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Shunt VSC Based Subsynchronous Damping Control for DFIG-based Wind Farms Connected to an MMC-HVDC System

机译:基于分流VSC的基于DFIG的风电场的Subs同步阻尼控制,其连接到MMC-HVDC系统

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An emerging subsynchronous oscillation (SSO) associated with wind generators and voltage-sourced converter (VSC) based HVDC has been observed around the world. It is revealed that this new type of SSO is caused by the subsynchronous control interaction among power electronic converters and the grid. In this paper, the stability criterion of SSO is examined using frequency-dependent impedance models. Then a shunt VSC based subsynchronous damping control (SVSDC) has been proposed to reshape the impedance characteristic of the whole system and thus mitigate the SSO. The stability criterion and the control has been applied to a typical system with DFIG-based wind farms connected to a modular multilevel converter (MMC) based HVDC transmission. Impedance model based analyses as well as electromagnetic simulations have verified the effectiveness of the criterion and the control scheme. For its flexibility of capacity and deployment, the proposed SVSDC offers a promising option to address the SSO issues associated with wind generators and/or VSC-HVDCs.
机译:世界各地观察到与风力发电机和电压 - 源转换器(VSC)相关的HVDC相关的新出现的子同步振荡(SSO)。据透露,这种新型的SSO是由电力电子转换器和电网之间的子同步控制交互引起的。本文使用频率依赖性阻抗模型检查SSO的稳定性标准。然后,已经提出了一种分流VSC基于SUB1同步阻尼控制(SVSDC)以重塑整个系统的阻抗特性,从而减轻SSO。稳定性标准和控制已经应用于具有基于DFIG的风电场的典型系统,其基于模块化多电平转换器(MMC)的HVDC传输。基于阻抗模型的分析以及电磁模拟已经验证了标准和控制方案的有效性。为了其能力和部署的灵活性,所提出的SVSDC提供了有希望的选择,可以解决与风力发电机和/或VSC-HVDC相关的SSO问题。

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