Mingzhu Zhou
Orcid: 0000-0001-7450-7873
  According to our database1,
  Mingzhu Zhou
  authored at least 13 papers
  between 2016 and 2025.
  
  
Collaborative distances:
Collaborative distances:
Timeline
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Bibliography
  2025
A Three-Winding Coupled-Inductor High-Voltage-Gain Soft-Switching DC-DC Converter With Bipolar Outputs.
    
  
    IEEE Trans. Ind. Electron., October, 2025
    
  
Unsupervised video object segmentation with mask transformer: boosting accuracy and efficiency through feature fusion.
    
  
    Vis. Comput., August, 2025
    
  
An Interoperable Receiver With Reconfigurable LCC Compensation for Wireless Charging of 400- and 800-V Batteries in Electric Vehicles.
    
  
    IEEE Trans. Ind. Electron., August, 2025
    
  
  2024
A novel bipolar coil structure with high interoperability performance for electric vehicle wireless charging systems.
    
  
    Int. J. Circuit Theory Appl., December, 2024
    
  
A zero-input-current-ripple high-voltage-gain DC-DC converter with integrated Y-source network.
    
  
    Int. J. Circuit Theory Appl., October, 2024
    
  
An Integrated Electric Vehicle Charging System of Wireless Power Transfer and Auxiliary Power Module With Shared Converter and Magnetic Coupler.
    
  
    IEEE Trans. Ind. Electron., September, 2024
    
  
Combination of three-coil and LCC-S structures for misalignment tolerance in wireless charging system with load-independent output.
    
  
    Int. J. Circuit Theory Appl., May, 2024
    
  
A Novel Asymmetrical Quadrupolar Coil for Interoperability of Unipolar, Bipolar, and Quadrupolar Coils in Electric Vehicle Wireless Charging Systems.
    
  
    IEEE Trans. Ind. Electron., April, 2024
    
  
Using a Reconfigurable Bipolar Coil Structure as a Relay Coil for Cross Coupling Elimination and Interoperability of Wireless Power Transfer.
    
  
    IEEE Trans. Instrum. Meas., 2024
    
  
Study on Interoperability and Misalignment Tolerance of Electric Vehicle Wireless Charging System Based on a Novel Asymmetrical Bipolar Coil.
    
  
    IEEE Access, 2024
    
  
  2022
Soft Switching High Voltage Gain Quasi-Z-Source DC-DC Converter With Switched-Capacitor Technique.
    
  
    IEEE Trans. Ind. Electron., 2022
    
  
  2017
    Multim. Tools Appl., 2017
    
  
  2016