Yushi Yang
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Also affiliated: Kunming University of Science and Technology (2023); Anhui University (2021); Purdue University West Lafayette (2011–2012); Sichuan University (2021–2022); Dalian University of Technology (2019–2024); University of Bristol (2023–2025); Integrated Device Technology (United States) (2017); University of Oxford (2024–2025); State Key Laboratory of Structural Analysis for Industrial Equipment (2019); Stanford University (2014–2022)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Yushi Yang's research focuses on the development and analysis of microelectromechanical systems (MEMS) and related sensor technologies. His work has explored bifurcation-based mass sensing using piezoelectrically-actuated microcantilevers and has involved modeling, analysis, and experimental validation of these microsensors. Yang has also investigated analytical solutions for the free vibration of cylindrical shell panels using Hamiltonian systems. His research interests extend to MEMS resonators, including their application in timing products and the on-chip ovenization of encapsulated disk resonator gyroscopes. He has also studied the electrostatic tuning of the temperature coefficient of frequency in anisotropic disk-shaped resonators and the implementation of compact roll-pitch-yaw gyroscopes using wafer-level encapsulation processes. More recently, Yang has investigated fault diagnosis for wind turbine generators utilizing stacking integration algorithms and adaptive thresholds. He has 32 publications with an h-index of 10 and 446 citations. Yang has collaborated with Hui Cao, Zhuxuan Ma, Muhammad Fasih Uddin, and Yue Zhao, all from the University of Arkansas at Fayetteville.
Metrics
- h-index: 10
- Publications: 31
- Citations: 450
Selected Publications
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Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances (2026)
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100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification (2026)
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Soft Switching Inverter Design for Electrical Motors with Significant Parasitic Capacitances (2025)
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Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field (2025)
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Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System (2024)
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DC-link Voltages Digital Sampling for Cascaded H-Bridge Rectifiers with Single Voltage Sensor under Hierarchical Model Predictive Control (2024)
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A Multi-objective Design Optimization Method for Auxiliary Resonant Commutated Pole Inverter (2024)
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Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range (2024)
Collaboration Network
Top Collaborators
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- A Multi-objective Design Optimization Method for Auxiliary Resonant Commutated Pole Inverter
- Soft Switching Inverter Design for Electrical Motors with Significant Parasitic Capacitances
- DC-link Voltages Digital Sampling for Cascaded H-Bridge Rectifiers with Single Voltage Sensor under Hierarchical Model Predictive Control
Showing 5 of 6 shared publications
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- A Multi-objective Design Optimization Method for Auxiliary Resonant Commutated Pole Inverter
- Soft Switching Inverter Design for Electrical Motors with Significant Parasitic Capacitances
- 100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification
- Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- DC-link Voltages Digital Sampling for Cascaded H-Bridge Rectifiers with Single Voltage Sensor under Hierarchical Model Predictive Control
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- A Multi-objective Design Optimization Method for Auxiliary Resonant Commutated Pole Inverter
- Soft Switching Inverter Design for Electrical Motors with Significant Parasitic Capacitances
- 100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification
- Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances
- Soft Switching Inverter Design for Electrical Motors with Significant Parasitic Capacitances
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- 100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification
- Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- A Multi-objective Design Optimization Method for Auxiliary Resonant Commutated Pole Inverter
- 100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification
- Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- A Multi-objective Design Optimization Method for Auxiliary Resonant Commutated Pole Inverter
- Soft Switching Inverter Design for Electrical Motors with Significant Parasitic Capacitances
- A Multi-objective Design Optimization Method for Auxiliary Resonant Commutated Pole Inverter
- Soft Switching Inverter Design for Electrical Motors with Significant Parasitic Capacitances
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- 100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification
- Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances
- 100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification
- Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances
- 100kW 3-phase ARCP soft switched SiC (S2SiC) inverter - design and in-lab test verification
- Robust Soft-Switching Inverter Design for Electric Motors With Significant Parasitic Capacitances
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
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