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Effective damping support through VSC-HVDC links with short-term overload capability

机译:通过具有短时过载能力的VSC-HVDC链路提供有效的阻尼支持

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Damping service provision through VSC-based HVDC links has been extensively covered in the literature. However, little or no attention has been paid to the available range of active and reactive power modulation when the HVDC link is already operating at rated capacity. In these conditions some overload capability is usually assumed, ignoring the physical constraints imposed by the safe operating area of the IGBT modules in the converter. This paper presents, in a unified framework, the provision of damping support from VSC-HVDC links equipped with additional control for short-term overload capability. The performance of a Model Predictive Control (MPC) damping controller that accounts for the extended P/Q operating area of the converter is analysed. Case studies are presented to show that the extracted short-term overload capability can significantly improve the damping support from VSC-HVDC links. Simulation results also include the impact of damping control action on the junction temperatures of the IGBT modules of the converters, quantifying the effect of this service on the semiconductor temperature dynamics.
机译:通过基于VSC的HVDC链路提供的阻尼服务已在文献中广泛涉及。但是,当HVDC链路已经在额定容量下运行时,对有功和无功功率调制的可用范围几乎没有关注。在这些情况下,通常会假定某些过载能力,而忽略了转换器中IGBT模块的安全工作区所施加的物理限制。本文在一个统一的框架中介绍了来自VSC-HVDC链路的阻尼支持,该链路配备了针对短期过载能力的附加控制。分析了模型预测控制(MPC)阻尼控制器的性能,该控制器考虑了转换器的扩展P / Q操作区域。案例研究表明,提取的短期过载能力可以显着改善VSC-HVDC链路的阻尼支持。仿真结果还包括阻尼控制作用对转换器IGBT模块结温的影响,从而量化了这种服务对半导体温度动态的影响。

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