write_html_report(results: list[EkfFileResult], html_path: Path, max_points:
|
|||||||
const gap = 18;
|
const gap = 18;
|
||||||
const plotWidth = Math.max(1, width - left - right);
|
const plotWidth = Math.max(1, width - left - right);
|
||||||
const laneHeight = Math.max(40, (height - top - bottom - gap * (fields.length - 1)) / fields.length);
|
const laneHeight = Math.max(40, (height - top - bottom - gap * (fields.length - 1)) / fields.length);
|
||||||
|
const plotHeight = laneHeight * fields.length + gap * (fields.length - 1);
|
||||||
|
drawStaticRanges(ctx, finiteRows, xmin, xspan, left, top, plotWidth, plotHeight);
|
||||||
|
|
||||||
fields.forEach((field, fieldIndex) => {{
|
fields.forEach((field, fieldIndex) => {{
|
||||||
const laneTop = top + fieldIndex * (laneHeight + gap);
|
const laneTop = top + fieldIndex * (laneHeight + gap);
|
||||||
@@ -384,7 +460,10 @@ def write_html_report(results: list[EkfFileResult], html_path: Path, max_points:
|
|||||||
const fixedYawBias = lastSample && Number.isFinite(lastSample.fixed_yaw_bias_z_dps)
|
const fixedYawBias = lastSample && Number.isFinite(lastSample.fixed_yaw_bias_z_dps)
|
||||||
? ` | fixed yaw bias z: ${{lastSample.fixed_yaw_bias_z_dps.toFixed(5)}} dps`
|
? ` | fixed yaw bias z: ${{lastSample.fixed_yaw_bias_z_dps.toFixed(5)}} dps`
|
||||||
: '';
|
: '';
|
||||||
summary.textContent = `Rows: ${{file.input_rows}} | Output: ${{file.output_csv}}${{fixedYawBias}}`;
|
const activeYawBias = lastSample && Number.isFinite(lastSample.active_yaw_bias_z_dps)
|
||||||
|
? ` | active yaw bias z: ${{lastSample.active_yaw_bias_z_dps.toFixed(5)}} dps`
|
||||||
|
: '';
|
||||||
|
summary.textContent = `Rows: ${{file.input_rows}} | Output: ${{file.output_csv}}${{fixedYawBias}}${{activeYawBias}}`;
|
||||||
section.appendChild(summary);
|
section.appendChild(summary);
|
||||||
|
|
||||||
const table = document.createElement('table');
|
const table = document.createElement('table');
|
||||||
@@ -406,7 +485,7 @@ def write_html_report(results: list[EkfFileResult], html_path: Path, max_points:
|
|||||||
|
|
||||||
const legend = document.createElement('div');
|
const legend = document.createElement('div');
|
||||||
legend.className = 'meta';
|
legend.className = 'meta';
|
||||||
legend.textContent = 'roll red, pitch green, relative yaw blue';
|
legend.textContent = 'roll red, pitch green, relative yaw blue, static intervals shaded';
|
||||||
section.appendChild(legend);
|
section.appendChild(legend);
|
||||||
|
|
||||||
app.appendChild(section);
|
app.appendChild(section);
|
||||||
@@ -429,6 +508,10 @@ def main(argv: list[str] | None = None) -> int:
|
|||||||
parser.add_argument("--output-dir", type=Path, default=Path("output") / "ekf")
|
parser.add_argument("--output-dir", type=Path, default=Path("output") / "ekf")
|
||||||
parser.add_argument("--init-seconds", type=_parse_init_seconds, default=3)
|
parser.add_argument("--init-seconds", type=_parse_init_seconds, default=3)
|
||||||
parser.add_argument("--yaw-bias-seconds", type=_parse_yaw_bias_seconds, default=60)
|
