Xiaotian Dai

Orcid: 0000-0002-6669-5234

Affiliations:
  • University of York, UK (PhD 2018)


According to our database1, Xiaotian Dai authored at least 25 papers between 2017 and 2024.

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

Timeline

Legend:

Book 
In proceedings 
Article 
PhD thesis 
Dataset
Other 

Links

Online presence:

On csauthors.net:

Bibliography

2024
Context-Aware Graceful Degradation for Mixed-Criticality Scheduling in Autonomous Systems.
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., March, 2024

2023
NPRC-I/O: An NoC-Based Real-Time I/O System With Reduced Contention and Enhanced Predictability.
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., December, 2023

reTSN: Resilient and Efficient Time-Sensitive Network for Automotive In-Vehicle Communication.
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., March, 2023

A High-Resilience Imprecise Computing Architecture for Mixed-Criticality Systems.
IEEE Trans. Computers, 2023

Reducing Loss of Service for Mixed-Criticality Systems through Cache- and Stress-Aware Scheduling.
Proceedings of the 31st International Conference on Real-Time Networks and Systems, 2023

Cache-Aware Allocation of Parallel Jobs on Multi-cores based on Learned Recency.
Proceedings of the 31st International Conference on Real-Time Networks and Systems, 2023

Graceful Degradation with Condition- and Inference-Awareness for Mixed-Criticality Scheduling in Autonomous Systems.
Proceedings of Cyber-Physical Systems and Internet of Things Week 2023, 2023

Many-Core Real-Time Network-on-Chip I/O Systems for Reducing Contention and Enhancing Predictability.
Proceedings of Cyber-Physical Systems and Internet of Things Week 2023, 2023

2022
DAG Scheduling and Analysis on Multi-Core Systems by Modelling Parallelism and Dependency.
IEEE Trans. Parallel Distributed Syst., 2022

Toward an Analysable, Scalable, Energy-Efficient I/O Virtualization for Mixed-Criticality Systems.
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., 2022

Using Digital Twins in the Development of Complex Dependable Real-Time Embedded Systems.
Proceedings of the Leveraging Applications of Formal Methods, Verification and Validation. Practice, 2022

Discretization and Stabilization of Energy-Based Controller for Period Switching Control and Flexible Scheduling.
Proceedings of the American Control Conference, 2022

2021
Line-Circle-Square (LCS): A multilayered geometric filter for edge-based detection.
Robotics Auton. Syst., 2021

HIART-MCS: High Resilience and Approximated Computing Architecture for Imprecise Mixed-Criticality Systems.
Proceedings of the 42nd IEEE Real-Time Systems Symposium, 2021

Brief Industry Paper: Digital Twin for Dependable Multi-Core Real-Time Systems - Requirements and Open Challenges.
Proceedings of the 27th IEEE Real-Time and Embedded Technology and Applications Symposium, 2021

2020
Period adaptation of real-time control tasks with fixed-priority scheduling in cyber-physical systems.
J. Syst. Archit., 2020

DAG Scheduling and Analysis on Multiprocessor Systems: Exploitation of Parallelism and Dependency.
Proceedings of the 41st IEEE Real-Time Systems Symposium, 2020

Fixed-Priority Scheduling and Controller Co-Design for Time-Sensitive Networks.
Proceedings of the IEEE/ACM International Conference On Computer Aided Design, 2020

All In One Network for Driver Attention Monitoring.
Proceedings of the 2020 IEEE International Conference on Acoustics, 2020

Timing-Accurate General-Purpose I/O for Multi- and Many-Core Systems: Scheduling and Hardware Support.
Proceedings of the 57th ACM/IEEE Design Automation Conference, 2020

2019
A Dual-Mode Strategy for Performance-Maximisation and Resource-Efficient CPS Design.
ACM Trans. Embed. Comput. Syst., 2019

Model based system assurance using the structured assurance case metamodel.
J. Syst. Softw., 2019

MCS-IOV: Real-Time I/O Virtualization for Mixed-Criticality Systems.
Proceedings of the IEEE Real-Time Systems Symposium, 2019

2018
Flexible and adaptive real-time task scheduling in Cyber-Physical Control Systems.
PhD thesis, 2018

2017
Predicting Worst-Case Execution Time Trends in Long-Lived Real-Time Systems.
Proceedings of the Reliable Software Technologies - Ada-Europe 2017, 2017


  Loading...