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系统并网技术 微电网 ★ 5.0

一种基于OPAL-RT实时仿真器的微电网中可再生能源分布式发电接口逆变器开路故障研究新方法

A Novel OPAL-RT Real-Time Simulator-Based Experimental Approach to Study Open-Switch Faults of Interfacing Inverters of Renewable Distributed Generation in Microgrids

作者 Xiaodong Liang · Muhammad Talha · Jason Pannell · Hanguang Su · Austin Bowes
期刊 IEEE Transactions on Industry Applications
出版日期 2025年1月
技术分类 系统并网技术
技术标签 微电网
相关度评分 ★★★★★ 5.0 / 5.0
关键词 微电网 分布式发电逆变器 开路故障 控制方案 故障诊断
语言:

中文摘要

摘要:随着可再生能源在配电网中渗透率的不断提高,微电网成为电网现代化的基本组成部分。可再生分布式发电(DG)单元通过配备先进控制方案的接口逆变器接入微电网,这些逆变器在微电网运行中起着至关重要的作用。然而,分布式发电接口逆变器可能会因各种故障而失效。本文利用实验室中的 Opal - RT 实时模拟器测试平台,对一台 2 千瓦的三相两电平传统电压源逆变器(VSI)进行了开关管开路故障的实验研究。在健康状态以及 21 种单开关管和多开关管开路故障条件下,分别实施了三种电网形成逆变器控制方案(下垂控制、虚拟同步发电机(VSG)控制以及带模糊二次控制器的 VSG 控制)。测试中还设置了五种逆变器负载情况(30%、45%、60%、75%和 90%)。实验过程中,记录了逆变器输出/负载端的三相电压和电流信号,这些信号为研究微电网中逆变器开关管开路故障诊断提供了独特且新颖的数据集。

English Abstract

With increasing penetration of renewable energy sources in electric distribution systems, the microgrid is a fundamental building block for grid modernization. Renewable distributed generation (DG) units are connected within a microgrid through interfacing inverters equipped with advanced control schemes, and these inverters play an essential role in microgrid operations. However, DG interfacing inverters may fail due to various faults. In this paper, an experimental investigation of open-switch faults using a 2 kW three-phase two-level conventional voltage source inverter (VSI) is conducted through the Opal-RT real-time simulator test bench in the lab, where three grid-forming inverter control schemes (droop control, virtual synchronous generator (VSG) control, and VSG with a Fuzzy secondary controller) are implemented under healthy and 21 single- and multi-open-switch fault conditions. Five inverter loadings (30%, 45%, 60%, 75% and 90%) are also implemented in the testing. Three phase voltage and current signals were recorded at the inverter output/load terminal during experiments, which provided unique and novel datasets for studying inverter open-switch fault diagnosis in microgrids.
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SunView 深度解读

该实时仿真研究方法对阳光电源的SG系列光伏逆变器和ST系列储能变流器的可靠性优化具有重要价值。基于OPAL-RT的硬件在环测试可有效验证我司产品在开路故障工况下的响应特性,为iSolarCloud平台的故障诊断算法提供优化依据。该方法可应用于SG350HX等大功率组串式逆变器的开关器件可靠性验证,以及PowerTitan储能系统的故障保护策略开发。这对提升产品运行可靠性、完善智能运维体系具有积极意义,尤其适合验证我司新一代SiC功率模块的故障特性。