Solution > Application of LiDAR in obstacle avoidance for shuttle vehicles
激光雷达在穿梭车避障中应用
Application of LiDAR in obstacle avoidance for shuttle vehicles
Intelligent real-time monitoring, stable and reliable system, multi vehicle collaborative operation
Short distance photon series
Scheme consultation
Industry/Project Background Introduction
The rail intelligent shuttle system connects various regional stations through a dedicated rail network, achieving efficient point-to-point three-dimensional transportation. The system adopts a parallel operation mode of multiple shuttle cars to improve transportation efficiency. In this process, to ensure the safety of vehicle operation, the system is equipped with advanced LiDAR obstacle avoidance solutions. This scheme effectively prevents collision accidents by monitoring the track environment in real-time, accurately detecting obstacles and adjacent vehicles ahead, intelligently controlling vehicle speed and braking. This intelligent obstacle avoidance technology not only ensures the safe operation of shuttle cars, but also significantly reduces the risk of equipment damage caused by accidental collisions, providing reliable safety protection for automated rail transportation systems and ensuring the efficient and stable operation of logistics transportation.
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Application scenarios
  • Realize fast and accurate point-to-point three-dimensional transportation between multiple stations through a dedicated rail network
  • Using LiDAR technology for 24/7 real-time monitoring of the orbital environment
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Technical Proposal
  • Support parallel operation of multiple shuttle buses, greatly improving overall transportation efficiency
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Customer Value
  • Can accurately detect obstacles ahead and adjacent vehicle position information
  • Equipped with intelligent speed regulation and automatic braking functions, effectively preventing collision accidents
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Technical highlights
  • Significantly reduce the risk of equipment damage and ensure long-term stable operation of the transportation system
Case diagram

Case 1