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Assessment of Isolated and Non-Isolated DC-DC Converters for Medium-Voltage PV Applications

机译:用于中电压PV应用的隔离和非隔离直流转换器的评估

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The potential of Photovoltaic (PV) panels as a main tool of harnessing solar energy is increasing with the advancements in their power conditioning and conversion stages that vary based on applications. This paper focuses on the conversion of a 22kW PV array output from low-voltage to medium-voltage level (400V to 7kV). This high voltage conversion ratio is difficult to achieve using conventional single-stage DC-DC converters. Thus, different alternatives are proposed and compared here, namely, the Parallel-Input Series-Output (PISO) connection of two different stages using both isolated (full-bridge) and non-isolated DC-DC converters. The converters are compared on the basis of efficiency, footprint, components rating and reliability. Thus, the isolated DC-DC converter system efficiency was estimated at 797%, compared to 93 % for the non-isolated system, keeping into account the variations in terms of the filtering capacitor requirements to maintain a constant minimal voltage ripple at the output which is in favor of the non-isolated systems.
机译:光伏(PV)面板作为利用太阳能的主要工具的电势与在它们的功率调节和转换阶段的进步而变化的基础上应用不断增加。本文重点研究从低电压输出到中等电压电平(400V到7kV的)一个22kW的PV阵列的转换。这个高电压转换比是难以用传统的单级DC-DC转换器来实现。因此,不同的替代方案,提出并在这里进行比较,即,同时使用分离(全桥)的非隔离DC-DC转换器的两个不同的阶段和的并行输入系列输出(PISO)连接。所述转换器效率,足迹,组件等级和可靠性的基础上进行比较。因此,分离的DC-DC变流器系统的效率估计为797 %,而对于非分离系统93 %,保持顾及的滤波电容器的要求方面的变化,以保持在一个恒定的最小电压纹波输出其是有利于非隔离系统。

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