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Demystification of Active Damping Design for Three Phase LCL Filters

机译:三相LCL滤波器有源阻尼设计的神秘化

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摘要

Passive filters are inevitable for power electronic converters with grid coupling. In this context LCL filter topologies are a recognized cost and space reducing alternative to single coil solutions for grid current harmonic attenuation. Since this type of filter represents a third order plant, a simple PI controller can cause instabilities once applied to control the grid current of such filter. A common approach is the addition of a so called active damping to the PI-controller. Usually specific state variables are fed back via additional filters to overcome the oscillation problem. However, straight forward solutions regarding the parameter design of these filters can hardly be found. Within this article an extensive stability analysis is presented based on the Hurwitz criteria as applied to a simplified continuous plant model. As a result not only clear guide lines can be given to identify impending instabilities. Furthermore, an easy to implement active damping solution can be accurately designed to ensure robust operation.
机译:对于带有电网耦合的功率电子转换器,无源滤波器是不可避免的。在这种情况下,LCL滤波器拓扑是公认的成本和空间减少方案,可替代电网电流谐波衰减的单线圈解决方案。由于这种类型的滤波器代表三阶工厂,因此简单的PI控制器一旦应用于控制此类滤波器的电网电流,就会引起不稳定。一种常见的方法是在PI控制器上添加所谓的主动阻尼。通常,特定的状态变量通过附加的滤波器反馈,以克服振荡问题。但是,几乎找不到关于这些滤波器的参数设计的直接解决方案。在本文中,基于适用于简化的连续工厂模型的Hurwitz标准,提出了广泛的稳定性分析。结果,不仅可以给出明确的指导方针来识别即将发生的不稳定性。此外,可以精确设计易于实施的主动阻尼解决方案,以确保稳健运行。

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