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Modeling and Resonance Control of Modular Three-Level Shunt Active Power Filter

机译:模块化三电平并联有源电力滤波器的建模与谐振控制

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摘要

Compared with the conventional central shunt active power filter (SAPF), modular designed SAPF can track the harmonics more precisely and quickly with a compact and expandable structure, which makes it a better solution for harmonic mitigation. But there are very few paper discussed about the modeling and parallel resonance issues of modular SAPF parallel system. This paper provides a modeling of three-level SAPF, aiming to guide the modular design and research the parallel resonance control method. First, a simplified modular three-level SAPF modeling is proposed based on averaging impedance modeling and small signal linearization techniques. Then, the coupling issues between modules are researched, and a self-adaptive active damping method is proposed to suppress the system resonance. Based on the modeling results, an improved three-level SAPF module topology is proposed to construct the modular system. The theoretical analysis and experimental results verify that the module topology improvement together with the damping strategy can promise the compensating bandwidth, reliability, and fast, precise harmonics tracking ability.
机译:与传统的中央并联有源电力滤波器(SAPF)相比,模块化设计的SAPF可以通过紧凑且可扩展的结构更精确,更快速地跟踪谐波,这使其成为减轻谐波的更好解决方案。但是,关于模块化SAPF并行系统的建模和并行共振问题的讨论很少。本文提供了一个三级SAPF建模,旨在指导模块化设计和研究并联谐振控制方法。首先,基于平均阻抗建模和小信号线性化技术,提出了一种简化的模块化三级SAPF建模。然后,研究了模块之间的耦合问题,并提出了一种自适应主动阻尼方法来抑制系统共振。基于建模结果,提出了一种改进的三级SAPF模块拓扑结构来构建模块化系统。理论分析和实验结果证明,模块拓扑的改进以及阻尼策略可以保证补偿带宽,可靠性以及快速,精确的谐波跟踪能力。

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