独立光伏系统中多电平逆变器功率器件老化缓解控制方法

M. Aly, E. Ahmed, M. Shoyama
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引用次数: 0

摘要

多电平逆变器以其效率高、漏电流小、电磁干扰低等优点在光伏系统中得到了广泛的应用。由于功率器件的热应力不均匀,使得功率器件在连续运行过程中出现老化现象。为此,本文提出了一种新的老化减缓控制方法,以提高功率器件中MIs系统在老化影响下的可靠性。该方法的运行有三种运行模式,可以根据老化的程度和类型进行调整。在中小型老化水平下,该方法保留了逆变器的全部输出功率额定值,并最大限度地从光伏组件中提取能量。而在高老化电平区域和多器件故障情况下,该方法可以降低输出功率,从而保持逆变器的连续运行,而不会产生有害后果。仿真和实验结果与传统方法进行了比较,证明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ageing Mitigation Control Method for Power Devices in Multilevel Inverters in Standalone PV Systems
Multilevel inverters (MIs) have become widely used in photovoltaic (PV) systems for their high efficiency, reduced leakage currents, and reduced EMI levels. Although MIs suffer from unequal thermal stresses in power devices that lead to aging of power device with their continuous operation. Therefore, this paper proposes a new aging mitigation control (AMC) method to enhance the reliability of MIs against the aging effects in power devices. The operation of the proposed AMC method has three operating modes that are adapted according to the level and type of aging. In small and medium aging levels, the proposed method preserves the full output power ratings of the inverter with maximum energy extraction from PV modules. Whereas, in high aging level region and multiple devices failures, the proposed method reduces the output power so as to maintain continuous operation of the inverter without harmful consequences. The simulation and experimental results with comparisons to conventional methods show effective performance of the proposed AMC method.
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