Scopes
Including but not limited to the following contents:
Track 1: Intelligent Ships and Autonomous Systems
Design and Optimization of Intelligent Ships
Vibration and Noise Control of Ship Structures
Dynamic Response Modeling of Ship Structures
Vibration Control of Ship Mechanical Systems
Low Noise Design Technology for Ships
Control of Autonomous Underwater Vehicles
Intelligent Navigation and Obstacle Avoidance for Ships
Control of Multi-Ship Collaborative Operations
Intelligent Path Planning and Optimization
Fault Diagnosis and Fault Tolerance of Autonomous Systems
Remote Monitoring and Control System
Water Sound Assisted Autonomous Decision-making
Application of Intelligent Materials in Vibration and Noise Reduction
Ship Digital Twin
Intelligent Fault Recovery Strategies
Track 2: Water Sound Detection and Signal Processing
Water Sound Modeling and Simulation
Underwater Sound Wave Propagation Models
Numerical Simulation of Ocean Sound Fields
Design of Underwater Sonar Systems
Adaptive Water Sound Detection Algorithms
Passive and Active Acoustic Detection
Multi-Sensor Water Sound Data Fusion
Acoustic Positioning and Tracking Technology
Adaptability of Water Sound Detection Environments
Intelligentization of Water Sound Detection Equipment
Feature Extraction of Acoustic Signals
Acoustic Signal Denoising Technology
Acoustic Detection in Complex Environments
Sound Intensity and Sound Pressure Prediction Technology
Underwater Acoustic Communication and Networking
Track 3: Deep Learning and Intelligent Perception
Deep Learning and Pattern Recognition
Application of Machine Learning in Vibration and Noise Recognition
Intelligent Analysis of Water Sound Data
Multimodal Acoustic Data Fusion
Big Data-Driven Ship State Monitoring
Application of Artificial Intelligence in Underwater Target Recognition
Intelligent Perception and Real-time Monitoring
Anomaly Detection and Predictive Maintenance
Edge Computing and Real-time Processing
Intelligent Early Warning and Decision Support System
Multi-source Sensor Data Fusion
Intelligent Demodulation of Water Sound Communication
Physical Information Neural Network Water Sound Modeling
Intelligent Detection and Recognition of Underwater Targets
Acoustic Signal Enhancement Based on Deep Learning
Track 1: Intelligent Ships and Autonomous Systems
Design and Optimization of Intelligent Ships
Vibration and Noise Control of Ship Structures
Dynamic Response Modeling of Ship Structures
Vibration Control of Ship Mechanical Systems
Low Noise Design Technology for Ships
Control of Autonomous Underwater Vehicles
Intelligent Navigation and Obstacle Avoidance for Ships
Control of Multi-Ship Collaborative Operations
Intelligent Path Planning and Optimization
Fault Diagnosis and Fault Tolerance of Autonomous Systems
Remote Monitoring and Control System
Water Sound Assisted Autonomous Decision-making
Application of Intelligent Materials in Vibration and Noise Reduction
Ship Digital Twin
Intelligent Fault Recovery Strategies
Track 2: Water Sound Detection and Signal Processing
Water Sound Modeling and Simulation
Underwater Sound Wave Propagation Models
Numerical Simulation of Ocean Sound Fields
Design of Underwater Sonar Systems
Adaptive Water Sound Detection Algorithms
Passive and Active Acoustic Detection
Multi-Sensor Water Sound Data Fusion
Acoustic Positioning and Tracking Technology
Adaptability of Water Sound Detection Environments
Intelligentization of Water Sound Detection Equipment
Feature Extraction of Acoustic Signals
Acoustic Signal Denoising Technology
Acoustic Detection in Complex Environments
Sound Intensity and Sound Pressure Prediction Technology
Underwater Acoustic Communication and Networking
Track 3: Deep Learning and Intelligent Perception
Deep Learning and Pattern Recognition
Application of Machine Learning in Vibration and Noise Recognition
Intelligent Analysis of Water Sound Data
Multimodal Acoustic Data Fusion
Big Data-Driven Ship State Monitoring
Application of Artificial Intelligence in Underwater Target Recognition
Intelligent Perception and Real-time Monitoring
Anomaly Detection and Predictive Maintenance
Edge Computing and Real-time Processing
Intelligent Early Warning and Decision Support System
Multi-source Sensor Data Fusion
Intelligent Demodulation of Water Sound Communication
Physical Information Neural Network Water Sound Modeling
Intelligent Detection and Recognition of Underwater Targets
Acoustic Signal Enhancement Based on Deep Learning
Important Dates | 重要日期
- Submission Deadline: November 7th, 2026
- Registration Deadline: November 16th, 2026
- Conference Date: November 26th, 2026
- Notification Date: About a week after the submission
Submission Portal | 投稿方式
Mail Address: icaim_info@126.com
If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:
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15528045772
3825393354
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