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PV array voltage range extension for photovoltaic inverters using a mini-boost

机译:使用微型升压器的光伏逆变器的光伏阵列电压范围扩展

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Photovoltaic (PV) plants are designed at higher voltage and lower current operation in order to reduce the overall system installation cost. Multiple PV modules connected in series are prone to shading problems which leads to loss of energy harvested. PV inverters without a boost stage are more efficient, by removing the additional power stage, but are prone to energy harvesting loss when the array is partially shaded and the voltage drops below the minimum operating voltage. Instead, PV inverters equipped with a boost stage improve the range of conditions where energy can be harvested but add additional losses to the system reducing the efficiency. In this paper, a new converter power stage topology design and methodology optimization is proposed in the form of a mini-boost, a cost-effective and attractive solution to the traditional approach. The mini-boost extends the DC voltage range for energy harvesting under shading conditions and low irradiance conditions and only needs to process a fraction of the power leading to a cost effective and attractive solution. A comparative analysis under different irradiance levels is presented to illustrate the advantages in energy harvesting obtained with the mini-boost solution. Simulations and experimental results using a dual mini-boost dc-dc stage and 3-phase 3-level neutral point clamped inverter level are presented to validate the proposed dc-bus extension range for energy harvesting.
机译:光伏(PV)工厂设计为在较高的电压和较低的电流下运行,以降低总体系统安装成本。串联连接的多个PV模块容易出现遮光问题,从而导致能量收集损失。不带升压级的PV逆变器通过移除额外的功率级来提高效率,但是当阵列部分被遮挡并且电压下降到最小工作电压以下时,则容易产生能量收集损失。相反,配备升压级的PV逆变器改善了可收集能量的条件范围,但给系统增加了额外的损耗,从而降低了效率。本文以微型升压的形式提出了一种新的转换器功率级拓扑设计和方法优化,它是传统方法的一种经济高效且有吸引力的解决方案。微型升压器扩展了在遮光条件和低辐照条件下收集能量的直流电压范围,并且只需要处理一小部分功率即可获得具有成本效益的有吸引力的解决方案。提出了在不同辐照度水平下的对比分析,以说明使用微型升压解决方案获得能量的优势。提出了使用双微型升压dc-dc级和三相3级中性点钳位逆变器级的仿真和实验结果,以验证提出的用于能量收集的dc总线扩展范围。

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