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Delta-Connected Cascaded H-Bridge Multilevel Converters for Large-Scale Photovoltaic Grid Integration

机译:用于大规模光伏电网集成的Delta连接级联H桥多电平转换器

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The cascaded H-bridge (CHB) converter is becoming a promising candidate for use in next generation large-scale photovoltaic (PV) power plants. However, solar power generation in the three converter phase-legs can be significantly unbalanced, especially in a large geographically-dispersed plant. The power imbalance between the three phases defines a limit for the injection of balanced three-phase currents to the grid. This paper quantifies the performance of, and experimentally confirms, the recently proposed delta-connected CHB converter for PV applications as an alternative configuration for large-scale PV power plants. The required voltage and current overrating for the converter is analytically developed and compared against the star-connected counterpart. It is shown that the delta-connected CHB converter extends the balancing capabilities of the star-connected CHB and can accommodate most imbalance cases with relatively small overrating. Experimental results from a laboratory prototype are provided to validate the operation of the delta-connected CHB converter under various power imbalance cases.
机译:级联H桥(CHB)转换器正成为在下一代大型光伏(PV)电厂中使用的有希望的候选者。但是,三个转换器相脚中的太阳能发电可能会非常不平衡,尤其是在地理位置分散的大型电厂中。三相之间的功率不平衡定义了向电网注入平衡的三相电流的极限。本文对最近提出的用于光伏应用的三角形连接CHB转换器的性能进行了量化,并通过实验证实了该技术是大型光伏电站的替代配置。通过分析得出转换器所需的电压和电流过额定值,并将其与星形连接的同类产品进行比较。结果表明,三角形连接的CHB转换器扩展了星形连接的CHB的平衡能力,并可以在相对较小的过高额定值的情况下适应大多数不平衡情况。提供了来自实验室原型的实验结果,以验证在各种功率不平衡情况下三角形连接的CHB转换器的操作。

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