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首页> 外文期刊>IEEE Transactions on Power Delivery >Offshore Wind Farm Modeling Accuracy and Efficiency in MMC-Based Multiterminal HVDC Connection
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Offshore Wind Farm Modeling Accuracy and Efficiency in MMC-Based Multiterminal HVDC Connection

机译:基于MMC的多端子HVDC连接中的海上风电场建模精度和效率

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摘要

The large number of switching elements in the modular multilevel converter (MMC) is a challenging problem when modeling the MMC-HVDC systems for the computation of electromagnetic transients. The modeling complexity increases even further when a multiterminal (MT) MMC-HVDC system is used to integrate offshore wind farms (OWFs) with power-electronics-based wind energy converters, such as doubly fed induction generators (DFIGs). This paper compares modeling accuracy and computational performances for various combinations of MMC and OWF models. Onshore and offshore ac fault simulations are performed for an OWF system composed of DFIG-type wind turbines and connected to a practical ac grid through an MT MMC-HVDC system. The OWF system model includes the detailed representation of the offshore collector grid and the associated overcurrent protection. The offshore MMC controls include an offshore fault current limiter and fast OWF power generation reduction-based fault-ride-through function.
机译:在对MMC-HVDC系统建模以计算电磁瞬变时,模块化多电平转换器(MMC)中的大量开关元件是一个具有挑战性的问题。当使用多终端(MT)MMC-HVDC系统将海上风电场(OWF)与基于功率电子技术的风能转换器(例如双馈感应发电机(DFIG))集成在一起时,建模的复杂性会进一步增加。本文比较了MMC和OWF模型的各种组合的建模精度和计算性能。对由DFIG型风力发电机组成的OWF系统执行陆上和海上交流故障仿真,并通过MT MMC-HVDC系统将其连接到实际的交流电网。 OWF系统模型包括离岸集热网的详细表示以及相关的过流保护。海上MMC控件包括海上故障电流限制器和基于OWF发电量减少的快速故障穿越功能。

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