parser.add_argument("--yaw-bias-seconds", type=_parse_yaw_bias_seconds, default=60)
|
||||||
|
parser.add_argument("--static-correction-seconds", type=_parse_static_correction_seconds, default=2.0)
|
||||||
|
parser.add_argument("--static-gyro-threshold-dps", type=_parse_positive_float, default=0.5)
|
||||||
|
parser.add_argument("--static-acc-norm-tolerance-g", type=_parse_positive_float, default=0.2)
|
||||||
|
parser.add_argument("--static-acc-stability-threshold-g", type=_parse_positive_float, default=0.02)
|
||||||
parser.add_argument("--max-points", type=int, default=2500)
|
parser.add_argument("--max-points", type=int, default=2500)
|
||||||
args = parser.parse_args(argv)
|
args = parser.parse_args(argv)
|
||||||
|
|
||||||
@@ -442,6 +525,10 @@ def main(argv: list[str] | None = None) -> int:
|
|||||||
args.output_dir,
|
args.output_dir,
|
||||||
init_seconds=args.init_seconds,
|
init_seconds=args.init_seconds,
|
||||||
yaw_bias_seconds=args.yaw_bias_seconds,
|
yaw_bias_seconds=args.yaw_bias_seconds,
|
||||||
|
static_correction_seconds=args.static_correction_seconds,
|
||||||
|
static_gyro_threshold_dps=args.static_gyro_threshold_dps,
|
||||||
|
static_acc_norm_tolerance_g=args.static_acc_norm_tolerance_g,
|
||||||
|
static_acc_stability_threshold_g=args.static_acc_stability_threshold_g,
|
||||||
max_points=args.max_points,
|
max_points=args.max_points,
|
||||||
)
|
)
|
||||||
for path in csv_files
|
for path in csv_files
|
||||||
@@ -527,6 +614,24 @@ def _validate_yaw_bias_seconds(value) -> int:
|
|||||||
return value
|
return value
|
||||||
|
|
||||||
|
|
||||||
|
def _validate_static_correction_seconds(value) -> float:
|
||||||
|
if isinstance(value, bool) or not isinstance(value, (int, float)):
|
||||||
|
raise ValueError("static_correction_seconds must be a 0-10 second number")
|
||||||
|
value = float(value)
|
||||||
|
if not math.isfinite(value) or not 0.0 <= value <= 10.0:
|
||||||
|
raise ValueError("static_correction_seconds must be a 0-10 second number")
|
||||||
|
return value
|
||||||
|
|
||||||
|
|
||||||
|
def _validate_positive_float(value, name: str) -> float:
|
||||||
|
if isinstance(value, bool) or not isinstance(value, (int, float)):
|
||||||
|
raise ValueError(f"{name} must be a finite positive number")
|
||||||
|
value = float(value)
|
||||||
|
if not math.isfinite(value) or value <= 0.0:
|
||||||
|
raise ValueError(f"{name} must be a finite positive number")
|
||||||
|
return value
|
||||||
|
|
||||||
|
|
||||||
def _parse_init_seconds(value: str) -> int:
|
def _parse_init_seconds(value: str) -> int:
|
||||||
try:
|
try:
|
||||||
parsed = int(value)
|
parsed = int(value)
|
||||||
@@ -553,6 +658,22 @@ def _parse_yaw_bias_seconds(value: str) -> int:
|
|||||||
raise argparse.ArgumentTypeError(str(exc)) from exc
|
raise argparse.ArgumentTypeError(str(exc)) from exc
|
||||||
|
|
||||||
|
|
||||||
|
def _parse_static_correction_seconds(value: str) -> float:
|
||||||
|
try:
|
||||||
|
parsed = float(value)
|
||||||
|
return _validate_static_correction_seconds(parsed)
|
||||||
|
