A Generic Inertial-Response Preserved Active-Damping Control for Grid-Forming Inverters Emulating Synchronous Machines

IF 7.2 1区 工程技术 Q1 AUTOMATION & CONTROL SYSTEMS IEEE Transactions on Industrial Electronics Pub Date : 2024-11-01 DOI:10.1109/TIE.2024.3481992
Yun Yu;Yajuan Guan;Wenfa Kang;Juan C. Vasquez;Josep M. Guerrero
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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.
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用于仿同步电机并网逆变器的通用惯性响应保留有源阻尼控制装置
主动维持系统频率和电压,电网形成(GFM)逆变器嵌入同步机仿真可能会表现出与电网中其他电压源的相互作用,导致不良阻尼功率振荡。为了增强振动的阻尼,人们进行了大量的研究。然而,现有的解决方案有时彼此隐式等效,或者主要集中在GFM控制的单个性能方面。在本文中,首先提出了一种通用的控制方案,能够结合已建立的GFM控制。然后,开发了两种设计方法,同时考虑了GFM控制的主要性能方面:参考跟踪、干扰阻尼和惯性响应。采用开发的控制方案和设计方法,可以按顺序定量评估三个主要性能方面,同时保持与各自指标的显式关系。最后,2.2 kW GFM逆变器的实验结果验证了主动阻尼控制、设计方法和理论分析的有效性。
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来源期刊
IEEE Transactions on Industrial Electronics
IEEE Transactions on Industrial Electronics 工程技术-工程:电子与电气
CiteScore
16.80
自引率
9.10%
发文量
1396
审稿时长
6.3 months
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.
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