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New High Voltage Gain Dual-boost DC-DC Converter for Photovoltaic Power Systems

机译:用于光伏电源系统的新型高压增益双升压DC-DC转换器

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This article presents a new circuit topology of a high-voltage step-up boost DC-DC converter for photovoltaic power systems. The converter boosts the low-output voltage of the solar cell to the required voltage for the load. The proposed circuit has various advantages compared to the conventional boost converters, namely a higher boost rate with low duty cycle, lower voltage stress on components, and higher efficiency. The equations of a dual-boost converter are analyzed, highlighting the advantages of the new DC/DC converter circuit topology. The operation principle is explained using the operating intervals equivalent circuits and operation waveforms. Then, mathematical and theoretical analyses of continuous and discontinuous conduction modes of the converter are presented. Losses and thus efficiency of the proposed converter are calculated using MATLAB (The MathWorks, Natick, Massachusetts, USA). Calculations are used to compare the efficiency of the proposed topology with others available in the literature regarding the benefits of decreasing cost and complexity. A photovoltaic system simulation model is developed using PSIM (Powersim Inc., Woburn, Massachusetts, USA) to validate the proposed converter. The proposed high voltage gain boost converter has been implemented for a 100-W load and tested to verify the principle of operation.
机译:本文介绍了一种用于光伏发电系统的高压升压升压DC-DC转换器的新电路拓扑。转换器将太阳能电池的低输出电压升压至负载所需的电压。与传统的升压转换器相比,该电路具有多种优势,即具有较高的升压速率和较低的占空比,较低的元件电压应力以及较高的效率。分析了双升压转换器的方程,突出了新型DC / DC转换器电路拓扑的优点。使用工作间隔等效电路和工作波形说明工作原理。然后,给出了转换器连续和不连续导通模式的数学和理论分析。使用MATLAB(美国马萨诸塞州内蒂克的MathWorks公司)计算出所建议转换器的损耗,从而提高效率。通过计算可以将提出的拓扑的效率与文献中其他有关降低成本和降低复杂性的好处进行比较。使用PSIM(美国马萨诸塞州沃本市的Powersim Inc.)开发了光伏系统仿真模型,以验证所提出的转换器。提议的高压增益升压转换器已针对100W负载实现,并经过测试以验证其工作原理。

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