Fractional-Order LCL Filters: Principle, Frequency Characteristics, and Their Analysis

Author:

Xu Junhua1ORCID,Zeng Ermeng1,Li Xiaocong12,He Guopeng1,Liu Weixun1,Meng Xuanren3

Affiliation:

1. College of Electrical Engineering, Guangxi University, Nanning 530004, China

2. College of Mechanical and Electrical and Quality Technology Engineering, Nanning University, Nanning 530200, China

3. Electric Power Research Institute of Guangxi Power Grid Corporation, Nanning 530023, China

Abstract

The fractional-order LCL filter, composed of two fractional-order inductors and one fractional-order capacitor, is a novel fractional-order π-type circuit introduced in recent years. Based on mathematical modeling, this article comprehensively studies the principles and frequency characteristics of fractional-order LCL filters. Five critical properties are derived and rigorously demonstrated. One of the most significant findings is that we identify the necessary and sufficient condition for resonance in fractional-order LCL filters when the sum of the orders of the fractional-order inductors and the fractional-order capacitor is equal to 2, which provides a theoretical foundation for effectively avoiding resonance in fractional-order LCL filters. The correctness of our theoretical derivation and analysis was confirmed through digital simulations. This study reveals that fractional-order LCL filters exhibit more versatile operational characteristics than traditional integer-order LCL filters, paving the way for broader application prospects.

Publisher

MDPI AG

Subject

Statistics and Probability,Statistical and Nonlinear Physics,Analysis

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