Autonomous Lawn Mowing Robot Field Test | Efficient Grass Cutting & Labor Cost Savings
智能割草机器人实地作业视频 本视频展示硕宝智能割草机器人在真实草地环境中的工作过程,可快速完成草坪修剪及杂草清 […]
智能割草机器人实地作业视频 本视频展示硕宝智能割草机器人在真实草地环境中的工作过程,可快速完成草坪修剪及杂草清 […]
This video demonstrates Shuobao’s autonomous following smart unmanned vehicle, showcasing its intelligent tracking capability. The vehicle can automatically detect and continuously follow a target, providing flexible solutions for intelligent transportation and mobile robot applications.
This video demonstrates Shuobao’s tracked remote-controlled orchard sprayer operating in a real orchard environment, showcasing its spraying process and performance in intelligent orchard plant protection applications.
This video demonstrates Shuobao’s smart autonomous land clearing machine operating in mountainous and hilly environments, showcasing its real-world performance in land reclamation, vegetation clearing, and obstacle removal applications through practical field operation scenarios.
定制智能履带机器人底盘平台|工程化移动机器人基础平台 随着移动机器人在农业、工业、巡检、科研等领域的快速发展,
For the past decade, Shuobao Intelligent has been dedicated to the development of mobile robot chassis technologies. In the field of agricultural robots, we have continuously refined and validated our chassis solutions through real-world applications, helping customers accelerate robot development with reliable, engineering-ready platforms instead of building everything from the ground up.
Many robots operate well in laboratory environments, but their performance can change significantly when entering real outdoor conditions. Muddy terrain, loose soil, uneven surfaces, and insufficient traction can cause wheel or track slipping, affecting mobility and stability. This article explores the key factors behind robot slipping on muddy ground and discusses how proper chassis design can improve off-road performance.
Many robot projects perform well in laboratory environments but face challenges when deployed outdoors. This article compares tracked robot chassis and 4WD robot chassis in terms of terrain adaptability, traction, stability, and mobility, helping you understand which solution is more suitable for different outdoor applications.
In the mobile robotics industry, many teams initially focus on key technologies such as: LiDAR Autonomous driving algorithms AI vision recognition ROS systems Path planning
In industrial automation, warehouse logistics, agricultural robotics, inspection robots, and research development, different projects require completely different mobile robot chassis solutions.
Autonomous Follow Robot Solution: Applications & Key Advantages | Shuobao Robot As intelligent mobile robot technology continues to evolve
With the continued development of smart agriculture, agricultural machinery is evolving from traditional equipment toward intelligent and autonomous robotic platforms. This guide explores the key considerations for developing pure electric agricultural robot platforms, including chassis design, power systems, mobility, and application requirements in real-world farming environments.