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储能系统技术 储能系统 ★ 5.0

利用带钒氧化还原液流电池的静止同步补偿器抑制汽轮发电机/海上风电场混合系统中的次同步振荡

Suppression of Subsynchronous Resonance in a Hybrid Steam-Turbine Generator/Offshore Wind Farm System Using a Static Synchronous Compensator With a Vanadium Redox Flow Battery

作者 Li Wang · Jui-Tse Lai · Ting-You Li · Ching-Chung Tseng · Hazlie Mokhlis · Kein Huat Chua
期刊 IEEE Transactions on Industry Applications
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 可再生能源 储能系统 柔性交流输电系统 次同步谐振 附加阻尼控制器
语言:

中文摘要

由于风力发电厂或太阳能发电厂等可再生能源(RES)具有间歇性,将这些可再生能源接入电力系统会导致系统不稳定,影响电力系统的质量和稳定性。为解决这一问题,人们提出了各种用于补偿功率波动的储能系统(ESS),以及用于控制电压幅值和有功/无功功率注入的不同灵活交流输电系统(FACTS),以提高所接入电力系统的稳定性。需要运用合适的控制理论为储能系统或柔性交流输电装置设计一些有效的附加阻尼控制器(SDC),以实现提高稳定性的目标。本文提出将静止同步补偿器(STATCOM)与基于钒氧化还原液流电池(VRFB)的储能系统相结合,以抑制混合式蒸汽轮机发电机(STG)/海上风电场(OWF)系统通过串联电容补偿线路向无穷大母线供电时发生的次同步谐振(SSR)。海上风电场基于双馈感应发电机,推导了三相平衡负载条件下所研究系统的d - q轴等效电路模型,以建立完整的系统模型。运用模态控制理论设计了静止同步补偿器的附加阻尼控制器,以提高所研究系统主导模式的阻尼。对所研究系统进行了小信号稳定性和动态仿真分析,结果表明,结合所设计附加阻尼控制器的静止同步补偿器与基于钒氧化还原液流电池的储能系统能有效抑制所研究系统的次同步谐振。

English Abstract

Due to the intermittent nature of renewable energy sources (RESs) such as wind farms or solar farms, integrating these RESs into power systems can result in instability, affecting the power system's quality and stability. To address this issue, various energy storage systems (ESSs) used to compensate for power fluctuations or different flexible AC transmission systems (FACTS) used to control voltage magnitude and active/reactive power injections were proposed to improve the stability of the connected power systems. Some effective supplementary damping controllers (SDCs) need to be designed by using suitable control theory for the ESSs or the FACTS devices to achieve the goal of stability improvement. A static synchronous compensator (STATCOM) joined with a vanadium redox flow battery (VRFB)-based ESS is proposed to suppress subsynchronous resonance (SSR) occurring in a hybrid steam-turbine generator (STG)/offshore wind farm (OWF) system fed to an infinite bus through a series-capacitor compensated line. The OWF is based on a doubly-fed induction generator, and the d-q axis equivalent-circuit model of the studied system under three-phase balanced loading conditions is derived to establish the complete system model. An SDC of the STATCOM is designed using modal control theory to improve the damping of the dominant modes of the studied system. Small-signal stability and dynamic simulation results of the studied system are systematically performed to demonstrate that the STATCOM joined with the proposed VRFB-ESS with the designed SDC effectively suppresses the studied system's SSR.
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SunView 深度解读

该STATCOM+VRFB协同抑制次同步振荡技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。研究提出的有功无功协同调节策略可直接应用于阳光电源储能PCS的控制算法优化,增强系统阻尼特性,提升新能源并网稳定性。特别是在海上风电+火电混合场景下,ST储能系统可通过快速功率响应抑制SSR振荡,保障电网安全。该技术与阳光电源现有的构网型GFM控制、虚拟同步机VSG技术形成互补,为开发具备电网支撑能力的新一代储能系统提供理论依据,可应用于大型新能源基地的稳定性提升方案中。