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光伏发电技术 并网逆变器 ★ 5.0

通过多功能分源逆变器的解耦预测功率控制增强光伏功率采集与电网支撑

Enhanced PV power harvesting and grid support through decoupled predictive power control of multi-functional split-source inverter

作者 Billel Talbi · Abbes Kihal · Abdelbasset Kram · Abdeslem Sahli · Abdesslam Belaout · Adel Mellit
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 293 卷
技术分类 光伏发电技术
技术标签 并网逆变器
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Investigation of the SSI in the MF-PVGCI system with different operating modes.
语言:

中文摘要

摘要 本文研究了一种采用分源逆变器(SSI)的新型多功能光伏并网逆变器(MF-PVGCI)结构,该结构相较于传统的阻抗源逆变器具有显著优势。所提出的MF-PVGCI能够根据太阳辐照度的可用性自适应地运行于三种不同模式:完全有源滤波器(F-APF)模式、部分有源滤波器(P-APF)模式以及有功功率注入(RPI)模式。为了提升系统性能,本文提出一种基于有限集模型预测控制策略的多目标控制结构,旨在最大化从光伏阵列中获取的功率,并以精确解耦的方式控制电网的有功和无功功率。该控制结构使SSI能够作为无功功率补偿装置,满足公共耦合点(PCC)处连接的非线性负载的需求,利用最大可获取的光伏功率为这些负载供电,并将任何多余的功率注入电网。所提出的控制结构设计简洁,适合实际应用。仿真结果、硬件在环(HiL)测试以及对比分析验证了该多目标控制结构的有效性与鲁棒性。

English Abstract

Abstract This paper investigates a novel multi-functional photovoltaic grid-connected inverter (MF-PVGCI) configuration employing a split-source inverter (SSI), which offers significant advantages over conventional impedance-source inverters. The suggested MF-PVGCI operates adaptively in three distinct modes; full active power filter (F-APF) mode, partial active power filter (P-APF) mode, and real power injection (RPI) mode, based on the solar irradiance availability. To enhance system performance , a multi-objective control structure based on a finite set-model predictive control strategy is suggested to maximize the power harvested from the PV array and to control the grid active and reactive powers in a precise decoupled manner. This control structure allows the SSI to operate as a reactive power compensator to meet the demands of nonlinear loads connected at the point of common coupling (PCC) and supply these loads by the maximum harvested PV power and inject any surplus power into the grid. The suggested control structure is designed in a straightforward manner making it suitable for practical implementation. Simulation results, hardware-in-the loop (HiL) tests, and comparative analysis validate the effectiveness and robustness of the suggested multi-objective control structure.
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SunView 深度解读

该分源逆变器多功能控制技术对阳光电源SG系列并网逆变器具有重要应用价值。其基于有限集模型预测控制的有功无功解耦策略,可增强现有1500V系统的电网支撑能力,实现MPPT优化与无功补偿的协同运行。三种自适应运行模式(全APF/部分APF/实功率注入)的切换逻辑,可融入iSolarCloud平台的智能控制算法,提升光伏系统在弱光照条件下的综合效益。该技术与阳光电源三电平拓扑及SiC功率器件结合,有望进一步优化PowerTitan储能系统的多功能并网性能。