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Resonance Detection Strategy for Multi-Parallel Inverter-Based Grid-Connected Renewable Power System Using Cascaded SOGI-FLL

机译:使用级联Sogi-FLL的多并行逆变器基于新型网格连接可再生电力系统的共振检测策略

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摘要

The increasing use of multi-parallel grid-connected inverters introduces both high-quality and high-capacity power, while it tends to cause a resonance instability problem. A resonance damper can virtualize a resistor at resonant frequency to suppress the instability effectively, but the resonant frequency should be detected primarily. However, the resonant current or voltage is severely distorted and oscillating, which will lead to the resonant frequency extraction being more difficult. To address it, this paper proposes a resonance detection strategy based on the cascaded second-order generalized integrators (SOGI) and the normalized frequency locked loop (FLL). The cascaded structure ensures the accuracy by completely filtering the fundamental component from the detected voltage or current, and the normalization accelerates the frequency detection. The proposed method can be used as a crucial unit of the resonance damping controller. Finally, the performance of the proposed method is verified by the MATLAB-based simulation and Hardware-in-the-Loop (HIL)-based emulation results.
机译:多平行电网连接逆变器的不断使用介绍了高质量和高容量的功率,而往往会导致共振不稳定问题。谐振阻尼器可以以谐振频率虚拟化电阻以有效地抑制不稳定性,但应主要检测谐振频率。然而,谐振电流或电压严重扭曲和振荡,这将导致谐振频率提取更加困难。为了解决它,本文提出了基于级联的二阶通用集成商(Sogi)和归一化频率锁定环(FLL)的共振检测策略。级联结构通过完全过滤来自检测到的电压或电流的基本组件来确保精度,并且归一化加速频率检测。所提出的方法可以用作共振阻尼控制器的关键单元。最后,通过基于MATLAB的仿真和循环(HIL)的仿真结果来验证所提出的方法的性能。

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