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A high gain cascaded boost converter with reduced voltage stress for PV application

机译:用于光伏应用的具有降低电压应力的高增益级联升压转换器

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摘要

This Paper proposes a high voltage gain dc-dc lift-up converter for photovoltaic based power generation especially used for microgrid applications. Proposed converter has two stage boosting with effective overall gain in form of quadratic-quadrupler boost (QQB) factor. The converter achieves high voltage gain with low duty ratio operation which is necessary for efficient operation of boost converter. Here, a lower value of winding turns ratio in coupled inductor was selected to reduce leakage inductance and voltage stress across switching devices. To analyze the converter operation, simulation was carried out using PSIM software and results were validated using experiments conducted on a 200 W hardware prototype developed in laboratory. A boost factor of 10.5 is achieved at a turn's ratio of 1.9 and about 35% of duty cycle. Maximum efficiency of similar to 92.9% is achieved for the proposed converter at 175 W output power operation for 40 V input voltage.
机译:本文提出了一种用于光伏发电的高电压增益dc-dc提升转换器,尤其适用于微电网应用。拟议的转换器具有两级升压,并以二次-四倍增压器(QQB)因子的形式实现了有效的总体增益。该转换器以低占空比操作实现了高电压增益,这对于升压转换器的有效操作是必需的。在此,选择了耦合电感器中较低的绕组匝数比,以降低开关设备两端的漏感和电压应力。为了分析转换器的运行,使用PSIM软件进行了仿真,并使用在实验室开发的200 W硬件原型上进行的实验对结果进行了验证。匝数比为1.9且占空比约为35%时,升压系数为10.5。对于拟议的转换器,在40 V输入电压下输出功率为175 W时,该转换器的最大效率达到了92.9%。

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