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Condition Parameter Estimation for Photovoltaic Buck Converters Based on Adaptive Model Observers

机译:基于自适应模型观测器的光伏Buck变换器条件参数估计

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摘要

DC–DC power converters such as buck converters are susceptible to degradation and failure due to operating under conditions of electrical stress and variable power sources in power conversion applications, such as electric vehicles and renewable energy. Some key components such as electrolytic capacitors degrade over time due to evaporation of the electrolyte. In this paper, a model-observer based scheme is proposed to monitor the states of Buck converters and to estimate their component parameters, such as capacitance and inductance. First, a diagnosis observer is proposed, and the generated residual vectors are applied for fault detection and isolation. Second, component condition parameters, such as capacitance and inductance are reconstructed using another novel observer with adaptive feedback law. Additionally, the observer structures and their theoretical performance are analyzed and proven. In contrast to existing reliability approaches applied in buck converters, the proposed scheme performs online-estimation for key parameters. Finally, buck converters in conventional dc–dc step-down and photovoltaic applications are investigated to test and validate the effectiveness of the proposed scheme in both simulation and laboratory experiments. Results demonstrate the feasibility, performance, and superiority of the proposed component parameter estimation scheme.
机译:降压转换器之类的DC-DC电源转换器由于在电力转换应用(例如电动汽车和可再生能源)中的电应力和可变电源条件下工作而易于退化和故障。由于电解质的蒸发,某些关键组件(例如电解电容器)会随着时间的流逝而退化。在本文中,提出了一种基于模型观察器的方案,以监视Buck转换器的状态并估算其组成参数,例如电容和电感。首先,提出了一个诊断观察者,并将生成的残差矢量用于故障检测和隔离。其次,使用另一种具有自适应反馈定律的新型观测器来重构组件条件参数,例如电容和电感。此外,对观察者的结构及其理论性能进行了分析和证明。与降压转换器中应用的现有可靠性方法相比,所提出的方案对关键参数进行在线估计。最后,研究了传统dc-dc降压和光伏应用中的降压转换器,以在仿真和实验室实验中测试和验证所提出方案的有效性。结果证明了所提出的组件参数估计方案的可行性,性能和优越性。

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