World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
82
Citations
23996
World Ranking
464
National Ranking
73

Research.com Recognitions

  • 2016 - IEEE Fellow For contributions to switching-mode power converter topologies and modulation strategies

Overview

Xinbo Ruan is affiliated with Nanjing University of Aeronautics and Astronautics in China. Their research spans various aspects of electrical engineering with a particular focus on power electronics and converter systems.

Their recent published papers include the following:

  • A Review of Voltage/Current Sharing Techniques for Series-Parallel-Connected Modular Power Conversion Systems, 2020, IEEE Transactions on Power Electronics
  • An Input-Series-Output-Parallel Converter System Exhibiting Natural Input-Voltage Sharing and Output-Current Sharing, 2020, IEEE Transactions on Industrial Electronics
  • Multi resonant Component-Based Grid-Voltage-Weighted Feedforward Scheme for Grid-Connected Inverter to Suppress the Injected Grid Current Harmonics Under Weak Grid, 2020, IEEE Transactions on Power Electronics
  • Hybrid Active Damping Combining Capacitor Current Feedback and Point of Common Coupling Voltage Feedforward for LCL-Type Grid-Connected Inverter, 2020, IEEE Transactions on Power Electronics
  • A Robust Grid-Voltage Feedforward Scheme to Improve Adaptability of Grid-Connected Inverter to Weak Grid Condition, 2020, IEEE Transactions on Power Electronics

Xinbo Ruan has collaborated frequently with several co-authors:

  • Xinze Huang (23 joint publications)
  • Fei Liu (22 joint publications)
  • Shiqi Kan (19 joint publications)
  • Yuying He (18 joint publications)
  • Xuehua Wang (15 joint publications)

The main publication venues for Xinbo Ruan's work are:

  • IEEE Transactions on Power Electronics (49 publications)
  • IEEE Transactions on Industrial Electronics (19 publications)
  • IEEE Journal of Emerging and Selected Topics in Power Electronics (10 publications)
  • IEEE Open Journal of the Industrial Electronics Society (2 publications)
  • 2021 IEEE Workshop on Wide Bandgap Power Devices and Applications in Asia (WiPDA Asia) (2 publications)

Xinbo Ruan has also published books with Springer Nature, including:

  • Conducted Electromagnetic Interference in Power Converters: Modeling, Prediction and Reduction (2024)
  • Second Harmonic Current Reduction Techniques for Single-Phase Power Electronics Converter Systems (2022)

Their main fields of study cover engineering broadly, with specific focus areas in:

  • Electrical and Electronic Engineering (237 publications)
  • Control and Systems Engineering (58 publications)
  • Mechanical Engineering (12 publications)
  • Renewable Energy, Sustainability and the Environment (6 publications)
  • Energy Engineering and Power Technology (6 publications)

Key research topics addressed in their work include:

  • Advanced DC-DC Converters (134 publications)
  • Multilevel Inverters and Converters (114 publications)
  • Microgrid Control and Optimization (104 publications)
  • Islanding Detection in Power Systems (42 publications)
  • HVDC Systems and Fault Protection (38 publications)
  • Electromagnetic Compatibility and Noise Suppression (32 publications)
  • Silicon Carbide Semiconductor Technologies (26 publications)

In 2016, Xinbo Ruan was named an IEEE Fellow for contributions to switching-mode power converter topologies and modulation strategies.

Best Publications

  • Capacitor-Current-Feedback Active Damping With Reduced Computation Delay for Improving Robustness of LCL-Type Grid-Connected Inverter

    Donghua Pan;Xinbo Ruan;Chenlei Bao;Weiwei Li

  • Small-Signal Modeling and Parameters Design for Virtual Synchronous Generators

    Heng Wu;Xinbo Ruan;Dongsheng Yang;Xinran Chen

  • Step-by-Step Controller Design for LCL-Type Grid-Connected Inverter with Capacitor–Current-Feedback Active-Damping

    Chenlei Bao;Xinbo Ruan;Xuehua Wang;Weiwei Li

  • Means of Eliminating Electrolytic Capacitor in AC/DC Power Supplies for LED Lightings

