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Optimal Design of Modern Transformerless PV Inverter Topologies

机译:现代无变压器光伏逆变器拓扑结构的优化设计

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摘要

The design optimization of H5, H6, neutral point clamped, active-neutral point clamped, and conergy-NPC transformerless photovoltaic (PV) inverters is presented in this paper. The components reliability in terms of the corresponding malfunctions, affecting the PV inverter maintenance cost during the operational lifetime period of the PV installation, is also considered in the optimization process. According to the results of the proposed design method, different optimal values of the PV inverter design variables are derived for each PV inverter topology and installation site. The H5, H6, neutral point clamped, active-neutral point clamped and conergy-NPC PV inverters designed using the proposed optimization process feature lower levelized cost of generated electricity and lifetime cost, longer mean time between failures and inject more PV-generated energy into the electric grid than their nonoptimized counterparts, thus maximizing the total economic benefit obtained during the operational time of the PV system.
机译:本文介绍了H5,H6,中性点钳位,有源-中性点钳位以及Conergy-NPC无变压器光伏(PV)逆变器的设计优化。在优化过程中,还要考虑组件故障的可靠性,这些故障会影响光伏设备在其使用寿命内的逆变器维护成本。根据所提出的设计方法的结果,针对每个光伏逆变器拓扑结构和安装地点,得出了不同的光伏逆变器设计变量最佳值。使用建议的优化过程设计的H5,H6,中性点钳位,有源中性点钳位和conergy-NPC光伏逆变器具有较低的发电成本和使用寿命成本,更长的平均故障间隔时间以及将更多的PV发电能量注入与未优化的电网相比,电网的效率更高,从而最大程度地提高了光伏系统运行期间的总体经济效益。

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