Associate ProfessorHoushyar Asadi
Associate Professor
Faculty of Science Engineering and Built Environment/Institute for Intelligent Systems Research and Innovation
Orcid identifier0000-0002-3620-8693 (opens in a new tab)
- Associate ProfessorFaculty of Science Engineering and Built Environment/Institute for Intelligent Systems Research and Innovation
- +61 3 524 79394 (Work)
- Geelong Waurn Ponds Campus, 75 Pigdons Road, Waurn Ponds, Victoria 3216
TEACHING ACTIVITIES
- CURRENT DOCTORAL SUPERVISIONA Motion Cueing Algorithm Based on Deep Reinforcement Learning
- CURRENT DOCTORAL SUPERVISIONDriver Distraction Analysis and Prediction in Virtual Simulation Environments Using Artificial Intelligence
- CURRENT DOCTORAL SUPERVISIONHuman emotion analysis using deep learning
- CURRENT DOCTORAL SUPERVISIONPrediction and Measurement of Motion Sickness and Discomfort Factors using a Novel Deep Learning-based Framework
- CURRENT DOCTORAL SUPERVISIONAn advanced Deep Learning-based model for driver distraction detection and analysis
- CURRENT DOCTORAL SUPERVISIONAutomated Task Assessment to Improve Simulation Based Training
- CURRENT DOCTORAL SUPERVISIONLearning on the Line: Multimodal Generative AI for Continuous Skills Development in Industrial Manufacturing
- CURRENT DOCTORAL SUPERVISIONEnhancing Self-Motion Perception in Virtual Environments Using Multisensory Haptic Stimulation
- CURRENT DOCTORAL SUPERVISIONLatent-Space Constrained Policy Optimization for Robust Decision-Making
- COMPLETED DOCTORAL SUPERVISIONDynamic modelling of hexarot parallel mechanisms for design and development
- COMPLETED DOCTORAL SUPERVISIONModelling and Optimization of Robotic Bone Drilling and Milling Processes
- COMPLETED DOCTORAL SUPERVISIONEnhancing human motion perception in model predictive motion cueing algorithm
- COMPLETED DOCTORAL SUPERVISIONModelling and simulation of a motion cueing algorithm using prediction and computational intelligence techniques
- COMPLETED DOCTORAL SUPERVISIONRobust Model Predictive Control Motion Cueing Algorithm for Motion Simulators
- COMPLETED DOCTORAL SUPERVISIONLearning-Based Fast and Robust Nonlinear Model Predictive Control Motion Cueing
- COMPLETED DOCTORAL SUPERVISIONDriving Behaviour Prediction Using Physiological Data and Deep Learning
- COMPLETED DOCTORAL SUPERVISIONVibrotactile Stimulation to Enhance Self-Motion Sensations in Virtual Reality