except ValueError as exc:
|
||||||
|
raise argparse.ArgumentTypeError(str(exc)) from exc
|
||||||
|
|
||||||
|
|
||||||
|
def _parse_positive_float(value: str) -> float:
|
||||||
|
try:
|
||||||
|
parsed = float(value)
|
||||||
|
return _validate_positive_float(parsed, "value")
|
||||||
|
except ValueError as exc:
|
||||||
|
raise argparse.ArgumentTypeError(str(exc)) from exc
|
||||||
|
|
||||||
|
|
||||||
def _initialize_state(rows: list[ImuRow], init_seconds: int) -> ekf.ImuEkfState:
|
def _initialize_state(rows: list[ImuRow], init_seconds: int) -> ekf.ImuEkfState:
|
||||||
if not rows:
|
if not rows:
|
||||||
raise ValueError("at least one IMU row is required for initialization")
|
raise ValueError("at least one IMU row is required for initialization")
|
||||||
@@ -575,12 +696,12 @@ def _fixed_yaw_bias_z_dps(rows: list[ImuRow]) -> float:
|
|||||||
return sum(row.gyro_dps[2] for row in rows) / len(rows)
|
return sum(row.gyro_dps[2] for row in rows) / len(rows)
|
||||||
|
|
||||||
|
|
||||||
def _row_with_fixed_yaw_bias(row: ImuRow, fixed_yaw_bias_z_dps: float) -> ImuRow:
|
def _row_with_yaw_bias(row: ImuRow, yaw_bias_z_dps: float) -> ImuRow:
|
||||||
return ImuRow(
|
return ImuRow(
|
||||||
sensor_uptime_s=row.sensor_uptime_s,
|
sensor_uptime_s=row.sensor_uptime_s,
|
||||||
temp_c=row.temp_c,
|
temp_c=row.temp_c,
|
||||||
acc_g=row.acc_g,
|
acc_g=row.acc_g,
|
||||||
gyro_dps=(row.gyro_dps[0], row.gyro_dps[1], row.gyro_dps[2] - fixed_yaw_bias_z_dps),
|
gyro_dps=(row.gyro_dps[0], row.gyro_dps[1], row.gyro_dps[2] - yaw_bias_z_dps),
|
||||||
)
|
)
|
||||||
|
|
||||||
|
|
||||||
@@ -594,6 +715,8 @@ def _sample_for_html(row: dict[str, float]) -> dict[str, float]:
|
|||||||
"gyro_bias_y_dps",
|
"gyro_bias_y_dps",
|
||||||
"gyro_bias_z_dps",
|
"gyro_bias_z_dps",
|
||||||
"fixed_yaw_bias_z_dps",
|
"fixed_yaw_bias_z_dps",
|
||||||
|
"active_yaw_bias_z_dps",
|
||||||
|
"is_static",
|
||||||
"acc_residual_norm",
|
"acc_residual_norm",
|
||||||
)
|
)
|
||||||
sample = {key: float(row[key]) for key in keys}
|
sample = {key: float(row[key]) for key in keys}
|
||||||
|
|||||||
@@ -0,0 +1,113 @@
|
|||||||
|
import unittest
|
||||||
|
|
||||||
|
import numpy as np
|
||||||
|
|
||||||
|
from scripts import imu_static_calibrator as calibrator
|
||||||
|
|
||||||
|
|
||||||
|
class ImuStaticCalibratorTests(unittest.TestCase):
|
||||||
|
def _state(self, enter_seconds=0.01):
|
||||||
|
config = calibrator.StaticCorrectionConfig(enter_seconds=enter_seconds)
|
||||||
|
return calibrator.initialize(config, initial_yaw_bias_z_dps=0.0)
|
||||||
|
|
||||||
|
def test_stationary_samples_enter_static_and_estimate_z_bias(self):
|
||||||
|
state = self._state()
|
||||||
|
|
||||||
|
for _ in range(7):
|
||||||
|
is_static = calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.0, 0.0, 1.1]),
|
||||||
|
np.array([0.0, 0.0, 0.12]),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
|
||||||
|
self.assertTrue(is_static)
|
||||||
|
self.assertAlmostEqual(state.active_yaw_bias_z_dps, 0.12, places=9)
|
||||||
|
|
||||||
|
