用于高性能逆变器控制应用的谐振滤波器的精确状态空间实现

B. Mcgrath, D. G. Holmes
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引用次数: 6

摘要

基于谐振二阶广义积分器(sogi)的控制器在交流转换应用中很有吸引力,因为它们在目标谐振频率处提供无限环路增益,这是消除被调节变换器输出中的交流稳态误差所必需的。此外,简单的基于对偶积分器的SOGI滤波器结构有助于频率自适应,例如用于电机驱动应用。然而,这种简单架构的一个后果是,数字形式的SOGI滤波器极易受到离散误差的影响,这可能会损害转换器的稳态跟踪精度。本文现在提出了一种替代的状态空间方法来实现精确的离散SOGI滤波器,使用Hold和Tustin(预翘曲)方法。通过仿真和实验研究,验证了该方法的有效性,该逆变器与扭曲电网接口,并使用多个谐波SOGI滤波器进行控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accurate state space realisations of resonant filters for high performance inverter control applications
Controllers based on resonant Second Order Generalised Integrators (SOGIs) are attractive for AC conversion applications because they provide infinite loop gain at the target resonant frequency, which is required to eliminate AC steady state error in the regulated converter output. Furthermore the simple dual integrator based architecture of a SOGI filter facilitates frequency adaptation, for example as is used in motor drive applications. However a consequence of this simple architecture is that the digital form of the SOGI filter is highly susceptible to discretization errors which can compromise the converter steady state tracking accuracy. This paper now presents an alternative state-space approach to realise accurate discrete SOGI filters using Hold and Tustin (pre-warp) methods. The effectiveness of the proposed approach has been verified using simulation and experimental investigations of an inverter interfaced to a distorted grid and controlled using multiple harmonic SOGI filters.
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