import asyncio import time import robot import pid_controller class DistanceController: def __init__(self, encoder, motor_fn): self.encoder = encoder self.motor_fn = motor_fn self.pid = pid_controller.PIDController(3.25, 0.5, 0.5, d_filter_gain=1) self.start_ticks = self.encoder.read() self.error = 0 def update(self, dt, expected): self.actual = self.encoder.read() - self.start_ticks # calculate the error self.error = (expected - self.actual) / robot.ticks_per_revolution # calculate the control signal control_signal = self.pid.calculate(self.error, dt) self.motor_fn(control_signal) class DistanceTracker: def __init__(self): self.speed = 0.17 self.time_interval = 0.2 self.start_time = time.monotonic() self.current_position = 0 self.total_distance_in_ticks = 0 self.total_time = 0.1 def set_distance(self, new_distance): # add the last travelled distance to the current position self.current_position += self.total_distance_in_ticks # calculate the new additional distance self.total_distance_in_ticks = robot.m_to_ticks * new_distance self.total_time = max(0.1, abs(new_distance / self.speed)) self.start_time = time.monotonic() async def loop(self): left = DistanceController(robot.left_encoder, robot.set_left) right = DistanceController(robot.right_encoder, robot.set_right) last_time = time.monotonic() while True: await asyncio.sleep(self.time_interval) current_time = time.monotonic() dt = current_time - last_time last_time = current_time elapsed_time = current_time - self.start_time time_proportion = min(1, elapsed_time / self.total_time) expected = time_proportion * self.total_distance_in_ticks + self.current_position left.update(dt, expected) right.update(dt, expected) robot.uart.write(f"0, {expected:.2f},{left.actual:.2f}\n".encode()) distance_tracker = DistanceTracker() async def command_handler(): while True: if robot.uart.in_waiting: command = robot.uart.readline().decode().strip() # PID settings if command.startswith("M"): distance_tracker.speed = float(command[1:]) elif command.startswith("T"): distance_tracker.time_interval = float(command[1:]) # Start/stop commands elif command == "O": distance_tracker.set_distance(0) elif command.startswith("O"): await asyncio.sleep(5) distance_tracker.set_distance(float(command[1:])) # Print settings elif command.startswith("?"): robot.uart.write(f"M{distance_tracker.speed:.1f}\n".encode()) robot.uart.write(f"T{distance_tracker.time_interval:.1f}\n".encode()) await asyncio.sleep(3) await asyncio.sleep(0) asyncio.create_task(distance_tracker.loop()) asyncio.run(command_handler())