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Analysis of the influence of different cable modelling for DC series offshore wind farm

机译:不同电缆建模对DC系列海上风电场的影响分析

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In this paper, a dc series offshore wind farm with an onshore modular multilevel converter (MMC) is presented with consideration of different cable models. Normally, the dc cable is represented either by a small capacitance or by pi-sections, which implies that the frequency-dependent effects of the HVDC cable are neglected. One should be careful when using these cable models for high frequency simulations, especially for dc series offshore wind farm, whose topology forms a resonance circuit and consequently, accurate model of cable should be adopted to represent the transient characteristic of the HVDC transmission system in a proper way. This paper shows that the two most common lumped parameter types of DC cable model: small capacitance and pi-section model are unable to provide equivalent damping effect as the Wideband cable model or universal line model (ULM). The Wideband model is suitable for Electromagnet Transients (EMT) analysis while its distributed parameters make it impossible to be transferred into a state-space representation. This paper first introduces the topology of a DC series offshore wind farm. Then the resonance characteristic of the wind farm topology is analysed based on different cable models. Finally the offshore wind farm is simulated with these three types of cable models and controlled by modular multilevel converter (MMC).
机译:在本文中,考虑了不同的电缆型号,提出了带有陆上模块化多电平转换器(MMC)的dc系列海上风电场。通常,直流电缆用较小的电容或pi截面表示,这意味着可以忽略HVDC电缆的频率相关影响。在将这些电缆模型用于高频仿真时,尤其是对于直流串联海上风电场而言,应格外小心,其拓扑结构构成一个谐振电路,因此,应采用精确的电缆模型来表示高压直流输电系统在电网中的瞬态特性。合适的方式。本文表明,DC电缆模型的两种最常见的集总参数类型:小电容和pi截面模型无法提供与宽带电缆模型或通用线路模型(ULM)相同的阻尼效果。宽带模型适用于电磁瞬态(EMT)分析,而其分布式参数使其无法转换为状态空间表示。本文首先介绍了DC系列海上风电场的拓扑结构。然后根据不同的电缆模型分析了风电场拓扑结构的共振特性。最后,使用这三种类型的电缆模型对海上风电场进行了仿真,并由模块化多电平转换器(MMC)控制。

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