def test_rotation_above_threshold_never_enters_static(self):
|
||||||
|
state = self._state()
|
||||||
|
|
||||||
|
for _ in range(20):
|
||||||
|
is_static = calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
|
||||||
|
self.assertFalse(is_static)
|
||||||
|
self.assertEqual(state.mode, calibrator.MOVING)
|
||||||
|
|
||||||
|
def test_acceleration_change_restarts_candidate_window(self):
|
||||||
|
state = self._state()
|
||||||
|
for _ in range(4):
|
||||||
|
calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.zeros(3),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
|
||||||
|
calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.05, 0.0, 1.0]),
|
||||||
|
np.zeros(3),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
|
||||||
|
self.assertEqual(state.mode, calibrator.CANDIDATE)
|
||||||
|
self.assertEqual(state.candidate_count, 1)
|
||||||
|
self.assertEqual(state.candidate_elapsed_s, 0.0)
|
||||||
|
|
||||||
|
def test_static_period_updates_running_z_bias_mean(self):
|
||||||
|
state = self._state(enter_seconds=0.004)
|
||||||
|
for value in [0.1, 0.1, 0.1]:
|
||||||
|
calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.array([0.0, 0.0, value]),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
|
||||||
|
calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.array([0.0, 0.0, 0.2]),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
|
||||||
|
self.assertAlmostEqual(state.active_yaw_bias_z_dps, 0.125, places=9)
|
||||||
|
|
||||||
|
def test_motion_exits_static_and_keeps_last_bias(self):
|
||||||
|
state = self._state(enter_seconds=0.004)
|
||||||
|
for _ in range(3):
|
||||||
|
calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.array([0.0, 0.0, 0.1]),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
bias_before_motion = state.active_yaw_bias_z_dps
|
||||||
|
|
||||||
|
is_static = calibrator.step(
|
||||||
|
state,
|
||||||
|
0.002,
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.array([0.0, 0.0, 1.0]),
|
||||||
|
np.zeros(2),
|
||||||
|
)
|
||||||
|
|
||||||
|
self.assertFalse(is_static)
|
||||||
|
self.assertEqual(state.mode, calibrator.MOVING)
|
||||||
|
self.assertEqual(state.active_yaw_bias_z_dps, bias_before_motion)
|
||||||
|
|
||||||
|
|
||||||
|
if __name__ == "__main__":
|
||||||
|
unittest.main()
|
||||||
+126
-3
@@ -72,8 +72,61 @@ class RunImuEkfTests(unittest.TestCase):
|
|||||||
self.assertIn("segment_id", rows[0])
|
self.assertIn("segment_id", rows[0])
|
||||||
self.assertIn("gyro_bias_z_dps", rows[0])
|
self.assertIn("gyro_bias_z_dps", rows[0])
|
||||||
self.assertIn("fixed_yaw_bias_z_dps", rows[0])
|
self.assertIn("fixed_yaw_bias_z_dps", rows[0])
|
||||||
|
self.assertIn("active_yaw_bias_z_dps", rows[0])
|
||||||
|
self.assertIn("is_static", rows[0])
|
||||||
self.assertEqual(result.input_rows, 20)
|
self.assertEqual(result.input_rows, 20)
|
||||||
|
|
||||||
|
def test_static_correction_updates_active_bias_and_freezes_relative_yaw(self):
|
||||||
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
|
output_dir = Path(tmp) / "out"
|
||||||
|
self._write_sample_csv(
