← 返回
采用具有能量管理与电能质量改善功能的分裂源逆变器的多功能并网光伏系统
A Multi-Functional Grid-Tied PV System Using a Split Source Inverter With Energy Management and Power Quality Improvement Features
| 作者 | Abbes Kihal · Billel Talbi · Abdelbasset Krama · Abdelbaset Laib · Abdeslem Sahli |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 空间矢量调制SVPWM |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 分裂源逆变器 多功能并网 滑模控制 功率管理 电能质量提升 |
语言:
中文摘要
本文提出一种基于分裂源逆变器(SSI)的多功能并网(MFGC)系统,因其具备更强升压能力且元件更少。SSI可实现完全有源电力滤波器(APF)功能,优于阻抗源逆变器(ZSIs)。采用滑模控制(SMC)策略协调直流侧与交流侧控制,实现无功补偿、非线性负载供电及剩余光伏功率馈网。DC侧通过SMC调控输入电流并估计升压所需占空比;AC侧采用解耦SMC生成参考电压,经改进空间矢量调制(MSVM)驱动逆变器。系统在MATLAB/Simulink中仿真,并通过实时硬件在环实验验证,结果表明所提控制方案在功率管理与电能质量提升方面有效且鲁棒。
English Abstract
In this paper, split-source inverter (SSI) is proposed for multi-functional grid-connected (MFGC) application because it offers the better boosting capability with fewer components. Furthermore, the SSI could operate as a full active power filter (APF), unlike the impedance source inverter (ZSIs) topologies. This paper proposes a sliding mode control (SMC) scheme for controlling both DC and AC sides of the MFGC system based SSI, the MFGC system aims to compensate the reactive power at grid side, satisfy the non-linear load power demand using the extracted PV power, and inject the remaining PV power into the grid. On DC-side, the SMC scheme is designed to control the DC input current while estimating the duty cycle that ensures the boosting capability. Then, a decoupled control scheme based on the SMC is designed to control the AC-side of the system and estimate the reference voltages that are fed to a modified space vector modulation (MSVM) stage. The entire system is simulated using the MATLAB/Simulink environment and validated experimentally through real-time hardware in the loop setup. The obtained results from simulation and HIL setup demonstrate the effectiveness and robustness of the proposed control scheme in terms of power management and power quality enhancement.
S
SunView 深度解读
该分裂源逆变器(SSI)的多功能并网技术对阳光电源SG系列光伏逆变器和ST储能变流器具有重要应用价值。SSI拓扑以更少元件实现更强升压能力,可优化现有1500V系统的直流侧电压匹配设计,降低BOM成本。其完全APF功能结合滑模控制策略,可增强产品的无功补偿和谐波治理能力,直接提升SG系列在弱电网环境下的电能质量表现。改进型空间矢量调制(MSVM)算法可融入现有SVPWM控制框架,优化开关损耗。该技术的能量管理策略对ST储能系统的多模式运行(削峰填谷、需量管理)具有借鉴意义,特别是在工商业储能场景下实现光储一体化协调控制,提升系统综合效益。