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光伏发电技术 储能系统 低电压穿越LVRT ★ 5.0

光伏电站频率与电压扰动穿越控制策略

Frequency and Voltage Disturbances Ride-Through Control Strategy for PV Power Plants

作者 Muhammad M. Kabsha · Mohamed Shawky El Moursi · Tarek H. M. El-Fouly · Ahmed Al-Durra
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年11月
技术分类 光伏发电技术
技术标签 储能系统 低电压穿越LVRT
相关度评分 ★★★★★ 5.0 / 5.0
关键词 大型光伏电站 自适应控制策略 频率支持 低电压穿越 电网扰动
语言:

中文摘要

大规模光伏电站(PVPP)正快速接入全球电力系统,但其高渗透率可能影响电网的频率与电压稳定性,尤其在弱电网遭遇单独或同时发生的扰动时。本文提出一种自适应控制策略,使PVPP能够准确满足电网导则要求,并在同时扰动事件中实现快速频率支撑(FFS)与增强型低电压穿越(LVRT)性能。该策略基于实时测量确定频率与电压支撑优先级,通过在有功控制环路中引入自适应有功功率斜率(AAPRR)函数,实现频率与电压的协同支撑。此外,采用电压调节方案,在不超出逆变器容量裕度的前提下提升故障后电压恢复能力。基于OPAL-RT实时仿真平台的验证结果表明,所提策略在连续及同时扰动下显著改善了系统的暂态电压与频率响应性能。

English Abstract

Large-scale photovoltaic power plants (PVPP) are being rapidly integrated to power systems worldwide. However, large penetration of PVPP will affect the frequency and voltage stabilities, especially for a weak power grid during individual and simultaneous disturbances. This paper introduces an adaptive control strategy for PVPP to accurately comply with grid code requirements and achieve fast frequency support (FFS) and enhanced low voltage ride-through (LVRT) performance during simultaneous disturbances events (SDE). The proposed control strategy relies on the support priority scheme for the grid frequency and voltage based on real-time measurements. An adaptive active power ramp rate (AAPRR) function imposed on the active power control loop of the PVPP is used to realize the simultaneous frequency and voltage support. Moreover, the voltage support is enhanced using a voltage regulation scheme that supports the voltage recovery post-fault without exceeding the PVPP inverter power headroom. The proposed control strategy demonstrates superior performance in enhancing the transient voltage and frequency responses when the power grid is subjected to consecutive and simultaneous disturbance events. The effectiveness of the proposed strategy is verified using the OPAL-RT real-time simulator test bench.
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SunView 深度解读

该自适应频率-电压协同穿越控制策略对阳光电源SG系列光伏逆变器和ST储能变流器具有重要应用价值。文中提出的AAPRR自适应有功功率斜率函数可直接集成到SG逆变器的有功控制环路,实现快速频率支撑与LVRT功能的动态优先级切换,满足新版电网导则要求。该策略对PowerTitan大型储能系统尤为关键,可在弱电网场景下同时应对频率与电压扰动,避免逆变器容量越限。建议将该协同控制算法与阳光现有VSG虚拟同步机技术融合,在iSolarCloud平台实现实时扰动识别与参数自适应调节,提升1500V高压系统在高渗透率场景下的电网支撑能力,增强产品在欧洲、澳洲等弱电网市场的竞争力。