ROS机器人小车建模仿真与SLAM
文章目录
## ROS中机器小车的仿真实验
一.建立模型
####1.创建功能包
mkdir -p catkin_ws/src
cd catkin_ws/src
catkin_init_workspace
导入依赖:
catkin_create_pkg jubot_demo urdf xacro
cd jubot_demo/
mkdir urdf
mkdir launch
mkdir meshes
mkdir config
创建urdf,launch文件:
<launch>
<!-- 将 urdf 文件内容设置进参数服务器 -->
<param name="robot_description" textfile="$(find jubot_demo)/urdf/box_urdf.urdf" />
<!-- 启动 rviz -->
<!-- <node pkg="rviz" type="rviz" name="rviz" /> -->
<node pkg="rviz" type="rviz" name="rviz" args="-d $(find jubot_demo)/config/rviz/show_four_wheel_car.rviz" />
<!-- 启动机器人状态和关节状态发布节点 -->
<node pkg="robot_state_publisher" type="robot_state_publisher" name="robot_state_publisher" />
<node pkg="joint_state_publisher" type="joint_state_publisher" name="joint_state_publisher" />
<!-- 启动图形化的控制关节运动节点 -->
<node pkg="joint_state_publisher_gui" type="joint_state_publisher_gui" name="joint_state_publisher_gui" />
</launch>
urdf:
<!-- <robot name="mycar">
<link name="base_link">
<visual>
<geometry>
<box size="0.5 0.2 0.1" />
</geometry>
</visual>
</link>
</robot> -->
<robot name="mycar">
<!-- 设置 base_footprint -->
<link name="base_footprint">
<visual>
<geometry>
<sphere radius="0.001" />
</geometry>
</visual>
</link>
<!-- 添加底盘 -->
<!--
参数
形状:圆柱
半径:10 cm
高度:8 cm
离地:1.5 cm
-->
<link name="base_link">
<visual>
<geometry>
<cylinder radius="0.1" length="0.08" />
</geometry>
<origin xyz="0 0 0" rpy="0 0 0" />
<material name="yellow">
<color rgba="0.8 0.3 0.1 0.5" />
</material>
</visual>
</link>
<joint name="base_link2base_footprint" type="fixed">
<parent link="base_footprint" />
<child link="base_link"/>
<origin xyz="0 0 0.055" />
</joint>
<!-- 添加驱动轮 -->
<!-- 添加驱动轮 -->
<!--
驱动轮是侧翻的圆柱
参数
半径: 3.25 cm
宽度: 1.5 cm
颜色: 黑色
关节设置:
x = 0
y = 底盘的半径 + 轮胎宽度 / 2
z = 离地间距 + 底盘长度 / 2 - 轮胎半径 = 1.5 + 4 - 3.25 = 2.25(cm)
axis = 0 1 0
-->
<link name="left_wheel">
<visual>
<geometry>
<cylinder radius="0.0325" length="0.015" />
</geometry>
<origin xyz="0 0 0" rpy="1.5705 0 0" />
<material name="black">
<color rgba="0.0 0.0 0.0 1.0" />
</material>
</visual>
</link>
<joint name="left_wheel2base_link" type="continuous">
<parent link="base_link" />
<child link="left_wheel" />
<origin xyz="0 0.1 -0.0225" />
<axis xyz="0 1 0" />
</joint>
<link name="right_wheel">
<visual>
<geometry>
<cylinder radius="0.0325" length="0.015" />
</geometry>
<origin xyz="0 0 0" rpy="1.5705 0 0" />
<material name="black">
<color rgba="0.0 0.0 0.0 1.0" />
</material>
</visual>
</link>
<joint name="right_wheel2base_link" type="continuous">
<parent link="base_link" />
<child link="right_wheel" />
<origin xyz="0 -0.1 -0.0225" />
<axis xyz="0 1 0" />
</joint>
<!-- 添加万向轮(支撑轮) -->
<!-- 添加万向轮(支撑轮) -->
<!--
参数
形状: 球体
半径: 0.75 cm
颜色: 黑色
关节设置:
x = 自定义(底盘半径 - 万向轮半径) = 0.1 - 0.0075 = 0.0925(cm)
y = 0
z = 底盘长度 / 2 + 离地间距 / 2 = 0.08 / 2 + 0.015 / 2 = 0.0475 axis= 1 1 1
-->
<link name="front_wheel">
<visual>
<geometry>
<sphere radius="0.0075" />
</geometry>
<origin xyz="0 0 0" rpy="0 0 0" />
<material name="black">
<color rgba="0.0 0.0 0.0 1.0" />
</material>
</visual>
</link>
<joint name="front_wheel2base_link" type="continuous">
<parent link="base_link" />
<child link="front_wheel" />
<origin xyz="0.0925 0 -0.0475" />
<axis xyz="1 1 1" />
</joint>
<link name="back_wheel">
<visual>
<geometry>
<sphere radius="0.0075" />
</geometry>
<origin xyz="0 0 0" rpy="0 0 0" />
<material name="black">
<color rgba="0.0 0.0 0.0 1.0" />
</material>
</visual>
</link>
<joint name="back_wheel2base_link" type="continuous">
<parent link="base_link" />
<child link="back_wheel" />
<origin xyz="-0.0925 0 -0.0475" />
<axis xyz="1 1 1" />
</joint>
</robot>
2.可视化
先编译配置launch文件,退到主目录catkin_ws下,执行catkin_make。
成功之后,再执行 catkin_make install。
然后在主目录catkin_make下配置环境变量source devel/setup.bash。
检测环境变量是否配置成功echo $ROS_PACKAGE_PATH。
再启动launch文件,完成可视化的建立: