← 返回
风电变流技术 DC-DC变换器 SiC器件 MPPT 可靠性分析 ★ 5.0

具有新型控制策略的串联隔离并联风电场直流汇集系统

Novel Series-Isolated-Parallel Wind Farm DC Collection System with New Control Strategies

作者 Yousef N. Abdelaziz · Khaled H. Ahmed
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年7月
技术分类 风电变流技术
技术标签 DC-DC变换器 SiC器件 MPPT 可靠性分析
相关度评分 ★★★★★ 5.0 / 5.0
关键词 海上风电场 串并联结构 串联隔离并联架构 最大功率点跟踪 控制策略
语言:

中文摘要

相较于传统交流系统,海上风电场直流汇集系统可显著降低重量与体积。其中,串并联结构虽效率较高,但因直流-直流变换器位于风电机组串联支路前端,易受直流短路故障影响而可靠性较低。本文提出一种新型串联隔离并联风电场(SIP-WF)架构,通过为每组串联风电机组配置隔离型直流-直流变换器,实现固有直流故障阻断能力,无需外部直流断路器。各风机仅采用无源整流器,保证了系统高效率。针对不同风况下的最大功率点跟踪问题,提出两种集中式控制策略,实现单变换器对多风机的协调控制。MATLAB/Simulink仿真验证了所提架构与控制策略的有效性。与现有直流拓扑相比,SIP-WF在能量产出、成本、重量、体积及故障容错性方面均表现出优越性能。

English Abstract

Offshore wind farm (WF) DC collection systems offer significant reductions in weight and size compared to conventional AC systems. Among DC architectures, the series-parallel wind farm (SP-WF) configuration achieves higher efficiency by reducing the number of power conversion stages. However, because SP-WF places the DC-DC converter upstream of the series connection of wind turbines (WTs), it suffers from reduced reliability due to its vulnerability to DC short-circuit faults within the series string. This paper proposes a novel series-isolated-parallel wind farm (SIP-WF) architecture that enhances reliability by integrating a DC-DC converter to isolate each group of series-connected WTs. This isolation provides intrinsic DC fault blocking capability without the need for external DC circuit breakers. Furthermore, as only passive rectifiers are used at each individual WT, the proposed SIP-WF architecture maintains high efficiency. To manage maximum power point tracking (MPPT) across turbines experiencing different wind conditions, two new centralized control strategies are proposed to coordinate multiple WTs using a single DC-DC converter per group. The proposed SIP-WF architecture and control strategies are validated through simulations in MATLAB/Simulink. A comprehensive performance comparison is conducted against existing DC collection topologies. The results demonstrate that SIP-WF achieves a higher net energy yield while reducing cost, system weight, and volume, and offering superior fault tolerance compared to conventional architectures.
S

SunView 深度解读

该串联隔离并联架构对阳光电源的储能与光伏产品线具有重要参考价值。其中隔离型DC-DC变换器的固有故障阻断特性可应用于ST系列储能变流器和PowerTitan系统,提升大规模储能场站的可靠性。文中提出的集中式MPPT控制策略可优化SG系列组串式逆变器的能量采集效率。同时,该架构采用SiC器件与无源整流方案的思路,对提升阳光产品的功率密度和系统效率具有启发。建议在储能变流器的多模块并联控制、光伏逆变器的组串管理等场景进行技术创新应用。