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High-Voltage DC-DC Converter Topology for PV Energy Utilization-Investigation and Implementation

机译:用于光伏能源利用的高压DC-DC转换器拓扑-研究与实现

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摘要

This paper exploited the utilization of photovoltaic (PV) energy system with high-voltage (HV) output DC-DC converter. Classical hoost converters are used for both renewable energy integration and HV applications, but limited by reducing output/efficiency in performance. Moreover, as parasitic elements suppress the power transfer ratio, converter needs to maximize the PV energy utilization. This investigation study focused to include additional parasitic elements (voltage-lift technique) to a standard DC-DC buck converter and to overcome all the above drawbacks to maximize the PV power generation. The proposed power circuitry substantially improves the output power gain transfer ratio and a prototype hardware module is implemented using industrial standard DSP TMS 320F2812. Numerical simulation development followed by an experimental prototype implementation is carried out in this investigation. A set of numerical and experimental results is provided in this paper, which show close conformity with the theoretical background.
机译:本文利用光伏(PV)能源系统与高压(HV)输出DC-DC转换器的利用。传统的霍尔转换器既可用于可再生能源集成,也可用于高压应用,但由于降低了输出/性能效率而受到限制。此外,由于寄生元件抑制了功率传输比,转换器需要最大限度地利用PV能量。这项调查研究的重点是在标准DC-DC降压转换器中包括其他寄生元件(升压技术),并克服上述所有缺点,以最大程度地提高PV发电量。所提出的电源电路大大提高了输出功率增益传输比,并且使用工业标准DSP TMS 320F2812实现了原型硬件模块。在这项研究中进行了数值模拟开发,然后进行了实验原型实现。本文提供了一组数值和实验结果,这些结果与理论背景非常吻合。

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