Call For Paper

The 2027 International Conference on Robot Perception and Automation (ICRPA 2027) invites researchers, engineers, and practitioners worldwide to submit original contributions addressing cutting-edge advancements in the following areas but not limited to:

 

Track 1: Robot Perception and Sensing

  • Vision systems and 3D perception for robotics

  • Multi-sensor fusion and integration

  • SLAM (Simultaneous Localization and Mapping)

  • Object detection, recognition, and scene understanding

  • Tactile, force, and proximity sensing

  • Perception for navigation and obstacle avoidance

  • Deep learning for robot perception

  • Multimodal perception and sensor calibration

Track 2: Robot Control and Automation

  • Motion planning and trajectory optimization

  • Adaptive, robust, and nonlinear control

  • Model predictive control (MPC) for robotic systems

  • Industrial automation and smart manufacturing

  • Collaborative robots and human-robot collaboration

  • Multi-robot systems and swarm coordination

  • Autonomous navigation and path planning

  • Learning-based control and reinforcement learning

Track 3: Autonomous Systems and Intelligence

  • Autonomous decision-making and task planning

  • Cognitive robotics and embodied AI

  • Robot learning and data-driven autonomy

  • Large language models and foundation models for robotics

  • Intelligent fault detection and diagnosis

  • Multi-agent systems and cooperative robotics

  • Edge and cloud computing for robotics

  • Simulation and digital twins for robotic systems

Track 4: Robotic Systems and Applications

  • Industrial and service robots

  • Mobile manipulators and robotic arms

  • Medical and rehabilitation robotics

  • Aerial, ground, and underwater robots

  • Soft robotics and bio-inspired systems

  • Humanoid and social robots

  • Agricultural and field robotics

  • Robot safety, reliability, and standardization

Track 5: Human-Robot Interaction

  • Human-robot collaboration and interfaces

  • Physical human-robot interaction

  • Teleoperation and telerobotics

  • Social and emotional robotics

  • Wearable and assistive robotics

  • Safety and ethics in human-robot systems