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Optimal Photovoltaic Multi-String Inverter Topology Selection Based on Reliability and Cost Analysis

机译:基于可靠性和成本分析的最佳光伏多弦逆变器拓扑选择

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Inverters are the most vulnerable parts of the photovoltaic (PV) power plants. Therefore, choosing an appropriate inverter topology to maximize the reliability and availability of the PV power plants is very important, especially in the large scale power plants. This paper proposes a novel index named Total Financial Losses (TFL) to compare different inverter topologies from reliability and energy losses points of view. Initial cost, repair cost, financial losses due to the downtime and element losses, and environmental conditions are considered in evaluating the TFL index. Using this universal index, the optimal inverter topology and its switching frequency are determined when the TFL is minimized. Considering the fact that the reliability of power electronic devices is strongly dependent on their power losses and ambient conditions, the exact failure rates of vulnerable elements such as capacitors, switches, diodes, and cooling system are calculated. The system availability and frequencies of encountering the failure states are determined using the Markov method. Finally, the optimal photovoltaic inverter of the 150 kW power range is selected out of commonly used two-level and three-level topologies.
机译:逆变器是光伏(PV)发电厂最脆弱的部分。因此,选择适当的逆变器拓扑,以最大限度地提高光伏电站的可靠性和可用性非常重要,尤其是在大型发电厂中。本文提出了一个名为总财务损失(TFL)的新索引,以比较不同的逆变器拓扑从可靠性和能量损失的观点。初始成本,修复成本,由于停机和元素损失而导致的财务损失以及在评估TFL指数时考虑环境条件。使用该通用索引,当TFL最小化时确定最佳逆变器拓扑及其开关频率。考虑到电力电子设备的可靠性强大地取决于其功率损耗和环境条件,计算诸如电容器,开关,二极管和冷却系统的易受攻击元件的确切失效率。使用Markov方法确定遇到故障状态的系统可用性和频率。最后,选择了150 kW功率范围的最佳光伏逆变器,其中包括常用的两级和三级拓扑。

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