7.1 KiB
7.1 KiB
Lslidar_M10_N10_V2.5.3_231110_ROS使用说明
1.Introduction
Lslidar_M10_N10_V2.5.3_231110_ROS is the lidar ros driver in linux environment, which is suitable for M10 ,M10_GPS,M10_P,M10_PLUS,N10,N10_PLUS and L10 lidar. The program has tested under ubuntu 20.04 ros noetic , ubuntu18.04 ros melodic and ubuntu16.04 ros kinetic.
2.Dependencies
-
ros
To run lidar driver in ROS environment, ROS related libraries need to be installed.
Ubuntu 16.04: ros-kinetic-desktop-full
Ubuntu 18.04: ros-melodic-desktop-full
Ubuntu 20.04: ros-noetic-desktop-full
Installation: please refer to [http://wiki.ros.org]
-
ros dependencies
# install
sudo apt-get install ros-$ROS_DISTRO-pcl-ros ros-$ROS_DISTRO-pluginlib ros-$ROS_DISTRO-pcl-conversions ros-$ROS_DISTRO-diagnostic-updater
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other dependencies
sudo apt-get install libpcap-dev
sudo apt-get install libboost${BOOST_VERSION}-dev #Select the appropriate version
3.Compile && Run
- This is a Catkin package. Make sure the package is on
ROS_PACKAGE_PATHafter cloning the package to your workspace. And the normal procedure for compling a catkin package will work.
mkdir -p ~/lidar_ws/src
#Copy the whole lidar ROS driver directory into ROS workspace, i.e "~/lidar_ws/src".
cd ~/lidar_ws
catkin_make
source devel/setup.bash
#run
roslaunch lslidar_driver lslidar_net.launch #net lidar
roslaunch lslidar_driver lslidar_serial.launch #serial lidar
4.Introduction to parameters
- The content of the lslidar_serial.launch file is as follows, and the meaning of each parameter is shown in the notes.
When using serial port radar, serial port permissions should be granted
sudo chmod 777 /dev/ttyUSB0 #ttyUSB0 is lidar serial port
<launch>
<node pkg="lslidar_driver" type="lslidar_driver_node" name="lslidar_driver_node" output="screen">
<param name="lidar_name" value="M10"/> #lidar type:M10 M10_P M10_PLUS M10_GPS N10 N10_PLUS L10
<param name="serial_port" value="/dev/ttyUSB0"/> #lidar connection serial port
<param name="interface_selection" value="serial"/> #interface select: net or serial
<param name="frame_id" value="laser_link"/> #lidar coordinates
<param name="scan_topic" value="scan"/> #Topic name of lidar scan
<param name="angle_disable_min" value="0.0"/> #Crop angle start
<param name="angle_disable_max" value="0.0"/> #Crop angle end
<param name="min_range" value="0.0"/> #lidar receiving distance min
<param name="max_range" value="100.0"/> #lidar receiving distance max
<param name="use_gps_ts" value="false"/> #lidar use GPS timing
<param name="compensation" value="false"/> #Using angle compensation
<param name="pubScan" value="true"/> #Lidar Release Scanning Theme
<param name="pubPointCloud2" value="false"/> #Lidar Release pointcloud2 Theme
<param name="high_reflection" value="false"/> #M10_P lidar This value needs to be filled in,Uncertain, please contact technical support.
<!--param name="in_file_name" value="$(find lslidar_driver)/pcap/xxx.txt"/--> #Using the txt file reading function
</node>
<node name="rviz" pkg="rviz" type="rviz" args="-d $(find lslidar_driver)/rviz/lslidar.rviz" output="screen"/> #Visualization
</launch>
- The content of the lslidar_net.launch file is as follows, and the meaning of each parameter is shown in the notes.
<launch>
<node pkg="lslidar_driver" type="lslidar_driver_node" name="lslidar_driver_node" output="screen">
<param name="frame_id" value="laser_link"/> #lidar scan/point cloud coordinate system name
<param name="device_ip" value="192.168.1.200"/> #lidar ip
<param name="device_port" value="2368"/> #Main data Stream Output Protocol packet port
<param name="device_ip_difop" value="192.168.1.102"/>#lidar destination IP
<param name="difop_port" value="2369"/> #Device Information Output Protocol packet port
<param name="lidar_name" value="M10"/> #lidar type:M10 M10_P M10_PLUS M10_GPS N10 N10_PLUS L10M10_GPS N10 N10_PLUS L10
<param name="interface_selection" value="net"/> #interface select: net or serial
<param name="add_multicast" value="false"/> #Whether to add multicast
<param name="group_ip" value="224.1.1.2"/> #multicast ip
<param name="scan_topic" value="scan"/> #设置激光数据topic名称
<param name="angle_disable_min" value="0.0"/> #Crop angle start
<param name="angle_disable_max" value="0.0"/> #Crop angle end
<param name="min_range" value="0"/> #lidar receiving distance min
<param name="max_range" value="100.0"/> #lidar receiving distance max
<param name="use_gps_ts" value="false"/> #lidar use GPS timing
<param name="compensation" value="false"/> #Using angle compensation
<param name="pubScan" value="true"/> #Lidar Release Scanning Theme
<param name="pubPointCloud2" value="false"/> #Lidar Release pointcloud2 Theme
<param name="high_reflection" value="false"/> #M10_P lidar This value needs to be filled in,Uncertain, please contact technical support.
<!--param name="pcap" value="$(find lslidar_driver)/pcap/xxx.pcap"/--> #Using the pcap file reading function
</node>
<node name="rviz" pkg="rviz" type="rviz" args="-d $(find lslidar_driver)/rviz/lslidar.rviz" output="screen"/> #Visualization
</launch>
5.Command controlled radar
- Run lidar drive,open new terminal
#lidar type: M10 M10_GPS M10_PLUS N10 N10_PLUS
rostopic pub -1 /lslidar_order std_msgs/Int8 "data: 0" #close radar
rostopic pub -1 /lslidar_order std_msgs/Int8 "data: 1" #open radar
#lidar type: M10 M10_GPS M10_P
rostopic pub -1 /lslidar_order std_msgs/Int8 "data: 2" #no filtering
rostopic pub -1 /lslidar_order std_msgs/Int8 "data: 3" #normal filtering
rostopic pub -1 /lslidar_order std_msgs/Int8 "data: 4" #close range filtering
rostopic pub -1 /lslidar_order std_msgs/Int8 "data: 100" #Lidar sends device packets
#Only M10 Start stop version
rostopic pub -1 /lslidar_order std_msgs/Int8 "data: 30" #close radar & stop send data
Offline pcap mode:
-
Modify the following parameters of the launch file
#uncomment <param name="pcap" value="$(find lslidar_driver)/pcap/xxx.pcap"/> #Uncomment to read the data from the pcap file, and add the comment to read the data from the lidar
Offline txt mode:
- Modify the following parameters of the launch file
#uncomment
<param name="in_file_name" value="$(find lslidar_driver)/pcap/xxx.txt"/>
#Uncomment to read the data from the pcap file, and add the comment to read the data from the lidar