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Reliability of DC-link Capacitors in Two-Stage Micro-Inverters Under Different PV Module Sizes

机译:不同光伏模块尺寸的两阶段微逆变器中直流环节电容器的可靠性

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The dc-link capacitor is one of the lifetime-limiting components in the photovoltaic (PV) micro-inverters, whose reliability should be evaluated carefully during the design. In micro-inverters, the PV module size (e.g., number of cells) is the parameter that determines the power rating of the PV module. The PV module size employed in the micro-inverter can vary for different manufacturers, and this variation can strongly affect the thermal stress and reliability of the dc-link capacitor in micro-inverters. To address this issue, an experimental-based reliability assessment is carried out in this paper using a two-stage micro-inverter where 60-cell and 72-cell PV modules are considered. Three different daily mission profiles are employed during the experimental test. The thermal stress and reliability of the dc-link capacitor under different operating conditions are evaluated together with the energy yield. The results indicate that employing a 60-cell PV module is more beneficial for the micro-inverter, especially during a clear day, where 19 % more energy can be captured during the entire lifespan of the micro-inverter. Thus, using the 60-cell PV module offers a better tradeoff between the reliability and energy yield of the micro-inverter.
机译:直流链路电容器是光伏(PV)微逆变器中限制寿命的组件之一,在设计过程中应仔细评估其可靠性。在微型逆变器中,PV模块的尺寸(例如,电池数量)是确定PV模块额定功率的参数。微型逆变器中采用的PV模块尺寸可能因制造商而异,并且这种变化会严重影响微型逆变器中直流链路电容器的热应力和可靠性。为了解决这个问题,本文使用两级微型逆变器进行了基于实验的可靠性评估,其中考虑了60电池和72电池的PV模块。在实验测试中,采用了三种不同的日常任务配置文件。评估了不同工作条件下直流母线电容器的热应力和可靠性以及能量产生率。结果表明,采用60电池PV组件对微型逆变器更有利,尤其是在晴天期间,在晴天,微型逆变器的整个使用寿命期间可捕获19%的能量。因此,使用60电池PV模块可在微型逆变器的可靠性和能量产出之间提供更好的权衡。

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