    Linlin Gu;Xinbo Ruan;Ming Xu;Kai Yao

  • An Improved Optimal Sizing Method for Wind-Solar-Battery Hybrid Power System

    Lin Xu;Xinbo Ruan;Chengxiong Mao;Buhan Zhang

  • A flicker-free electrolytic capacitor-less ac-dc LED driver

    Shu Wang;Xinbo Ruan;Kai Yao;Siew-Chong Tan

  • Impedance Shaping of the Grid-Connected Inverter with LCL Filter to Improve Its Adaptability to the Weak Grid Condition

    Dongsheng Yang;Xinbo Ruan;Heng Wu

  • Nonisolated High Step-Up DC–DC Converters Adopting Switched-Capacitor Cell

    Gang Wu;Xinbo Ruan;Zhihong Ye

  • A Method of Reducing the Peak-to-Average Ratio of LED Current for Electrolytic Capacitor-Less AC–DC Drivers

    Beibei Wang;Xinbo Ruan;Kai Yao;Ming Xu

  • DC/DC Conversion Systems Consisting of Multiple Converter Modules: Stability, Control, and Experimental Verifications

    Wu Chen;Xinbo Ruan;Hong Yan;C.K. Tse

  • A Hybrid Fuel Cell Power System

    Ke Jin;Xinbo Ruan;Mengxiong Yang;Min Xu

  • Full Feedforward of Grid Voltage for Grid-Connected Inverter With LCL Filter to Suppress Current Distortion Due to Grid Voltage Harmonics

    Xuehua Wang;Xinbo Ruan;Shangwei Liu;C K Tse

  • Synthesis of Multiple-Input DC/DC Converters

    Yan Li;Xinbo Ruan;Dongsheng Yang;Fuxin Liu

  • Fundamental Considerations of Three-Level DC–DC Converters: Topologies, Analyses, and Control

    Xinbo Ruan;Bin Li;Qianhong Chen;Siew-Chong Tan

  • Three-Level Bidirectional Converter for Fuel-Cell/Battery Hybrid Power System

    Ke Jin;Mengxiong Yang;Xinbo Ruan;Min Xu

  • Control Strategy for Input-Series–Output-Parallel Converters

    Xinbo Ruan;Wu Chen;Lulu Cheng;C.K. Tse

  • Analysis, Design, and Control of a Transcutaneous Power Regulator for Artificial Hearts

    Qianhong Chen;Siu Chung Wong;C.K. Tse;Xinbo Ruan

  • A Review of LED Drivers and Related Technologies

    Yijie Wang;J. Marcos Alonso;Xinbo Ruan

  • Hybrid Full-Bridge Three-Level LLC Resonant Converter—A Novel DC–DC Converter Suitable for Fuel-Cell Power System

    Ke Jin;Xinbo Ruan

  • Optimized Controller Design for $LCL$ -Type Grid-Connected Inverter to Achieve High Robustness Against Grid-Impedance Variation

    Donghua Pan;Xinbo Ruan;Chenlei Bao;Weiwei Li

  • Controller Design for LCL-Type Grid-Connected Inverter with Capacitor-Current-Feedback Active-Damping

    Xinbo Ruan;Xuehua Wang;Donghua Pan;Dongsheng Yang

Frequent Co-Authors

Chi K. Tse
Chi K. Tse City University of Hong Kong
Dongsheng Yang
Dongsheng Yang Eindhoven University of Technology
Siu-Chung Wong
Siu-Chung Wong Hong Kong Polytechnic University
Qing-Chang Zhong
Qing-Chang Zhong Illinois Institute of Technology
Henry Shu-Hung Chung
Henry Shu-Hung Chung City University of Hong Kong
Siew-Chong Tan
Siew-Chong Tan University of Hong Kong
Yan-Fei Liu
Yan-Fei Liu Queen's University
Frede Blaabjerg
Frede Blaabjerg Aalborg University
Adrian Ioinovici
Adrian Ioinovici Holon Institute of Technology
Xiongfei Wang
Xiongfei Wang Royal Institute of Technology

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