多端高压直流电网智能容错保护方案系统综述

Q4 Engineering
Analcísio António Rodino, R. Araújo
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引用次数: 0

摘要

由于电力电子器件和控制技术的进步,模块化多电平变换器(MMC)由于其最相关的特点,如模块化和可扩展性,已成为最具吸引力的多终端直流(MTDC)电网变换器。尽管具有优势,但传统mmc面临的主要挑战是:1)容错操作策略;1)转换过程中的能量损失;iii)缺乏直流故障处理能力。本文对多端高压直流电网智能容错保护方案进行了系统的综述,以确定文献中的空白。通过文献计量分析,可以确定四个主要集群(海上风力发电场、风力涡轮机、电压源转换器和风力发电)中仍有待开发的主题。本课题开辟了三条研究路径:一是采用故障检测与诊断(FDD)方法对高压直流电网设备进行故障分析;二是利用IFDD(逆故障检测与诊断)方法进行故障分析,三是利用不同频率实现不同发电区互联的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A systematic review of Intelligent Fault-Tolerant Protection Scheme for Multi-terminal HVDC Grids
Due to the advancement of power electronics devices and control techniques, the modular multilevel converter (MMC) has become the most attractive converter for multiterminal direct current (MTDC) grids thanks to its most relevant features, such as modularity and scalability. Despite their advantages, conventional MMCs face a major challenge with: i) fault-tolerant operation strategy; i) energy losses in conversion; iii) lack of DC fault handling capability. This paper provides a systematic review to identify the gaps in the literature about Intelligent Fault-Tolerant Protection Schemes for multi-terminal HVDC grids. Through the bibliometric analysis, it was possible to identify topics still to be developed within the four main clusters (Offshore wind farms, Wind turbines, Voltage Source Converters, and Wind power). The research topic opens three research paths: the first is the analysis of failures in HVDC (High Voltage Direct Current) grid equipment by the FDD (Fault Detection and Diagnosis) method; the second is failure analysis by the IFDD (Inverse Fault Detection and Diagnosis) method and the third is the possibility of interconnecting the different energy generation zones with different frequencies.
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来源期刊
U.Porto Journal of Engineering
U.Porto Journal of Engineering Engineering-Engineering (all)
CiteScore
0.70
自引率
0.00%
发文量
58
审稿时长
20 weeks
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