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A variable inductor based harmonic filter design for multi-phase renewable energy systems with double closed-loop control

机译:基于多相可再生能源系统的可变电感谐波滤波器设计,双闭环控制

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摘要

Compared to L-or LC-type filters, LCL-type filters are superior in high-frequency harmonic attenuation ability. But the filtering inductors are designed with fixed values in traditional principles, which aim to limit the harmonic amplitude at the rated power. However, power converters may have to operate under load-shedding conditions due to the intermittent of both renewable energy and power consumers, which will worsen the harmonic issue on account of a skimpy filtering inductance. In this paper, in order to adapt the light-load conditions to a certain degree, an LCL-type filter with a variable converter-side inductor is designed for a multi-phase inverter system. The variable inductor can obtain about four times inductance at low currents compared to the inductance at the rated power. Meanwhile, a systematic double closed-loop control strategy is applied based on the provided extended coordinate transformation theory in multi-phase system, which can be generally applied in any n-phase systems. And in order to meet steady-state performance requirements of the system with the variable inductor, a system calibration method is proposed and introduced to design the controller parameters. Taking a five phase inverter as an example, feasibility and validity of the proposed scheme have been verified based on the finite-element analysis (FEA), PLECS simulation platform and practical experiments. (c) 2021 Elsevier Ltd. All rights reserved.
机译:与L-或LC型过滤器相比,LCL型滤波器在高频谐波衰减能力方面优异。但过滤电感器设计有传统原理中的固定值,旨在限制额定功率的谐波幅度。然而,由于可再生能源和功率消费者的间歇性,功率转换器可能必须在负载脱落条件下运行,这将根据臭氧滤波电感来恶化谐波问题。在本文中,为了使光负荷条件适应一定程度,设计具有可变转换器侧电感器的LCL型过滤器,用于多相逆变器系统。与额定功率的电感相比,可变电感器可以在低电流下获得大约四次电感。同时,基于多相系统中提供的扩展坐标变换理论应用系统的双闭环控制策略,这可以通常应用于任何N相系统。并且为了满足具有变量电感器系统的稳态性能要求,提出了一种系统校准方法并引入设计控制器参数。以五相逆变器为例,基于有限元分析(FEA),PLECS仿真平台和实际实验,已经验证了所提出的方案的可行性和有效性。 (c)2021 elestvier有限公司保留所有权利。

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