Files
lego-pybricks-collection/42129 B model 'Hot Trot' by Didumos (MOC-93255)/main.py
T
2023-11-20 20:58:29 +01:00

127 lines
4.9 KiB
Python

################################################################################
# #
# pybricks script for 42129 B model 'Hot Trot' by Didumos #
# #
# This script enables the LEGO® Powered Up Technic Hub to be used with the #
# LEGO® Powerd UP 88010 Remote. #
# #
# Configuration of the Technic Hub: #
# Port A: Drive motor #
# Port B: Drive motor #
# Port C: Not used #
# Port D: Steering with left and right limited #
# #
################################################################################
# Rebrickable: https://rebrickable.com/mocs/MOC-93255/ #
################################################################################
# LEGO® is a trademark of the LEGO Group of companies which does not sponsor, #
# authorize or endorse this project. #
################################################################################
from pybricks.pupdevices import Motor, Remote
from pybricks.parameters import Port, Direction, Stop, Button, Color
from pybricks.hubs import TechnicHub
from pybricks.tools import wait
# Initialize the motors.
steering = Motor(Port.D, Direction.COUNTERCLOCKWISE)
driving_1 = Motor(Port.A, Direction.COUNTERCLOCKWISE)
driving_2 = Motor(Port.B, Direction.CLOCKWISE)
# Connect to the remote.
remote = Remote()
# Initialize the hub.
hub = TechnicHub()
# Find the steering endpoint on the left and right.
# The middle is in between.
left_end = steering.run_until_stalled(-200, then=Stop.HOLD)
right_end = steering.run_until_stalled(200, then=Stop.HOLD)
# We are now at the right. Reset this angle to be half the difference.
# That puts zero in the middle.
steering.reset_angle((right_end - left_end) / 2)
steering.run_target(speed=200, target_angle=0, wait=False)
# Set steering angle
steering_angle = ((right_end - left_end) / 2) - 5
# Set variable for gear
# Total number of gears.
gear_total = 2
# Empty variable to set later on (keep empty!).
gear_old = None
# Gear at start (must be higher than 0 and lower or eaqual to gear_total).
gear = 1
# Number of colors should at least be equal to gear_total.
gear_color = ["BLUE", "RED"]
# Battery variables
voltage_current = hub.battery.voltage()
voltage = voltage_current
while True:
# Check which buttons are pressed.
pressed = remote.buttons.pressed()
# Choose the steering angle based on the right controls.
if Button.RIGHT_PLUS in pressed:
steering.run_target(1400, -steering_angle, Stop.HOLD, False)
elif Button.RIGHT_MINUS in pressed:
steering.run_target(1400, steering_angle, Stop.HOLD, False)
else:
steering.track_target(0)
# Check if the left middle button is pressed to change gear
if Button.LEFT in pressed:
if gear_old > 1:
gear -= 1
while Button.LEFT in pressed:
# Button debounce
wait(10)
pressed = remote.buttons.pressed()
# Check if the right middle button is pressed to change gear
if Button.RIGHT in pressed:
if gear_old < gear_total:
gear += 1
while Button.RIGHT in pressed:
# Button debounce
wait(10)
pressed = remote.buttons.pressed()
# Set speed according to the choosen gear.
if gear is not gear_old:
remote.light.on(Color[gear_color[gear - 1]])
speed = (100 / gear_total) * gear
gear_old = gear
# Choose the drive speed based on the left controls.
drive_speed = 0
if Button.LEFT_PLUS in pressed:
drive_speed += speed
elif Button.LEFT_MINUS in pressed:
drive_speed -= speed
# Apply the selected speed.
driving_1.dc(drive_speed)
driving_2.dc(drive_speed)
# Show battery status by hub LED.
# Get current voltage and gradually up or down the value.
voltage_current = hub.battery.voltage()
if voltage_current < voltage:
voltage -= 1
elif voltage_current > voltage:
voltage += 1
# Show the correct color.
if voltage > 9000:
hub.light.on(Color.GREEN)
elif voltage > 8100:
hub.light.on(Color.YELLOW)
elif voltage > 7200:
hub.light.on(Color.ORANGE)
else:
hub.light.on(Color.RED)