用于岛式交流微电网中分布式发电逆变器的改进型降压控制器

Q3 Computer Science
Mohamed Islam Grairia, Riad Toufouti
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引用次数: 0

摘要

岛屿微电网的稳定性对于分布式发电(DG)逆变器之间的高效功率分配至关重要。传统的降压控制虽然在功率共享方面很有效,但由于负载功率变化导致频率和电压偏差,给电压稳定性带来了挑战。这种偏差会导致系统不稳定,影响每个逆变器内的功率流。因此,本文提出了一种有效解决频率和电压偏差问题的下垂控制方法,旨在将频率和电压偏差恢复到额定值,并显著增强逆变器之间功率流的瞬态响应。新方法结合了频率和电压集成控制器,并利用了虚拟阻抗。这些虚拟阻抗包括基频虚拟正序/负序阻抗环路(VPI/VNI)和谐波频率虚拟谐波阻抗环路(VHI),在克服不匹配线路阻抗条件方面发挥了关键作用,最终提高了系统的整体性能。仿真结果表明,在孤岛交流微电网中并联运行的逆变器效果显著、性能卓越。无论负载条件如何变化,所提出的方法都能确保所有运行状态下的电压和频率水平保持稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Droop Controller for Distributed Generation Inverters in Islanded AC Microgrids
Stability in island microgrids is crucial for efficient power distribution among distributed generation (DG) inverters. Conventional droop control, while effective in power sharing, poses challenges with voltage stability due to frequency and voltage deviations resulting from changing load power. Such deviations can lead to system instability, impacting power flows within each inverter. Therefore, this paper introduces a proposed droop control approach that effectively tackles the issues of frequency and voltage deviation, aiming to restore them to their rated values and significantly enhance transient response in power flows among inverters. The novel method incorporates integrating controllers for frequency and voltage, coupled with the utilization of virtual impedances. These virtual impedances, comprising virtual positive/negative-sequence impedance (VPI/VNI) loops at the fundamental frequency and a virtual harmonic impedance (VHI) loop at harmonic frequencies, play a crucial role in overcoming mismatched line impedance conditions, ultimately improving overall system performance. Simulation results demonstrate the effectiveness and outstanding performance of inverters operating in parallel within an island AC microgrid. The proposed approach ensures stable voltage and frequency levels in all operational states, regardless of varying load conditions.
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来源期刊
Periodica polytechnica Electrical engineering and computer science
Periodica polytechnica Electrical engineering and computer science Engineering-Electrical and Electronic Engineering
CiteScore
2.60
自引率
0.00%
发文量
36
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of electrical engineering and informatics fitting into one of the following five Sections of the Journal: (i) Communication systems, networks and technology, (ii) Computer science and information theory, (iii) Control, signal processing and signal analysis, medical applications, (iv) Components, Microelectronics and Material Sciences, (v) Power engineering and mechatronics, (vi) Mobile Software, Internet of Things and Wearable Devices, (vii) Solid-state lighting and (viii) Vehicular Technology (land, airborne, and maritime mobile services; automotive, radar systems; antennas and radio wave propagation).
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