Area of research
Building and Construction · Transportation
Research interest
Research focused on Arthritis and Volume (thermodynamics), with related work in Real-time computing, Reinforcement learning, Biogenesis. Notable publications include 'Distributed Signal Control of Arterial Corridors Using Multi-Agent Deep Reinforcement Learning', 'The biogenesis, mechanism and function of the tRNA-derived small RNA (tsRNA): a review compared with microRNA', and 'Real-time estimation of pedestrian volume at button-activated midblock crosswalks using traffic controller event-based data'.
VEMLAN: Imputing missing data for failed freeway traffic sensors
Activation of the NF-κB signaling pathway by Reynoutria japonica Houtt ameliorates complete Freund’s adjuvant-induced arthritis in rats
Large-Scale Freeway Traffic Flow Estimation Using Crowdsourced Data: A Case Study in Arizona
Machine-learning approach for estimating passenger car equivalent factors using crowdsourced data
The biogenesis, mechanism and function of the tRNA-derived small RNA (tsRNA): a review compared with microRNA.
PubMed 2023cited by 31position: middle
Transit Arrival Time Prediction Using Interaction Networks
Distributed Signal Control of Arterial Corridors Using Multi-Agent Deep Reinforcement Learning
Real-time estimation of pedestrian volume at button-activated midblock crosswalks using traffic controller event-based data
PSTPIP2 attenuates joint damage and suppresses inflammation in adjuvant-induced arthritis
Volume Estimation using Traffic Signal Event-Based Data from Video-Based Sensors