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rtabmap_ros/rtabmap_demos/launch/turtlebot3/turtlebot3_rgbd_fake_scan.launch.py
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# Example:
#
# Bringup turtlebot3:
# $ export TURTLEBOT3_MODEL=waffle
# $ export LDS_MODEL=LDS-01
# $ ros2 launch turtlebot3_bringup robot.launch.py
#
# SLAM:
# $ ros2 launch rtabmap_demos turtlebot3_rgbd_fake_scan.launch.py
#
# Navigation (install nav2_bringup package):
# $ ros2 launch nav2_bringup navigation_launch.py
# $ ros2 launch nav2_bringup rviz_launch.py
#
# Teleop:
# $ ros2 run turtlebot3_teleop teleop_keyboard
from launch import LaunchDescription
from launch.actions import DeclareLaunchArgument, SetEnvironmentVariable
from launch.substitutions import LaunchConfiguration
from launch.conditions import IfCondition, UnlessCondition
from launch_ros.actions import Node
def generate_launch_description():
use_sim_time = LaunchConfiguration('use_sim_time')
localization = LaunchConfiguration('localization')
parameters={
'frame_id':'base_footprint',
'use_sim_time':use_sim_time,
'subscribe_rgbd':True,
'subscribe_scan_cloud':True,
'use_action_for_goal':True,
'scan_cloud_is_2d': True,
# RTAB-Map's parameters should be strings:
'Reg/Strategy':'1',
'Reg/Force3DoF':'true',
'Optimizer/GravitySigma':'0' # Disable imu constraints (we are already in 2D)
}
remappings=[
('rgb/image', '/camera/image_raw'),
('rgb/camera_info', '/camera/camera_info'),
('depth/image', '/camera/depth/image_raw'),
('scan_cloud', 'assembled_cloud')]
return LaunchDescription([
# Launch arguments
DeclareLaunchArgument(
'use_sim_time', default_value='false',
description='Use simulation (Gazebo) clock if true'),
DeclareLaunchArgument(
'localization', default_value='false',
description='Launch in localization mode.'),
# Nodes to launch
Node(
package='rtabmap_sync', executable='rgbd_sync', output='screen',
parameters=[{'approx_sync':False, 'use_sim_time':use_sim_time}],
remappings=remappings),
# Convert middle row of depth pixels to a fake laser scan
Node(
package='depthimage_to_laserscan', executable='depthimage_to_laserscan_node', output='screen',
parameters=[{
'use_sim_time':use_sim_time,
'range_max': 5.0
}],
remappings=[
('depth', '/camera/depth/image_raw'),
('depth_camera_info', '/camera/camera_info'),
('scan', '/camera/scan')
]),
# Just to convert the fake laser scan to PointCloud2
Node(
package='rtabmap_util', executable='lidar_deskewing', output='screen',
parameters=[{'use_sim_time':use_sim_time,
'fixed_frame_id': 'camera_link'}], # use camera frame
remappings=[
('input_scan', '/camera/scan')
]),
# Assemble the fake laser scans using a circular buffer, then feed that cloud to rtabmap
Node(
package='rtabmap_util', executable='point_cloud_assembler', output='screen',
parameters=[{'use_sim_time':use_sim_time,
'max_clouds': 20,
'voxel_size': 0.05,
'wait_for_transform': 1.0,
'linear_update': 0.3,
'angular_update': 0.5,
'circular_buffer': True,
'frame_id': 'base_link'}],
remappings=[
('assembled_cloud', 'assembled_cloud'),
('cloud', '/camera/scan/deskewed')
]),
# SLAM Mode:
Node(
condition=UnlessCondition(localization),
package='rtabmap_slam', executable='rtabmap', output='screen',
parameters=[parameters],
remappings=remappings,
arguments=['-d']),
# Localization mode:
Node(
condition=IfCondition(localization),
package='rtabmap_slam', executable='rtabmap', output='screen',
parameters=[parameters,
{'Mem/IncrementalMemory':'False',
'Mem/InitWMWithAllNodes':'True'}],
remappings=remappings),
Node(
package='rtabmap_viz', executable='rtabmap_viz', output='screen',
parameters=[parameters],
remappings=remappings),
# Obstacle detection with the camera for nav2 local costmap.
# First, we need to convert depth image to a point cloud.
# Second, we segment the floor from the obstacles.
Node(
package='rtabmap_util', executable='point_cloud_xyz', output='screen',
parameters=[{'decimation': 2,
'max_depth': 3.0,
'voxel_size': 0.02}],
remappings=[('depth/image', '/camera/depth/image_raw'),
('depth/camera_info', '/camera/camera_info'),
('cloud', '/camera/cloud')]),
Node(
package='rtabmap_util', executable='obstacles_detection', output='screen',
parameters=[parameters],
remappings=[('cloud', '/camera/cloud'),
('obstacles', '/camera/obstacles'),
('ground', '/camera/ground')]),
])