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考虑低频共模电压的LCL型三电平并网逆变器多目标集成分-合控制方法
Multiobjectives Integrated Division-Summation Method for LCL-Type Three-Level Grid-Connected Inverter Considering Low-Frequency Common Mode Voltage
| 作者 | Jiang Liu · Guobing Song · Maojun Deng · Yiming Ren · Fangbin Guo · Weizhang Song |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年11月 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 并网逆变器 储能系统 三电平 深度学习 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | LCL型三电平并网逆变器 I - D - Σ控制策略 中性点电位平衡控制 低频共模电压 FC - CNN估计方法 |
语言:
中文摘要
LCL型三电平并网逆变器广泛应用于光伏发电系统,具有多个独立控制目标。本文提出一种集成分-合(I-D-Σ)控制策略,可同时实现并网电流跟踪、中点电位平衡、谐振抑制及低频共模电压抑制。针对双分-合(D-D-Σ)方法仅考虑电流与谐振抑制的不足,引入虚拟零电位点以实现中点电位控制;并提出基于全连接卷积神经网络(FC-CNN)的低频共模电压估计算法,有效解决无传感器条件下共模电压不可观测问题。所提I-D-Σ方法通过低频共模电压补偿显著降低其幅值。实验结果验证了该策略的有效性。
English Abstract
The LCL-type three-level grid-connected inverter is extensively employed in photovoltaic (PV) power generation systems, which has multiple individually controlled objectives. To this end, an integrated division-summation (I-D- ) control strategy is proposed in this article, which can consider grid-connected current tracking, neutral-point potential (NPP) balance control, resonance suppression, and low-frequency common mode voltage (CMV), simultaneously. To compensate for the fact that the dual-division-summation (D-D- ) method only considers grid-connected current and resonance suppression, a virtual zero potential point is added for NPP balance control. Additionally, a low-frequency CMV estimation method based on fully connect-convolutional neural network (FC-CNN) is proposed, which perfectly avoids the unobservability of sensorless CMV. The I-D- method can effectively reduce the low-frequency CMV, which is compensated by the low-frequency CMV. The effectiveness of the proposed strategy was verified through comparative experimental results.
S
SunView 深度解读
该I-D-Σ多目标集成控制技术对阳光电源SG系列三电平光伏逆变器及ST储能变流器具有重要应用价值。研究提出的虚拟零电位点中点平衡控制可直接优化现有三电平拓扑产品的直流侧电容电压均衡性能,延长器件寿命。基于FC-CNN的无传感器低频共模电压估计算法可降低系统成本,其共模电压抑制技术能有效减少对地漏电流,提升光伏系统安全性并降低EMI滤波器设计难度。该方法同时实现电流跟踪、谐振抑制、中点平衡和共模抑制的多目标协同控制思路,可为阳光电源1500V高压系统及PowerTitan大型储能系统的控制算法升级提供技术参考,提升产品并网性能与可靠性。