Yun Yu;Yajuan Guan;Wenfa Kang;Juan C. Vasquez;Josep M. Guerrero
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引用次数: 0
Abstract
Actively maintaining system frequency and voltage, grid-forming (GFM) inverters that embed a synchronous machine emulation may exhibit interactions with other voltage sources in the grid, leading to poorly-damped power oscillations. To enhance the damping of oscillations, massive studies have been conducted. However, the existing solutions are sometimes implicitly equivalent to one another or mainly concentrate on a single performance aspect of GFM control. In this article, a generic control scheme capable of incorporate established GFM controls is first proposed. Afterwards, two design approaches are developed, simultaneously considering main performance aspects of GFM control: reference tracking, disturbance damping, and inertial response. Employing the developed control scheme with design approaches, three main performance aspects can be quantitatively evaluated in sequence while maintaining explicit relationships with their own indexes. Finally, experimental results from a 2.2 kW GFM inverter have validated the effectiveness of the active-damping controls, design approaches, and theoretical analyses presented in this study.
期刊介绍:
Journal Name: IEEE Transactions on Industrial Electronics
Publication Frequency: Monthly
Scope:
The scope of IEEE Transactions on Industrial Electronics encompasses the following areas:
Applications of electronics, controls, and communications in industrial and manufacturing systems and processes.
Power electronics and drive control techniques.
System control and signal processing.
Fault detection and diagnosis.
Power systems.
Instrumentation, measurement, and testing.
Modeling and simulation.
Motion control.
Robotics.
Sensors and actuators.
Implementation of neural networks, fuzzy logic, and artificial intelligence in industrial systems.
Factory automation.
Communication and computer networks.