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H-infinity based control of a DC/DC buck converter feeding a constant power load in uncertain DC microgrid system

机译:基于H-Infinity基于DC / DC降压转换器的DC / DC降压转换器,在不确定的DC微电网系统中馈送恒功率负载

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摘要

DC microgrids are gaining more and more popularity and are becoming a more viable alternative to AC microgrids (MGs) due to their advantages in terms of simpler power converter stages, flexible control algorithms and the absence of synchronization and reactive power. However, DC-MGs are prone to instability issues associated with the presence of nonlinear loads such as constant power loads (CPL) known by their incremental negative impedance (INI), which may lead to voltage collapse of the main DC Bus. In this paper, H-infinity-based controller of a source side buck converter is designed to avoid the instability issues caused by the load-side converter acting as a CPL. Besides, the proposed controller allows a perfect rejection of all perturbations that may arise from parameter variations, input voltage and CPL current fluctuations. The design process of H-infinity-based controller is based on the Golver Doyle Optimization Algorithm (GDOA), which requires an augmented system extracted from the small-signal model of the DC/DC converter including the mathematical model of parameter variations and overall external perturbations. The H-infinity based controller involves the use of weight functions in order to get the desired performances. The proposed controller is easy to implement and lead to reducing the implementation cost and avoid the use of current measurement that may have some disadvantages. The derived controller is validated by simulation performed in Psim software and experimental setup. (C) 2020 ISA. Published by Elsevier Ltd. All rights reserved.
机译:DC Microgrids越来越受欢迎,并且由于它们在更简单的功率转换器级,灵活的控制算法和不存在同步和无功功率方面,由于它们的优点而成为AC微电网(MGS)的更加可行的替代品。然而,DC-MGS容易发挥与非线性负载存在相关的不稳定问题,例如由其增量负阻抗(INI)已知的恒力负载(CPL),这可能导致主直流总线的电压塌陷。在本文中,源侧降压转换器的基于H-Infinity的控制器被设计为避免由充当作为CPL的负载侧转换器引起的不稳定性问题。此外,所提出的控制器允许完全抑制来自参数变化,输入电压和CPL电流波动可能出现的所有扰动。基于H-Infinity的控制器的设计过程基于Golver Doyle优化算法(GDOA),其需要从DC / DC转换器的小信号模型中提取的增强系统,包括参数变化的数学模型和整体外部扰动。 H-Infinity基的控制器涉及使用权重函数以获得所需的性能。所提出的控制器易于实施,并导致降低实施成本,避免使用可能具有一些缺点的电流测量。通过在PSIM软件和实验设置中执行的模拟验证导出的控制器。 (c)2020 ISA。 elsevier有限公司出版。保留所有权利。

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