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Single-stage boost inverter reliability in solar photovoltaic applications

机译:太阳能光伏应用中的单级增压变频器可靠性

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The boost inverter presents an interesting topology for solar photovoltaic (PV) applications as a single stage that provides regulated, boosted, and inverted output voltage from a nonlinear dc input. While the boost inverter has been previously addressed from design, implementation, and control perspectives, this paper analyzes its fault modes, failures, and reliability. The inverter is first experimentally tested to validate a simulation model used in the reliability analysis. The simulation model is then used to analyze the effect of various faults on the system performance. Results of this analysis yield a Markov reliability model from which the mean-time-to-failure (MTTF) of the inverter is found. Results show that the boost inverter can be a very reliable topology with low component count for PV applications.
机译:升压逆变器为太阳能光伏(PV)应用提供了一个有趣的拓扑,作为从非线性DC输入提供调节,提升和反相输出电压的单级。 虽然升压变频器以前从设计,实施和控制的角度来看,但本文分析了其故障模式,故障和可靠性。 第一逆变器首先经过实验测试以验证可靠性分析中使用的仿真模型。 然后使用仿真模型来分析各种故障对系统性能的影响。 该分析的结果产生了马尔可夫可靠性模型,从中找到了逆变器的平均故障(MTTF)。 结果表明,增压逆变器可以是具有低分量计数的PV应用的非常可靠的拓扑。

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