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Flexible active compensation based on load conformity factors applied to non-sinusoidal and asymmetrical voltage conditions

机译:基于适用于非正弦和非对称电压条件的负载一致性因子的灵活主动补偿

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摘要

This study proposes a flexible active power filter (APF) controller operating selectively to satisfy a set of desired load performance indices defined at the source side. The definition of such indices, and of the corresponding current references, is based on the orthogonal instantaneous current decomposition and conformity factors provided by the conservative power theory. This flexible approach can be applied to single- or three-phase APFs or other grid-tied converters, as those interfacing distributed generators in smart grids. The current controller is based on a modified hybrid P-type iterative learning controller which has shown good steady-state and dynamic performances. To validate the proposed approach, a three-phase four-wire APF connected to a non-linear and unbalanced load has been considered. Experimental results have been generated under ideal and non-ideal voltage sources, showing the effectiveness of the proposed flexible compensation scheme, even for weak grid scenarios.
机译:这项研究提出了一种灵活的有源功率滤波器(APF)控制器,该控制器可以选择性地工作,以满足在源侧定义的一组理想的负载性能指标。此类指数以及相应电流参考的定义基于保守功率理论提供的正交瞬时电流分解和一致性因子。这种灵活的方法可以应用于单相或三相APF或其他并网转换器,因为它们与智能电网中的分布式发电机接口。当前控制器基于改进的混合P型迭代学习控制器,该控制器显示出良好的稳态和动态性能。为了验证所提出的方法,已经考虑了连接到非线性和不平衡负载的三相四线APF。在理想和非理想电压源下已经产生了实验结果,表明了所提出的灵活补偿方案的有效性,即使在弱电网情况下也是如此。

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