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Online Condition Monitoring of Electrolytic Capacitors in DC-DC Interleaved Boost Converters, Adopting a Model-Free Predictive Controller

机译:DC-DC交错升压转换器中电解电容器的在线状态监测,采用无模型预测控制器

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Aluminum electrolytic capacitors (AECs) are widely used in the DC link of power converters, such as the DC-DC interleaved boost converter (IBC), which offers many advantages over the conventional amplifier converter. It is well known that AECs failures represent the major cause for breakdown of power electronics equipment. Hence, the development of robust control strategies, that allow to evaluate the electrolytic capacitor state, while keeping the performance of the converter control strategies, even under the occurrence of a capacitor fault, gains further emphasis. For that purpose, model-based predictive control (MBPC) applied to power electronics is a hot research topic that has been receiving the attention of researchers, given its advantages in terms of robustness, reduced tuning effort and, when applicable, fault tolerance. In turn, model-free predictive control (MFPC) is an underdeveloped research topic, that requires further efforts. To the best of the authors' knowledge, the literature does not report any MFPC strategy aimed at DC-DC converters. Accordingly, this paper proposes the combination of a novel MFPC strategy with the Short Time Fourier Transform (STFT) method, aiming to perform an online estimation of the ESR and C parameters, thus allowing a continuous evaluation of the electrolytic capacitor condition and, consequently, avoid a total system failure. The effectiveness of the proposed strategy is verified by several experimental tests.
机译:铝电解电容器(AECS)广泛用于功率转换器的直流链路,例如DC-DC交错升压转换器(IBC),其提供了与传统放大器转换器相比的许多优点。众所周知,AECS失败代表了电力电子设备分解的主要原因。因此,允许评估电解电容器状态的鲁棒控制策略的发展,同时保持转换器控制策略的性能,即使在电容器故障的发生下,也进一步强调。为此目的,应用于电力电子设备的模型的预测控制(MBPC)是一种热门研究主题,这是一项热门研究主题,这是在鲁棒性,减少调整工作方面的优势,在适用的情况下,在适用的情况下,鉴于其优势。反过来,无模型预测控制(MFPC)是一个欠发达的研究主题,需要进一步努力。据作者所知,文献未报告针对DC-DC转换器的任何MFPC策略。因此,本文提出了一种新的MFPC策略与短时间傅里叶变换(STFT)方法的组合,旨在执行ESR和C参数的在线估计,从而允许对电解电容器的连续评估,因此,避免整个系统故障。拟议策略的有效性由几种实验测试验证。

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