一种用于太阳能光伏组件的高效容错级联升压降压转换器

S. Siouane, S. Jovanovic, P. Poure, E. Jamshidpour
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引用次数: 7

摘要

可再生能源日益成为一种替代能源。在可用的能源中,光伏(PV)在许多应用中具有显著的增长和显著的渗透。基于pv的电源由开关电源转换器管理,当电源故障时,连接的活动将停止。本文提出了一种新颖的晶体管故障下的级联升压降压变换器容错电路。同时考虑了晶体管的开路故障和短路故障。该电路的容错操作基于以下要素:容错级联升压降电路、晶体管故障诊断和适当的可重构控制。所提出的容错电路的独创性在于基于单个同步冗余晶体管实现双级联级的全局重新配置。此外,故障检测是基于电感电流的波形。提出了一种具有快速故障后管理的高效可重构控制方法。仿真结果验证了容错操作的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient Fault Tolerant Cascaded Step-Up Step-Down Converter for Solar PV Modules
Renewable energy sources become an increasing alternative power source. Among the available energy sources, Photovoltaic (PV) has a remarkable growth and a significant penetration in many applications. PV-based power supplies are managed by switching power converters and the connected activities will halt when power supply fails. In this paper, we propose an original fault tolerant cascaded step-up step-down converter circuit, under transistor fault. Both open-circuit fault (OCF) and short-circuit fault (SCF) of transistors are considered. The fault tolerant operation of the proposed circuit is based on the following elements: fault tolerant cascaded step-up step-down circuit, transistor fault diagnosis and suitable reconfigurable control. The originality of the proposed fault tolerant circuit lays on implementing a global reconfiguration for the two-cascaded stages, based on a single synchronous redundant transistor. Moreover, the fault detection is based on the waveforms of the inductance currents. An efficient reconfigurable control with fast post-fault management is also proposed. Some selected simulation results are provided to validate the effectiveness of the fault tolerant operation.
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