|
||||||
|
input_path,
|
||||||
|
[(index * 0.002, 0.12, 1.0) for index in range(20)],
|
||||||
|
)
|
||||||
|
|
||||||
|
result = run_imu_ekf.process_file(
|
||||||
|
input_path,
|
||||||
|
output_dir,
|
||||||
|
init_seconds=0,
|
||||||
|
yaw_bias_seconds=0,
|
||||||
|
static_correction_seconds=0.01,
|
||||||
|
)
|
||||||
|
|
||||||
|
with result.output_csv.open("r", encoding="utf-8", newline="") as handle:
|
||||||
|
rows = list(csv.DictReader(handle))
|
||||||
|
|
||||||
|
first_static_index = next(index for index, row in enumerate(rows) if row["is_static"] == "1")
|
||||||
|
frozen_yaw = float(rows[first_static_index]["relative_yaw_deg"])
|
||||||
|
self.assertTrue(all(row["is_static"] == "1" for row in rows[first_static_index:]))
|
||||||
|
self.assertTrue(
|
||||||
|
all(abs(float(row["relative_yaw_deg"]) - frozen_yaw) < 1e-9 for row in rows[first_static_index:])
|
||||||
|
)
|
||||||
|
self.assertAlmostEqual(float(rows[-1]["active_yaw_bias_z_dps"]), 0.12, delta=1e-9)
|
||||||
|
|
||||||
|
def test_rotation_above_static_threshold_does_not_freeze_yaw(self):
|
||||||
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
|
output_dir = Path(tmp) / "out"
|
||||||
|
self._write_sample_csv(
|
||||||
|
input_path,
|
||||||
|
[(index * 0.002, 1.0, 1.0) for index in range(100)],
|
||||||
|
)
|
||||||
|
|
||||||
|
result = run_imu_ekf.process_file(
|
||||||
|
input_path,
|
||||||
|
output_dir,
|
||||||
|
init_seconds=0,
|
||||||
|
yaw_bias_seconds=0,
|
||||||
|
static_correction_seconds=0.01,
|
||||||
|
)
|
||||||
|
|
||||||
|
with result.output_csv.open("r", encoding="utf-8", newline="") as handle:
|
||||||
|
rows = list(csv.DictReader(handle))
|
||||||
|
|
||||||
|
self.assertTrue(all(row["is_static"] == "0" for row in rows))
|
||||||
|
self.assertGreater(float(rows[-1]["relative_yaw_deg"]), 0.1)
|
||||||
|
|
||||||
def test_default_fixed_yaw_bias_keeps_constant_z_bias_from_drifting(self):
|
def test_default_fixed_yaw_bias_keeps_constant_z_bias_from_drifting(self):
|
||||||
with tempfile.TemporaryDirectory() as tmp:
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
input_path = Path(tmp) / "imu_sample.csv"
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
@@ -236,13 +289,19 @@ class RunImuEkfTests(unittest.TestCase):
|
|||||||
self.assertEqual(float(rows[0]["gyro_bias_z_dps"]), 0.0)
|
self.assertEqual(float(rows[0]["gyro_bias_z_dps"]), 0.0)
|
||||||
self.assertEqual(float(rows[1]["gyro_bias_z_dps"]), 0.0)
|
self.assertEqual(float(rows[1]["gyro_bias_z_dps"]), 0.0)
|
||||||
|
|
||||||
def test_yaw_bias_seconds_zero_preserves_core_z_bias_initialization(self):
|
def test_disabling_all_wrapper_yaw_bias_preserves_core_z_bias(self):
|
||||||
with tempfile.TemporaryDirectory() as tmp:
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
input_path = Path(tmp) / "imu_sample.csv"
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
output_dir = Path(tmp) / "out"
|
output_dir = Path(tmp) / "out"
|
||||||
self._write_sample_csv(input_path, [(0.0, 7.5, 1.0), (0.5, 7.5, 1.0), (1.0, 7.5, 1.0)])
|
