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https://github.com/firestar5683/StarPilot.git
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Nobody try this til I say so
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@@ -22,16 +22,20 @@ from openpilot.selfdrive.controls.lib.vehicle_model import ACCELERATION_DUE_TO_G
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# to be overcome to move it at all, this is compensated for too.
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KP = 0.6
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KI = 0.28
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KI = 0.3
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INTERP_SPEEDS = [1, 1.5, 2.0, 3.0, 5, 7.5, 10, 15, 30]
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KP_INTERP = [250, 120, 65, 30, 11.5, 5.5, 3.5, 2.0, KP]
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LOW_SPEED_X = [0, 10, 20, 30]
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LOW_SPEED_Y = [15, 13, 10, 5]
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MAX_LAT_JERK_UP = 2.5 # m/s^3
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LP_FILTER_CUTOFF_HZ = 1.2
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JERK_LOOKAHEAD_SECONDS = 0.19
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JERK_GAIN = 0.3
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LAT_ACCEL_REQUEST_BUFFER_SECONDS = 1.0
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VERSION = 1
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VERSION = 2
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class LatControlTorque(LatControl):
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def __init__(self, CP, CI, dt):
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@@ -46,6 +50,8 @@ class LatControlTorque(LatControl):
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self.lat_accel_request_buffer = deque([0.] * self.lat_accel_request_buffer_len , maxlen=self.lat_accel_request_buffer_len)
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self.lookahead_frames = int(JERK_LOOKAHEAD_SECONDS / self.dt)
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self.jerk_filter = FirstOrderFilter(0.0, 1 / (2 * np.pi * LP_FILTER_CUTOFF_HZ), self.dt)
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self.previous_measurement = 0.0
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self.measurement_rate_filter = FirstOrderFilter(0.0, 1 / (2 * np.pi * (MAX_LAT_JERK_UP - 0.5)), self.dt)
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def update_live_torque_params(self, latAccelFactor, latAccelOffset, friction):
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self.torque_params.latAccelFactor = latAccelFactor
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@@ -63,6 +69,10 @@ class LatControlTorque(LatControl):
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if not active:
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output_torque = 0.0
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pid_log.active = False
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self.pid.reset()
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self.previous_measurement = 0.0
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self.measurement_rate_filter.x = 0.0
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self.lat_accel_request_buffer = deque([0.] * self.lat_accel_request_buffer_len , maxlen=self.lat_accel_request_buffer_len)
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else:
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measured_curvature = -VM.calc_curvature(math.radians(CS.steeringAngleDeg - params.angleOffsetDeg), CS.vEgo, params.roll)
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roll_compensation = params.roll * ACCELERATION_DUE_TO_GRAVITY
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@@ -71,26 +81,31 @@ class LatControlTorque(LatControl):
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delay_frames = int(np.clip(lat_delay / self.dt, 1, self.lat_accel_request_buffer_len))
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expected_lateral_accel = self.lat_accel_request_buffer[-delay_frames]
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lookahead_idx = int(np.clip(-delay_frames + self.lookahead_frames, -self.lat_accel_request_buffer_len+1, -2))
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raw_lateral_jerk = (self.lat_accel_request_buffer[lookahead_idx+1] - self.lat_accel_request_buffer[lookahead_idx-1]) / (2 * self.dt)
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desired_lateral_jerk = self.jerk_filter.update(raw_lateral_jerk)
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future_desired_lateral_accel = desired_curvature * CS.vEgo ** 2
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self.lat_accel_request_buffer.append(future_desired_lateral_accel)
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raw_lateral_jerk = (future_desired_lateral_accel - expected_lateral_accel) / max(lat_delay, self.dt)
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desired_lateral_jerk = self.jerk_filter.update(raw_lateral_jerk)
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gravity_adjusted_future_lateral_accel = future_desired_lateral_accel - roll_compensation
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setpoint = expected_lateral_accel
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setpoint = expected_lateral_accel + desired_lateral_jerk * lat_delay
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measurement = measured_curvature * CS.vEgo ** 2
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measurement_rate = self.measurement_rate_filter.update((measurement - self.previous_measurement) / self.dt)
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self.previous_measurement = measurement
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low_speed_factor = (np.interp(CS.vEgo, LOW_SPEED_X, LOW_SPEED_Y) / max(CS.vEgo, MIN_SPEED)) ** 2
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current_kp = np.interp(CS.vEgo, self.pid._k_p[0], self.pid._k_p[1])
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error = setpoint - measurement
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error_with_lsf = error * (1 + low_speed_factor / max(current_kp, 1e-3))
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# do error correction in lateral acceleration space, convert at end to handle non-linear torque responses correctly
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pid_log.error = float(error)
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pid_log.error = float(error_with_lsf)
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ff = gravity_adjusted_future_lateral_accel
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# latAccelOffset corrects roll compensation bias from device roll misalignment relative to car roll
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ff -= self.torque_params.latAccelOffset
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ff += get_friction(error + JERK_GAIN * desired_lateral_jerk, lateral_accel_deadzone, FRICTION_THRESHOLD, self.torque_params)
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ff += get_friction(error_with_lsf + JERK_GAIN * desired_lateral_jerk, lateral_accel_deadzone, FRICTION_THRESHOLD, self.torque_params)
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freeze_integrator = steer_limited_by_safety or CS.steeringPressed or CS.vEgo < 5
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output_lataccel = self.pid.update(pid_log.error, speed=CS.vEgo, feedforward=ff, freeze_integrator=freeze_integrator)
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output_lataccel = self.pid.update(pid_log.error, error_rate=-measurement_rate, speed=CS.vEgo, feedforward=ff, freeze_integrator=freeze_integrator)
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output_torque = self.torque_from_lateral_accel(output_lataccel, self.torque_params)
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pid_log.active = True
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