Associate Professor, Soochow University
Noise perception, UAM planning, and Human-computer interaction
Dr. Qichen TAN obtained his PhD degree in Intelligent Transportation at HKUST in 2024, and obtained the BEng degree in Software engineering at University of Electronic Science and Technology of China in 2020. His study focuses on noise simulation of pilotless aerial vehicle, sustainable flight path planning, and artificial intelligence.
Research projects
Publications
- Stochastic wind-aware route planning in competitive sailing: A Markov-enhanced hybrid A* approach (2026)
- The Air Vehicle Flyover Noise Assessment in Urban Areas with Complex Urban Wind Conditions (2025)
- Acoustic-Driven Artificial Potential Field for Low-Noise Multi-UAV Path Planning (2025)
- On the Gaussian beam tracing method for long-distance sound wave propagation in non-uniform mean flows (2025)
- Machine learning-based prediction of drone noise propagation in three-dimensional urban environments (2025)
- Inshore sailing route optimization integrating terrain-influenced wind field (2025)
- Effect of rotation speed fluctuation on rotor noise generation: A numerical and experimental study (2025)
- Low-noise multi-agent intelligent navigation for unmanned aircraft systems (2024)
- Exploring the influence of winds in urban region on sound propagation and low-noise path planning of urban air mobility (2024)
- A Hierarchical Approach for Windsurfing Performance Analysis and Velocity Prediction (2024)
- Velocity prediction program for windsurfing: A hierarchical approach integrating biomechanical insights (2024)
- Low-noise flight path planning of drones based on a virtual flight noise simulator: a vehicle routing problem (2024)
- Exploring noise reduction strategies: Optimizing drone station placement for last-mile delivery (2024)
- Enhancing sustainable urban air transportation: Low-noise UAS flight planning using noise assessment simulator (2024)
- Noise-aware UAS flight path planning based on virtual flight simulation (2023)
- Noise assessment and low-noise flight path planning platform for urban air mobility (2023)
- LOW-NOISE FLIGHT ROUTING PLANNING OF DRONES BASED ON A VIRTUAL FLIGHT NOISE SIMULATOR (2023)
- Virtual flight simulation of delivery drone noise in the urban residential community (2023)
- Reprint of: Assessment of UAM and drone noise impact on the environment based on virtual flights (2022)
- Efficient computation of broadband noise propagation using Gaussian beam tracing method (2022)
- Simulation of multi-rotor powered urban aerial mobility noise for environmental assessment (2021)
- A hybrid and efficient low-noise assessment platform for urban aerial mobility (HELPU) (2021)
- Assessment of UAM and drone noise impact on the environment based on virtual flights (2021)