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基于单逆变器侧电流反馈的LCL型并网逆变器无源性与注入电流质量提升

Passivity and Injection Current Quality Enhancement for Single Inverter-Side Current Feedback LCL-Type Grid-Following Inverters

语言:

中文摘要

单逆变器侧电流反馈(ICF)LCL型并网逆变器(GFLI)因过流保护便捷和成本低而在工业中广泛应用,但在电网电压畸变及电网阻抗变化导致谐振频率超过fs/6时,存在注入电流质量差和振荡风险。为此,本文提出一种仅需单ICF的虚拟电网侧电流控制(VGCC)方案,并结合重复控制器(RC)以提升电流质量并满足并网标准。通过微分器获取电容电流构建虚拟电网侧电流,采用电容电压前馈有源阻尼(CVF-AD)实现输出导纳重塑,并在无源性约束下整定控制器参数。所提方案在无需增加硬件成本的前提下,兼顾高电流质量和接近奈奎斯特频率的稳定运行区。实验结果验证了该方法的有效性。

English Abstract

Single inverter-side current feedback (ICF) LCL-type grid-following inverters (GFLIs) have gained popularity in industrial applications owing to their convenience in over-current protection and economy. They, however, suffer from poor injection current quality in the presence of distorted grid voltage conditions and the risk of oscillation when the variation of the grid impedance pushes the system resonant frequency beyond f_s /6. To this end, this article presents a virtual grid-side current control (VGCC) scheme with only a single ICF and a repetitive controller (RC) to improve the quality of injection current to comply with the grid code. In the proposed scheme, a differentiator is applied to obtain the capacitor current to construct the virtual grid-side current, and capacitor voltage feedforward active damping (CVF-AD) is also applied to facilitate the output admittance reshaping. Controller parameters are tuned under passivity constraints on the output admittance of the GFLI. With the proposed scheme and parameter design guidelines, both high injection current quality and the approaching Nyquist frequency stable region for single ICF LCL-type GFLIs are simultaneously achieved without introducing any extra hardware costs. Finally, the effectiveness of the proposed scheme is verified by experimental results.
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SunView 深度解读

该单电流传感器LCL滤波控制技术对阳光电源ST系列储能变流器和SG系列光伏逆变器具有重要应用价值。虚拟电网侧电流控制方案可直接应用于工商业光伏和电网侧储能系统,在弱电网和电网阻抗波动场景下,通过电容电压前馈有源阻尼实现输出导纳重塑,有效抑制LCL谐振并提升注入电流质量,满足严格并网标准。该方案在保持单传感器低成本优势的同时,将稳定运行区扩展至接近奈奎斯特频率,可优化PowerTitan大型储能系统在复杂电网环境下的GFL控制性能,降低硬件成本的同时提升系统鲁棒性,对阳光电源1500V高压系统的谐波抑制和弱电网适应性具有直接工程价值。