Vinson Jones
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Role not yet determined Is this you? Add your title
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Vinson Jones' research focuses on power electronics and electrical engineering, with a specific emphasis on the construction and testing of high-voltage, high-capacity electrical systems. His recent publication details the development of a 13.8 kV, 750 kVA 3-phase current compensator utilizing modular switching positions. Jones has authored 13 publications with 108 citations, and his work has an h-index of 6. He has collaborated with fellow University of Arkansas at Fayetteville faculty members Ahmed Rahouma and Juan Carlos Balda on shared publications. Jones remains an active researcher, with his most recent publication dating to 2021.
Metrics
- h-index: 5
- Publications: 12
- Citations: 98
Selected Publications
-
Construction and Testing of a 13.8 kV, 750 kVA 3-Phase Current Compensator Using Modular Switching Positions (2021)
-
The Impact of a Current Imbalance Compensator on Feeder Compensation Equipment Operation (2020)
-
A Modular Switching Position With Voltage-Balancing and Self-Powering for Series Device Connection (2020)
-
A Hybrid Snubber for Voltage-Balancing and Self-Powering of Series-Connected Devices (2019)
-
Current Compensators for Unbalanced Electric Distribution Systems (2018)
-
Analysis of a Grid-Connected Shoot-Through Current Immune Three-Phase Converter Topoloy under Unbalanced Loading Conditions (2018)
-
A New SST Topology Comprising Boost Three-Level AC/DC Converters for Applications in Electric Power Distribution Systems (2017)
-
Correcting current imbalances in three-phase four-wire distribution systems (2016)
-
Resonance propagation of ac filters in a large-scale microgrid (2015)
-
Design of a GaN-based microinverter for photovoltaic systems (2014)
Collaboration Network
Top Collaborators
- A New SST Topology Comprising Boost Three-Level AC/DC Converters for Applications in Electric Power Distribution Systems
- A Modular Switching Position With Voltage-Balancing and Self-Powering for Series Device Connection
- Design of a GaN-based microinverter for photovoltaic systems
- Correcting current imbalances in three-phase four-wire distribution systems
- A Hybrid Snubber for Voltage-Balancing and Self-Powering of Series-Connected Devices
Showing 5 of 10 shared publications
- A Hybrid Snubber for Voltage-Balancing and Self-Powering of Series-Connected Devices
- Construction and Testing of a 13.8 kV, 750 kVA 3-Phase Current Compensator Using Modular Switching Positions
- Current Compensators for Unbalanced Electric Distribution Systems
- Analysis of a Grid-Connected Shoot-Through Current Immune Three-Phase Converter Topoloy under Unbalanced Loading Conditions
- A New SST Topology Comprising Boost Three-Level AC/DC Converters for Applications in Electric Power Distribution Systems
- Design of a GaN-based microinverter for photovoltaic systems
- A New SST Topology Comprising Boost Three-Level AC/DC Converters for Applications in Electric Power Distribution Systems
- Design of a GaN-based microinverter for photovoltaic systems
- A Modular Switching Position With Voltage-Balancing and Self-Powering for Series Device Connection
- Construction and Testing of a 13.8 kV, 750 kVA 3-Phase Current Compensator Using Modular Switching Positions
- Resonance propagation of ac filters in a large-scale microgrid
- Resonance propagation of ac filters in a large-scale microgrid
- Resonance propagation of ac filters in a large-scale microgrid
- Resonance propagation of ac filters in a large-scale microgrid
- Design of a GaN-based microinverter for photovoltaic systems
- Design of a GaN-based microinverter for photovoltaic systems
- A New SST Topology Comprising Boost Three-Level AC/DC Converters for Applications in Electric Power Distribution Systems
- Construction and Testing of a 13.8 kV, 750 kVA 3-Phase Current Compensator Using Modular Switching Positions
Similar Researchers
Based on overlapping research topics