Frequency adaptive repetitive control of grid-connected inverters

R. Nazir, Keliang Zhou, N. Watson, A. Wood
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引用次数: 11

Abstract

Grid-connected inverters (GCI) are widely used to feed power from renewable energy distributed generators into smarter grids. Repetitive control (RC) enables such inverters to inject high quality fundamental-frequency sinusoidal currents into the grid. However, digital RC which can get approximately zero tracking error of any periodic signal with known integer period in steady-state, cannot exactly track or reject periodic signal of frequency variations. Thus digital RC would lead to a significant power quality degradation of GCIs when grid frequency varies and causes periodic signal with non-integer periods. In this research paper a frequency adaptive repetitive control scheme (FARC) at a predefined sampling rate is proposed to deal with all types of periodic signal of variable frequency. A fractional delay filter which is based on Lagrange interpolation is used to estimate the fractional period terms in RC. This proposed FARC controller offers the fast, during process modification of fractional delay and fast revise of filter parameters, and then provides GCIs with a simple but very accurate real-time frequency adaptive control solution to the injection of high quality sinusoidal current under grid frequency variations. A case study a three-phase GCI is conducted to testify the validity of the proposed strategy.
并网逆变器频率自适应重复控制
并网逆变器(GCI)被广泛用于将可再生能源分布式发电机的电力输送到智能电网。重复控制(RC)使这种逆变器能够向电网注入高质量的基频正弦电流。然而,数字RC在稳态下可以对任意已知整数周期的周期信号获得近似为零的跟踪误差,但不能准确地跟踪或抑制频率变化的周期信号。因此,当电网频率变化时,数字RC会导致gci的电能质量显著下降,并产生非整数周期的周期信号。本文提出了一种预定义采样率的频率自适应重复控制方案(FARC)来处理各种类型的变频周期信号。采用基于拉格朗日插值的分数阶延迟滤波器估计RC中的分数阶周期项。本文提出的FARC控制器提供了快速、快速的过程修正分数延迟和快速修正滤波器参数,从而为gci提供了一种简单但非常精确的实时频率自适应控制方案,以满足电网频率变化下高质量正弦电流的注入。最后通过一个三阶段GCI的案例研究,验证了该策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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