Mingwei Ren

Date:2026-08-19View:

Name:

Mingwei Ren

Position and Technical Title:

Associate Professor

Research Areas:

Renewable Energy Technology

Graduate Admission Professions:

Electronic Engineering

E-mail:

mwren@ujs.edu.cn

Corresponding Address:

Faculty of Low-Altitude Economy,Jiangsu University,No.301,Xuefu Road,Zhenjiang,Jiangsu Province(212013)


Education and Work Experience

1998/09-2001/07,Mechatronics and Automation,School of Mechanical Engineering,Jiangsu University,Master

2002/09–2005/07,Agricultural Electrification and Automation,School of Electrical and Information Engineering,Jiangsu University,Doctor

2006/03-2010,School of Electrical and Information Engineering,Jiangsu University,Lecturer

2010,School of Electrical and Information Engineering,Jiangsu University,Associate Professor


Teaching Courses

Renewable Energy Technologies for Rural Power Generation

Electrotechnics and Electronics


Academic Research Topic

National Natural Science Foundation of China (NSFC): Analysis and Synthesis of Saturated Descriptor Linear Systems

Specialized Research Fund for the Doctoral Program of Higher Education of China(SRFDP): Analysis and Synthesis of Descriptor Linear Systems with State Saturation


Academic Publications

1. A Coordinated Multi‑Loop Control Strategy for Fault Ride‑Trough in Grid‑Forming Converters, Energy Engineering 123(2026).

2. Dynamic Power Decoupling Control of Virtual Synchronous Generator Based on Improved Virtual Impedance, Power Generation Technology 46(2025).

3. Low voltage ride through control strategy for virtual synchronous generators based on virtual self inductive fux linkage, Journal of Power Electronics 21(2021).

4. A virtual inertial control strategy for bidirectional interface converters in hybrid microgrid, Electrical Power and Energy Systems 153(2023).

5. Coordinated Control Strategy of Virtual Synchronous Generator Based on Adaptive Moment of Inertia and Virtual Impedance, IEEE Journal on Emerging and Selected Topics in Circuits and Systems 11(2021).

6. Voltage Control of Virtual Synchronous Generator Based on Generalized Integral Extended State Observer, Electric Power Science and Engineering 37(2021).

7.A Novel Switched‑Inductor Quasi‑Z‑Source Inverter for Photovoltaic Grid‑Connected Applications, Power Electronics 54(2020).

8. Dynamic Power Decoupling Control of Virtual Synchronous Generator Based on Improved Virtual Impedance, Power Generation Technology 46(2025)

9. Electrical and Electronic Engineering Practical Training Technology,China Machine Press(2017)

10.A Switched‑Inductor Quasi‑Z‑Source Inverter with High Output Voltage Gain, China, CN110165921A(2020)

11.A Low‑Voltage Ride‑Through Control Method Based on Compensated Armature Winding Virtual Inductance, China, CN110176780B(2019)