Houqing Wang
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Faculty Researcher
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Biography and Research Information
OverviewAI-generated summary
Houqing Wang's research focuses on power electronics, particularly transformerless single-phase grid-tied inverters for photovoltaic (PV) systems. Wang has investigated novel topologies and control strategies to reduce voltage ripple and improve efficiency in these systems. Publications include work on dual buck and boost transformer-less inverters and MOSFET-switch-based designs. Additionally, Wang has explored materials science, including the development of self-healing dielectric composites using carbon nanotubes and organic dielectric fillers for PVDF-based composites. Wang's scholarly output includes 56 publications, with 431 citations, and an h-index of 10. Collaborations include Hui Cao, Muhammad Fasih Uddin, Zhuxuan Ma, and Liyang Du, all from the University of Arkansas at Fayetteville.
Metrics
- h-index: 10
- Publications: 56
- Citations: 431
Selected Publications
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State of Charging Attack Detection Using Multi-scale Feature Extraction and Attention Mechanism (2026)
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A Novel Single Phase Single-Inductor Buck/Boost Inverter with Leakage Current Suppression Capability (2025)
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A Novel Transformerless Single-Stage Single-Inductor Buck-Boost Inverter with Leakage Current Suppression Capability (2025)
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Simplified Finite Control Set Model Predictive Control Strategy Based on Support Vector Machine (2025)
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A Single-Phase Common Ground Rectifier with Power Decoupling Ability (2025)
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A Single-Stage Bridgeless Buck-Boost PFC Converter with Two-Terminal Outputs (2025)
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A Weighting Factor Design of Model Predictive Control for LCL-Type Grid-Connected Inverter Based on PSO and RBFNN Algorithms (2025)
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A Three-Terminal Output AC/DC Converter With Automatic Power Decoupling and Common Ground (2024)
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Design and Implementation of a High-Voltage Output Active Clamp Flyback Converter (2024)
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A Novel Single-Stage Single-Phase Transformerless Grid-Connected Photovoltaic Inverter (2024)
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Coupled-Inductor-Based Buck-Boost Inverter with Leakage Current Suppression Capability (2024)
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Virtual Oscillator-Controlled Inverters with Adaptive Virtual Inertia and Damping to Support Frequency Stability (2024)
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A Novel LLC-AHB Converter to Achieve Wide Voltage Gain (2024)
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New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter (2024)
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Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System (2024)
Collaboration Network
Top Collaborators
- Topology Review of Transformerless Single-Phase Common-Ground Converters: Rectifiers
- Virtual Oscillator-Controlled Inverters with Adaptive Virtual Inertia and Damping to Support Frequency Stability
- Coupled-Inductor-Based Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Single-Stage Single-Phase Transformerless Grid-Connected Photovoltaic Inverter
- A Novel Transformer-less Buck-Boost Inverter with Coupled Inductor for Photovoltaic Systems
Showing 5 of 13 shared publications
- Topology Review of Transformerless Single-Phase Common-Ground Converters: Rectifiers
- Virtual Oscillator-Controlled Inverters with Adaptive Virtual Inertia and Damping to Support Frequency Stability
- Coupled-Inductor-Based Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Single-Stage Single-Phase Transformerless Grid-Connected Photovoltaic Inverter
- A Novel Transformer-less Buck-Boost Inverter with Coupled Inductor for Photovoltaic Systems
Showing 5 of 8 shared publications
- Topology Review of Transformerless Single-Phase Common-Ground Converters: Rectifiers
- Virtual Oscillator-Controlled Inverters with Adaptive Virtual Inertia and Damping to Support Frequency Stability
- Coupled-Inductor-Based Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Single-Stage Single-Phase Transformerless Grid-Connected Photovoltaic Inverter
- A Novel Transformer-less Buck-Boost Inverter with Coupled Inductor for Photovoltaic Systems
Showing 5 of 7 shared publications
- Topology Review of Transformerless Single-Phase Common-Ground Converters: Rectifiers
- Coupled-Inductor-Based Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Transformer-less Buck-Boost Inverter with Coupled Inductor for Photovoltaic Systems
- A Three-Terminal Output AC/DC Converter With Automatic Power Decoupling and Common Ground
- A Single-Phase Common Ground Rectifier with Power Decoupling Ability
Showing 5 of 6 shared publications
- Virtual Oscillator-Controlled Inverters with Adaptive Virtual Inertia and Damping to Support Frequency Stability
- A Novel Single-Stage Single-Phase Transformerless Grid-Connected Photovoltaic Inverter
- A Weighting Factor Design of Model Predictive Control for LCL-Type Grid-Connected Inverter Based on PSO and RBFNN Algorithms
- A Single-Stage Bridgeless Buck-Boost PFC Converter with Two-Terminal Outputs
- Simplified Finite Control Set Model Predictive Control Strategy Based on Support Vector Machine
- A Single-Stage Bridgeless Buck-Boost PFC Converter with Two-Terminal Outputs
- A Single-Phase Common Ground Rectifier with Power Decoupling Ability
- Simplified Finite Control Set Model Predictive Control Strategy Based on Support Vector Machine
- A Novel Transformerless Single-Stage Single-Inductor Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Single Phase Single-Inductor Buck/Boost Inverter with Leakage Current Suppression Capability
- A Single-Phase Common Ground Rectifier with Power Decoupling Ability
- Simplified Finite Control Set Model Predictive Control Strategy Based on Support Vector Machine
- A Novel Transformerless Single-Stage Single-Inductor Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Single Phase Single-Inductor Buck/Boost Inverter with Leakage Current Suppression Capability
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- Optimization of Integrated Inductors for Wireless Power Transfer Applications
- New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- Optimization of Integrated Inductors for Wireless Power Transfer Applications
- New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter
- A Three-Terminal Output AC/DC Converter With Automatic Power Decoupling and Common Ground
- A Novel Transformerless Single-Stage Single-Inductor Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Single Phase Single-Inductor Buck/Boost Inverter with Leakage Current Suppression Capability
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- Optimization of Integrated Inductors for Wireless Power Transfer Applications
- Coupled-Inductor-Based Buck-Boost Inverter with Leakage Current Suppression Capability
- A Novel Transformer-less Buck-Boost Inverter with Coupled Inductor for Photovoltaic Systems
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter
- A Novel Single-Stage Single-Phase Transformerless Grid-Connected Photovoltaic Inverter
- A Single-Stage Bridgeless Buck-Boost PFC Converter with Two-Terminal Outputs
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