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基于MTOCF方法的光伏-DVR系统电能质量提升
Enhancing Power Quality in PV-DVR System: An MTOCF Approach for Imbalance and Distortion Mitigation
| 作者 | Sujitha Janardhanan · Mahmadasraf A. Mulla |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年10月 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 弱电网并网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 光伏动态电压恢复器 改进三阶复滤波器 电能质量 谐波抑制 直流偏置消除 |
语言:
中文摘要
本文提出一种改进型三阶复数滤波器(MTOCF)控制策略,用于光伏型动态电压恢复器(PV-DVR)系统。光伏阵列为负载提供有功功率,电压源变换器作为DVR抑制电网电压不平衡与畸变,改善电能质量。传统TOCF控制在弱电网或直流偏置条件下性能下降,而所提出的MTOCF算法可有效抑制低次谐波并消除直流分量,同时实现不平衡电压中正序分量的精确提取。该算法在昼夜不同工况及多种电压扰动下进行了验证。仿真基于MATLAB/Simulink平台,实验采用STM32F407VG型ARM Cortex-M4微控制器构建原型系统,结果表明所提方法在动态条件下具有优良的控制效果。
English Abstract
This article deals with a modified third-order complex filter (MTOCF) control technique for photovoltaic-based dynamic voltage restorer (PV-DVR). The photovoltaic (PV) array generates the active power and delivers it to the load. The voltage source converter (VSC) operates as a dynamic voltage restorer (DVR) and improves the power quality (PQ) of the grid by mitigating voltage imbalance and distortions. The existing TOCF-based control fails under weak grid scenario like dc offset conditions. This issue can be overcome by adopting a modified TOCF-based reference voltage algorithm. The prime motto of this work is suppression of lower order harmonics and elimination of dc offset using the developed MTOCF-based control. In addition, the extraction of positive sequence components from imbalanced voltages is explored. The algorithm has been tested under different scenarios, which includes normal grid conditions and voltage disturbances during day and night. The efficacy of the aforementioned control algorithm at various dynamic conditions is demonstrated using MATLAB/Simulink. A laboratory prototype of the same is developed and implemented using a generic 32-bit ARM Cortex-M4 Microcontroller (STM32F407VG) platform. The experimental results are in accordance with the simulation results, proving the effectiveness of the control algorithm.
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SunView 深度解读
该MTOCF控制策略对阳光电源ST系列储能变流器和SG系列光伏逆变器在弱电网并网场景具有重要应用价值。针对西北、东北等弱电网地区,该算法可有效抑制电网电压不平衡与低次谐波,提升PowerTitan储能系统的电能质量治理能力。其直流分量消除和正序分量精确提取技术可优化现有GFL跟网控制策略,增强1500V光伏系统在电网扰动下的动态响应性能。建议将MTOCF算法集成到ST2236/2500UX等大功率储能变流器的DSP控制平台,配合虚拟同步机VSG技术,形成弱电网适应性解决方案,提升阳光电源在复杂电网环境下的市场竞争力。