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Fault-Tolerant Strategy for a Photovoltaic DC--DC Converter

机译:光伏DC-DC转换器的容错策略

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摘要

The photovoltaic (PV) technology has a small impact on the environment and is suitable for a wide range of applications. The main barrier for a more extensive implementation has been the reliability, mainly related to the power converters. According to this consideration, this paper presents an open-circuit fault diagnosis and fault-tolerant scheme for a three-level boost converter in a PV power system using batteries as storage devices. The fault diagnostic method takes advantage only of the control variables used for maximum power point tracking and output dc-link capacitor voltage balance. The fault-tolerant strategy requires only a few components added to the original three-level boost converter, so that, under an open-circuit power switch fault, it can be partly reconfigured into a two-level boost converter ensuring battery energy supply. Experimental results verify the proposed fault diagnostic method and reconfiguration for fault-tolerant operation.
机译:光伏(PV)技术对环境的影响很小,适合广泛的应用。更广泛实施的主要障碍是可靠性,主要与功率转换器有关。基于这一考虑,本文提出了一种以电池为储能装置的光伏发电系统中的三级升压转换器的开路故障诊断和容错方案。故障诊断方法仅利用用于最大功率点跟踪和输出直流链路电容器电压平衡的控制变量。容错策略仅需要在原始三级升压转换器中添加一些组件,因此在开路电源开关故障下,可以部分将其重新配置为两级升压转换器,以确保电池能量的供应。实验结果验证了所提出的故障诊断方法和用于容错操作的重新配置。

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