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Intelligent Robotics and Applications: 17th International Conference, ICIRA 2024, Xi'an, China, July 31 August 2, 2024, Proceedings, Part IX [Pehme köide]

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  • Formaat: Paperback / softback, 488 pages, kõrgus x laius: 235x155 mm, 237 Illustrations, color; 25 Illustrations, black and white; XIV, 488 p. 262 illus., 237 illus. in color., 1 Paperback / softback
  • Sari: Lecture Notes in Artificial Intelligence 15209
  • Ilmumisaeg: 24-Jan-2025
  • Kirjastus: Springer Nature Switzerland AG
  • ISBN-10: 9819607884
  • ISBN-13: 9789819607884
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  • Formaat: Paperback / softback, 488 pages, kõrgus x laius: 235x155 mm, 237 Illustrations, color; 25 Illustrations, black and white; XIV, 488 p. 262 illus., 237 illus. in color., 1 Paperback / softback
  • Sari: Lecture Notes in Artificial Intelligence 15209
  • Ilmumisaeg: 24-Jan-2025
  • Kirjastus: Springer Nature Switzerland AG
  • ISBN-10: 9819607884
  • ISBN-13: 9789819607884
The 10-volume set LNAI 15201-15210 constitutes the proceedings of the 17th International Conference on Intelligent Robotics and Applications, ICIRA 2024, which took place in Xian, China, during July 31August 2, 2024.





The 321 full papers included in these proceedings were carefully reviewed and selected from 489 submissions.





They were organized in topical sections as follows:





Part I: Innovative Design and Performance Evaluation of Robot Mechanisms.





Part II: Robot Perception and Machine Learning; Cognitive Intelligence and Security Control for Multi-domain Unmanned Vehicle Systems.





Part III: Emerging Techniques for Intelligent Robots in Unstructured Environment; Soft Actuators and Sensors; and Advanced Intelligent and Flexible Sensor Technologies for Robotics.





Part IV: Optimization and Intelligent Control of Underactuated Robotic Systems; and Technology and application of modular robots.





Part V: Advanced actuation and intelligent control in medical robotics: Advancements in Machine Vision for Enhancing Human-Robot Interaction; and Hybrid Decision-making and Control for Intelligent Robots.





Part VI: Advances in Marine Robotics; Visual, Linguistic, Affective Agents: Hybrid-augmented Agents for Robotics;  and Wearable Robots for Assistance, Augmentation and Rehabilitation of human movements.





Part VII: Integrating World Models for Enhanced Robotic Autonomy; Advanced Sensing and Control Technologies for Intelligent Human-Robot Interaction; and Mini-Invasive Robotics for In-Situ Manipulation.





Part VIII: Robot Skill Learning and Transfer; Human-Robot Dynamic System: Learning, Modelling and Control; AI-Driven Smart Industrial Systems; and Natural Interaction and Coordinated Collaboration of Robots in Dynamic Unstructured Environments.





Part IX: Robotics in Cooperative Manipulation, MultiSensor Fusion, and Multi-Robot Systems; Human-machine Co-adaptive Interface; Brain inspired intelligence for robotics; Planning, control and application of bionic novel concept robots; and Robust Perception for Safe Driving.





Part X:  AI Robot Technology for Healthcare as a Service; Computational Neuroscience and Cognitive Models for Adaptive Human-Robot Interactions; Dynamics and Perception of Human-Robot Hybrid Systems; and Robotics for Rehabilitation: Innovations, Challenges, and Future Directions.
.- Robotics in Cooperative Manipulation, MultiSensor Fusion, and
Multi-Robot Systems.

.-Dense Point Cloud Upsampling Method for Coal Mine Tunnels Based on
Upsampling.

.- Optimal Strategies for Multiple Agents in Homicidal Chauffeur Reach-Avoid
Games via Potential Game-Based Matching.

.- A Novel Mission Planning Method for Multi-robot Collaborative Area
Coverage.

.- Layout optimization of a heterogeneous multi-robot system for mirror
milling.

.- An Automatic Weighting Decision-making Framework for Trajectory Tracking
of the Overactuated UAVs Platform.

.- Multi-sensor Fusion Localization and Terrain Reconstruction for Guided
Quadruped Robots.

.- Multi-modal Cooperative Perception of Constrained Multi-UAV Platform.

.- Obstacle Avoidance for Guided Quadruped Robots in Complex Environments.

.- Human-machine Co-adaptive Interface. 

.- 3D Rock and Pothole Detection in Desert for the Wild Navigation.

.- Learning Adaptive Edge Dual-Graph Convolutional Network for Robust Point
Cloud Analysis.

.- AttenS: an Attentive Selection Method for Communication-Efficient
Cooperative Perception. 

.- An Analytical Inverse Kinematics Optimization Method of 7-DOF
anthropomorphic manipulators with joint limits.

.- Event Camera Localization in 3D LiDAR Maps.

.- Enhanced YOLOv8 integrated brain-inspired attention mechanisms for weed
detection.

.- Brain-inspired visual language navigation robot position deviation
correction.

.- Psychological Conditions Analysis based on Text Detection and Facial
Expression Recognition.

.- Integrating Retinex theory for YOLO-based Object Detection in
Low-illumination Environments.

.- Remote Sensing Infrared Weak and Small Target Detection Method Based on
Improved YOLOv5 and Data Augmentation.

.- Vehicle detection method in foggy weather based on YOLO with human eye
mechanisms.

.- Planning, control and application of bionic novel concept robots.

.- A Water Surface Jumping Robot Inspired by the Pygmy Mole Cricket.

.- Real-time Path Planning Under Signal Temporal Logic Specifications in
Dynamic Environment.

.- An Enhanced DMP Approach for Robotic Manipulator Autonomous Obstacle
Avoidance Using Dynamic Potential Function.

.-Free-form Instruction Guided Robotic Navigation Path Planning with Large
Vision-Language Model.

.- A Forward Kinematics Solution Method for Cable-Driven Hyper-Redundant
Manipulators Based on Self-Attention Mechanism.

.- A Physics-based Simulator for Bi-directional Motor Driven Flapping Wing
Micro Air Vehicles.

.- Active disturbance rejection control of telescopic-wing morphing aircraft:
Accommodating composite disturbances.

.- Robust Perception for Safe Driving. 

.- A Variable Parameter LoD Model Point Cloud Compression Method Based on
Attention Mechanism.

.- A Dynamical Systems-Based Peg-in-Hole Assembly Method using Temporal Logic
Task Planner.

.- Development of a Multi-channel Wireless Wearable Muscle Oxygen Monitoring
Device.

.- A Robust Identification Method for Robot Drive Gains Using a Payload.

.- A Neuromorphic Tactile Perception System Based on Spiking Neural Network
for Texture Recognition.

.- Gait Recognition Based on A-Mode Ultrasound and Inertial Sensor Fusion
Systems.

.- Motion Planning via Deep Reinforcement Learning and Nerf-Based Layering
for Mobile Robots with Different Heights.

.- Structural Design and Motion Analysis of a Wall-Pressing In-Pipe Robot
Based on Mecanum Wheels.

.- Brain inspired intelligence for robotics.