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Generalised design method for improving control quality of hybrid active power filter with injection circuit

机译:带有注入电路的混合型有源电力滤波器提高控制质量的通用设计方法

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摘要

Harmonic suppression is an important and challenging issue in electrical power systems and can be resolved by using hybrid active power filters with injection circuit (IHAPFs). In existing IHAPF systems, however, it is usually assumed that all parameters are determined accurately and unchanged over time, which is not true in real situations. It is well known that variations of system parameters may seriously degrade the performance of IHAPF systems. To obtain both efficiency and robustness, this study proposes a novel method for the generalised controller design of a three-phase IHAPF system which can deal with deviations of system parameters. An optimum way to determine the stability bounds under various system parameters cases is introduced. The assessment of the stability bounds is based on the Routh criterion through solving the characteristic equation of the closed-loop control system. Simulations and experimental results are presented to validate the correctness and effectiveness of the proposed design method for controller used in IHAPF system.
机译:谐波抑制是电力系统中一个重要且具有挑战性的问题,可以通过使用带有注入电路(IHAPF)的混合有源功率滤波器来解决。但是,在现有的IHAPF系统中,通常假定所有参数都是准确确定的,并且随着时间的推移而保持不变,这在实际情况下是不正确的。众所周知,系统参数的变化可能会严重降低IHAPF系统的性能。为了获得效率和鲁棒性,本研究为三相IHAPF系统的通用控制器设计提出了一种新的方法,该方法可以处理系统参数的偏差。介绍了在各种系统参数情况下确定稳定性边界的最佳方法。稳定性界限的评估基于Routh准则,通过求解闭环控制系统的特征方程。仿真和实验结果验证了所提出的IHAPF系统控制器设计方法的正确性和有效性。

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