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基于延时补偿算法的并网逆变器阻抗增强方法
Impedance Enhancement Method for Grid-Connected Inverter Using Delay Compensation Algorithm
| 作者 | Guanhong Song · Chunpu Wu · Jiahui Yan · Qingnian Wang · Yongkang Xiong |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年12月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 并网逆变器 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 分布式能源 LCL逆变器 虚拟阻抗控制 离散时间延迟补偿 阻抗增强方法 |
语言:
中文摘要
随着分布式能源在现代电力系统中的高比例接入,电网电压畸变问题日益严重,显著影响并网LCL逆变器的运行特性与电能质量。现有研究多采用基于虚拟阻抗的控制方法重塑逆变器输出特性,以抑制电网谐波的不利影响。然而,数字控制器中的离散时间延迟严重削弱了该类方法的性能。为此,本文提出一种改进的离散时间延迟补偿算法,通过设计并集成一拍超前观测器至电流控制器,实现对采样延迟的完全补偿,有效提升逆变器的阻抗特性。数值分析、MATLAB/Simulink仿真及LCL逆变器样机实验验证了所提方法的有效性。
English Abstract
With the high penetration of distributed energy resources (DERs) integrated into modern power systems, grid voltage distortions have become major problems that have severe impacts on the operation behavior and power quality of grid-connected LCL inverters. In recent literature, many research studies have focused on reshaping the inverter’s output characteristics using virtual impedance-based control methods to suppress the negative effects of grid harmonics and distortions. However, the existence of the discrete-time delay in the inverter’s digital controllers has severely degraded the performance of these virtual impedance-based methods. Therefore, an advanced impedance enhancement method using a modified discrete-time delay compensation algorithm is proposed in this article for grid-connected LCL inverters. In the proposed method, a one-beat lead observer is designed, analyzed, and integrated with the current controller so that the discrete-time delay can be fully compensated, and the impedance characteristics of the inverter can be improved. The effectiveness of the proposed algorithm is verified through numerical analysis, simulation on a MATLAB/Simulink platform, and experiments on an LCL inverter prototype.
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SunView 深度解读
该延时补偿算法对阳光电源ST系列储能变流器和SG系列光伏逆变器的弱电网适应性提升具有重要价值。通过一拍超前观测器补偿数字控制延时,可显著增强LCL滤波器的阻抗特性,直接改善产品在电网电压畸变环境下的并网性能。该技术可应用于PowerTitan大型储能系统的并网控制策略优化,提升谐波抑制能力;结合阳光电源现有虚拟阻抗控制技术,可强化GFL跟网型控制器在弱电网下的鲁棒性。建议将该算法集成至DSP/FPGA控制平台,与现有MPPT和有功无功控制协同工作,提升产品在复杂电网环境下的电能质量指标和并网稳定性。