self._write_sample_csv(input_path, [(0.0, 7.5, 1.0), (0.5, 7.5, 1.0), (1.0, 7.5, 1.0)])
|
||||||
|
|
||||||
result = run_imu_ekf.process_file(input_path, output_dir, init_seconds=1, yaw_bias_seconds=0)
|
result = run_imu_ekf.process_file(
|
||||||
|
input_path,
|
||||||
|
output_dir,
|
||||||
|
init_seconds=1,
|
||||||
|
yaw_bias_seconds=0,
|
||||||
|
static_correction_seconds=0,
|
||||||
|
)
|
||||||
|
|
||||||
with result.output_csv.open("r", encoding="utf-8", newline="") as handle:
|
with result.output_csv.open("r", encoding="utf-8", newline="") as handle:
|
||||||
rows = list(csv.DictReader(handle))
|
rows = list(csv.DictReader(handle))
|
||||||
@@ -279,6 +338,28 @@ class RunImuEkfTests(unittest.TestCase):
|
|||||||
with self.assertRaises(SystemExit):
|
with self.assertRaises(SystemExit):
|
||||||
run_imu_ekf.main(["--yaw-bias-seconds", "1.5"])
|
run_imu_ekf.main(["--yaw-bias-seconds", "1.5"])
|
||||||
|
|
||||||
|
def test_static_correction_configuration_rejects_invalid_values(self):
|
||||||
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
|
self._write_sample_csv(input_path, [(0.0, 0.0, 1.0)])
|
||||||
|
|
||||||
|
with self.assertRaisesRegex(ValueError, "static_correction_seconds.*0.*10"):
|
||||||
|
run_imu_ekf.process_file(
|
||||||
|
input_path,
|
||||||
|
Path(tmp) / "out",
|
||||||
|
static_correction_seconds=10.1,
|
||||||
|
)
|
||||||
|
|
||||||
|
with self.assertRaisesRegex(ValueError, "static_gyro_threshold_dps.*positive"):
|
||||||
|
run_imu_ekf.process_file(
|
||||||
|
input_path,
|
||||||
|
Path(tmp) / "out",
|
||||||
|
static_gyro_threshold_dps=0.0,
|
||||||
|
)
|
||||||
|
|
||||||
|
with self.assertRaises(SystemExit):
|
||||||
|
run_imu_ekf.main(["--static-correction-seconds", "-1"])
|
||||||
|
|
||||||
def test_relative_yaw_is_unwrapped_in_csv_and_html_samples(self):
|
def test_relative_yaw_is_unwrapped_in_csv_and_html_samples(self):
|
||||||
with tempfile.TemporaryDirectory() as tmp:
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
input_path = Path(tmp) / "imu_sample.csv"
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
@@ -312,6 +393,40 @@ class RunImuEkfTests(unittest.TestCase):
|
|||||||
self.assertEqual([row["segment_id"] for row in rows], ["0", "0", "1", "1"])
|
self.assertEqual([row["segment_id"] for row in rows], ["0", "0", "1", "1"])
|
||||||
self.assertEqual(float(rows[2]["dt_s"]), 0.0)
|
self.assertEqual(float(rows[2]["dt_s"]), 0.0)
|
||||||
|
|
||||||
|
def test_static_correction_restarts_with_device_segment(self):
|
||||||
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
|
output_dir = Path(tmp) / "out"
|
||||||
|
self._write_sample_csv(
|
||||||
|
input_path,
|
||||||
|
[
|
||||||
|
(9.996, 0.1, 1.0),
|
||||||
|
(9.998, 0.1, 1.0),
|
||||||
|
(10.0, 0.1, 1.0),
|
||||||
|
(0.002, 0.2, 1.0),
|
||||||
|
(0.004, 0.2, 1.0),
|
||||||
|
(0.006, 0.2, 1.0),
|
||||||
|
],
|
||||||
|
)
|
||||||
|
|
||||||
|
result = run_imu_ekf.process_file(
|
||||||
|
input_path,
|
||||||
|
output_dir,
|
||||||
|
init_seconds=0,
|
||||||
|
yaw_bias_seconds=0,
|
||||||
|
static_correction_seconds=0.004,
