Haiyuan Gui

Orcid: 0000-0002-8354-0170

According to our database1, Haiyuan Gui authored at least 13 papers between 2023 and 2025.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

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Bibliography

2025
Multi-Agent DRL-Based Large-Scale Heterogeneous Task Offloading for Dynamic IoT Systems.
IEEE Trans. Netw. Sci. Eng., 2025

GraspFast: Multi-stage lightweight 6-DoF grasp pose fast detection with RGB-D image.
Pattern Recognit., 2025

UAV-IRS-assisted energy harvesting for edge computing based on deep reinforcement learning.
Future Gener. Comput. Syst., 2025

Energy-efficient collaborative task offloading in multi-access edge computing based on deep reinforcement learning.
Ad Hoc Networks, 2025

DDQN-based online computation offloading and application caching for dynamic edge computing service management.
Ad Hoc Networks, 2025

2024
HCMMNet: Hierarchical Conv-MLP-Mixed Network for Medical Image Segmentation in Metaverse for Consumer Health.
IEEE Trans. Consumer Electron., February, 2024

Multi-mobile vehicles task offloading for vehicle-edge-cloud collaboration: A dependency-aware and deep reinforcement learning approach.
Comput. Commun., January, 2024

TSCNet: Topology and semantic co-mining node representation learning based on direct perception strategy.
Knowl. Based Syst., 2024

An efficient scheduling scheme for intelligent driving tasks in a novel vehicle-edge architecture considering mobility and load balancing.
Future Gener. Comput. Syst., 2024

An intelligent task offloading method based on multi-agent deep reinforcement learning in ultra-dense heterogeneous network with mobile edge computing.
Comput. Networks, 2024

Device-Edge-Cloud Collaborative Video Stream Processing and Scheduling Strategy Based on Deep Reinforcement Learning.
Proceedings of the Wireless Artificial Intelligent Computing Systems and Applications, 2024

2023
Cross-domain policy adaptation with dynamics alignment.
Neural Networks, October, 2023

A Stackelberg game scheme for pricing and task offloading based on idle node-assisted edge computational model.
Simul. Model. Pract. Theory, April, 2023


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