基于成网逆变器控制的高压直流并网离岸微电网集群电力共享与稳定保障

Faria Kamal, Prithwiraj Roy Chowdhury, B. Chowdhury, M. Manjrekar
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引用次数: 1

摘要

本文主要研究与多端高压直流(HVDC)连接的海上微电网(MGs)之间的准确电力共享和稳定维护。包含三个交流微电网的MG集群连接到高压直流系统的四个终端之一。集群中的每个MG都配备了多个海洋水动力(MHK)源和一个电池储能(BES)来为其负载服务。本文提出了一种基于P-V下垂的栅格成形(GFM)逆变器控制技术,应用于BES变流器,使并联的栅格在电网停电时既能独立运行,又能协同运行。在PSCAD中进行了仿真,以证明所提出的控制系统的暂态稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Sharing and Stability Assurance using Grid Forming Inverter Control in HVDC Connected Offshore Microgrid Cluster
This paper focuses on accurate power-sharing and maintaining stability among offshore microgrids (MGs) connected to a multi-terminal High Voltage DC (HVDC). The MG cluster containing three AC micro grids is connected to one of the four terminals of the HVDC system. Each MG in the cluster is equipped with multiple Marine Hydrokinetic (MHK) sources and a battery energy storage (BES) which serve its loads. This paper proposes a P-V droop-based Grid Forming (GFM) inverter control technology applied to the BES converter, enabling the parallel-connected MGs to operate independently as well as cooperatively at the time of grid outage. Simulations performed in PSCAD are presented to demonstrate the transient stability of the system with the proposed controls.
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