|
||||||
|
)
|
||||||
|
|
||||||
|
with result.output_csv.open("r", encoding="utf-8", newline="") as handle:
|
||||||
|
rows = list(csv.DictReader(handle))
|
||||||
|
|
||||||
|
segment0 = [row for row in rows if row["segment_id"] == "0"]
|
||||||
|
segment1 = [row for row in rows if row["segment_id"] == "1"]
|
||||||
|
self.assertEqual([row["is_static"] for row in segment0], ["0", "0", "1"])
|
||||||
|
self.assertEqual([row["is_static"] for row in segment1], ["0", "0", "1"])
|
||||||
|
self.assertAlmostEqual(float(segment0[-1]["active_yaw_bias_z_dps"]), 0.1, delta=1e-9)
|
||||||
|
self.assertAlmostEqual(float(segment1[-1]["active_yaw_bias_z_dps"]), 0.2, delta=1e-9)
|
||||||
|
|
||||||
def test_process_file_flushes_short_uninitialized_segment_before_restart(self):
|
def test_process_file_flushes_short_uninitialized_segment_before_restart(self):
|
||||||
with tempfile.TemporaryDirectory() as tmp:
|
with tempfile.TemporaryDirectory() as tmp:
|
||||||
input_path = Path(tmp) / "imu_sample.csv"
|
input_path = Path(tmp) / "imu_sample.csv"
|
||||||
@@ -442,6 +557,8 @@ class RunImuEkfTests(unittest.TestCase):
|
|||||||
"gyro_bias_y_dps": 0.0,
|
"gyro_bias_y_dps": 0.0,
|
||||||
"gyro_bias_z_dps": 0.0,
|
"gyro_bias_z_dps": 0.0,
|
||||||
"fixed_yaw_bias_z_dps": 0.0,
|
"fixed_yaw_bias_z_dps": 0.0,
|
||||||
|
"active_yaw_bias_z_dps": 0.0,
|
||||||
|
"is_static": 1.0,
|
||||||
"acc_residual_norm": 0.0,
|
"acc_residual_norm": 0.0,
|
||||||
}
|
}
|
||||||
],
|
],
|
||||||
@@ -462,8 +579,10 @@ class RunImuEkfTests(unittest.TestCase):
|
|||||||
self.assertIn("canvas.className = 'chart'", html)
|
self.assertIn("canvas.className = 'chart'", html)
|
||||||
self.assertIn("requestAnimationFrame", html)
|
self.assertIn("requestAnimationFrame", html)
|
||||||
self.assertIn("laneHeight", html)
|
self.assertIn("laneHeight", html)
|
||||||
|
self.assertIn("drawStaticRanges", html)
|
||||||
|
self.assertIn("active yaw bias z", html)
|
||||||
|
|
||||||
def test_html_sample_includes_fixed_yaw_bias(self):
|
def test_html_sample_includes_yaw_bias_and_static_state(self):
|
||||||
sample = run_imu_ekf._sample_for_html(
|
sample = run_imu_ekf._sample_for_html(
|
||||||
{
|
{
|
||||||
"sensor_uptime_s": 0.0,
|
"sensor_uptime_s": 0.0,
|
||||||
@@ -474,11 +593,15 @@ class RunImuEkfTests(unittest.TestCase):
|
|||||||
"gyro_bias_y_dps": 0.0,
|
"gyro_bias_y_dps": 0.0,
|
||||||
"gyro_bias_z_dps": 0.0,
|
"gyro_bias_z_dps": 0.0,
|
||||||
"fixed_yaw_bias_z_dps": 1.25,
|
"fixed_yaw_bias_z_dps": 1.25,
|
||||||
|
"active_yaw_bias_z_dps": 1.5,
|
||||||
|
"is_static": 1,
|
||||||
"acc_residual_norm": 0.0,
|
"acc_residual_norm": 0.0,
|
||||||
}
|
}
|
||||||
)
|
)
|
||||||
|
|
||||||
self.assertEqual(sample["fixed_yaw_bias_z_dps"], 1.25)
|
self.assertEqual(sample["fixed_yaw_bias_z_dps"], 1.25)
|
||||||
|
self.assertEqual(sample["active_yaw_bias_z_dps"], 1.5)
|
||||||
|
self.assertEqual(sample["is_static"], 1.0)
|
||||||
|
|
||||||
|
|
||||||
if __name__ == "__main__":
|
if __name__ == "__main__":
|
||||||
|
|||||||
Reference in New Issue
Block a user