A Unified Droop-Free Distributed Secondary Control for Grid-Following and Grid-Forming Inverters in AC Microgrids

S. Mohiuddin, Junjian Qi
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引用次数: 6

Abstract

The inverter-based distributed generators (DGs) in microgrids usually operate in either grid-following (GFL) or grid-forming (GFM) control mode. In GFL mode the DG follows the voltage and frequency of the microgrid while in GFM mode it dictates voltage and frequency for the microgrid. In this paper, we propose a unified droop-free distributed secondary control for both GFL and GFM inverters based on distributed optimization. The proposed control regulates the frequency to nominal frequency, regulates the global average voltage in the microgrid to the rated voltage, and ensures accurate active and reactive power sharing among all GFL and GFM inverters. The DGs can communicate through a sparse communication network and share information about average voltage estimates and nominal active/reactive power. The effectiveness of the proposed control is validated through simulations on an eight-DG test microgrid with four GFL inverters and four GFM inverters.
交流微电网随网与成网逆变器统一无下垂分布式二次控制
微电网中基于逆变器的分布式发电机(dg)通常以随网(GFL)和成网(GFM)两种控制方式运行。在GFL模式下,DG跟随微电网的电压和频率,而在GFM模式下,DG指示微电网的电压和频率。本文提出了一种基于分布式优化的GFL和GFM逆变器统一无下垂分布式二次控制方法。该控制器将频率调节到标称频率,将微电网的全局平均电压调节到额定电压,并确保所有GFL和GFM逆变器之间准确的有功和无功共享。dg可以通过稀疏通信网络进行通信,共享平均电压估计和标称有功/无功功率信息。通过8 dg测试微电网中4台GFL逆变器和4台GFM逆变器的仿真验证了该控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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