Fangwei Ye

Orcid: 0000-0003-4675-2622

According to our database1, Fangwei Ye authored at least 16 papers between 2016 and 2024.

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

Timeline

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Links

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Bibliography

2024
Imitation Learning for Adaptive Video Streaming With Future Adversarial Information Bottleneck Principle.
IEEE Trans. Mob. Comput., December, 2024

Privacy-preserving location authentication for low-altitude UAVs: A blockchain-based approach.
Secur. Saf., 2024

2023
On the Privacy of Social Networks with Personal Privacy Choices.
Proceedings of the IEEE International Symposium on Information Theory, 2023

2022
Mechanisms for Hiding Sensitive Genotypes With Information-Theoretic Privacy.
IEEE Trans. Inf. Theory, 2022

Intermittent Private Information Retrieval With Application to Location Privacy.
IEEE J. Sel. Areas Commun., 2022

Secure Partially Collaborative Codes.
IEEE Commun. Lett., 2022

2021
ON-OFF Privacy in the Presence of Correlation.
IEEE Trans. Inf. Theory, 2021

ON-OFF Privacy Against Correlation Over Time.
IEEE Trans. Inf. Forensics Secur., 2021

2020
On Secure Exact-Repair Regenerating Codes With a Single Pareto Optimal Point.
IEEE Trans. Inf. Theory, 2020

2019
Preserving ON-OFF Privacy for Past and Future Requests.
Proceedings of the 2019 IEEE Information Theory Workshop, 2019

ON-OFF Privacy with Correlated Requests.
Proceedings of the IEEE International Symposium on Information Theory, 2019

2018
On a Simple Characterization of Secure Exact-repair Regenerating Codes.
Proceedings of the 2018 IEEE International Symposium on Information Theory, 2018

Locally Recoverable Coded Matrix Multiplication.
Proceedings of the 56th Annual Allerton Conference on Communication, 2018

2017
The Rate Region for Secure Distributed Storage Systems.
IEEE Trans. Inf. Theory, 2017

On independent distributed source coding problems with exact repair.
Proceedings of the 2017 IEEE Information Theory Workshop, 2017

2016
The rate region of secure exact-repair regenerating codes for 5 nodes.
Proceedings of the IEEE International Symposium on Information Theory, 2016


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