Research Areas
Biography and Research Information
OverviewAI-generated summary
Zhiyao He's research investigates advancements in network security and data management. Current work includes developing programmable network approaches for the resilience and security of Phasor Measurement Unit (PMU) networks. This involves designing in-network solutions for PMU missing data recovery utilizing data plane programmability. He also researches blockchain-based propagation algorithms for IP tags, employing local random walk methods within big data marketing contexts. Additionally, his work explores the computational potential of tesla valves for filtering and sorting microscale active swimmers.
He has collaborated with researchers at the University of Arkansas at Fayetteville, including Yanfeng Qu and Ariel Rogers, on multiple shared publications. His scholarship metrics include an h-index of 2, with 8 total publications and 7 total citations.
Metrics
- h-index: 3
- Publications: 8
- Citations: 12
Selected Publications
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Programmable Data Plane Approaches for ML-Based Anomalous Event Classification in Grid Sensor Networks (2026)
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Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing (2026)
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Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing (2026)
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Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing (2026)
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Programmable Network Approaches to Resilience and Security in Phasor Measurement Unit Networks (2025)Journal of the Arkansas Academy of Science OpenAlex
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An In-Network Approach for PMU Missing Data Recovery with Data Plane Programmability (2025)
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Towards Secure and Resilient Synchrophasor Networks Using P4 Programmable Switches (2024)
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Exploring the potential of tesla valve for filtering and sorting microscale active swimmers: A computational study (2023)
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Exploring the Potential of Tesla Valve for Filtering and Sorting Microscale Active Swimmers: A Computational Study (2023)
Collaboration Network
Top Collaborators
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Exploring the potential of tesla valve for filtering and sorting microscale active swimmers: A computational study
- Exploring the Potential of Tesla Valve for Filtering and Sorting Microscale Active Swimmers: A Computational Study
- Exploring the potential of tesla valve for filtering and sorting microscale active swimmers: A computational study
- Exploring the Potential of Tesla Valve for Filtering and Sorting Microscale Active Swimmers: A Computational Study
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Research and Design of Blockchain-based Propagation Algorithm for IP Tags Using Local Random Walk in Big Data Marketing
- Towards Secure and Resilient Synchrophasor Networks Using P4 Programmable Switches
- Towards Secure and Resilient Synchrophasor Networks Using P4 Programmable Switches
- Towards Secure and Resilient Synchrophasor Networks Using P4 Programmable Switches
- Towards Secure and Resilient Synchrophasor Networks Using P4 Programmable Switches
- Towards Secure and Resilient Synchrophasor Networks Using P4 Programmable Switches
- An In-Network Approach for PMU Missing Data Recovery with Data Plane Programmability
- An In-Network Approach for PMU Missing Data Recovery with Data Plane Programmability
- An In-Network Approach for PMU Missing Data Recovery with Data Plane Programmability
- An In-Network Approach for PMU Missing Data Recovery with Data Plane Programmability
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