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Review of static voltage stability screening methods for application in AC power grids with large-scale wind penetration and VSC HVDC interconnectors

机译:大规模风渗透和VSC HVDC互联网交流电网应用静电稳定性筛选方法综述

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The past decade has seen VSC-HVDC systems deployed to establish transmission schemes both onshore and offshore, often for interconnectors utilizing underground or subsea cables but also a few systems designed to operate on long overhead transmission lines (OHTLs) [1]. In specific literature, it is referred to the capability of VSC schemes being able to feed power into passive AC grids, hence with a short-circuit capacity equal to zero. However, for proper AC grid operation, there are constraints and power transmission limitations, which come inherently from the physical nature of the AC systems on the receiving and sending ends of the power interconnector, related to their capability to keep stable operating voltage. This paper intends to examine this aspect in order to shed some light on the issue of power transmission limitations for VSC HVDC interconnectors as a function of AC grid characteristics.
机译:过去十年已经看到VSC-HVDC系统部署,以建立陆上和海上的传输方案,通常用于利用地下或海底电缆的互联机,而且还有一些设计用于在长开销传输线(OHTLS)[1]上操作的系统。在特定文献中,它被称为VSC方案能够将电力馈送到无源AC电网的电力,因此短路容量等于零。然而,对于适当的AC电网操作,存在限制和电力传输限制,其固有地来自电力互联器的接收和发送端的AC系统的物理性质,与其保持稳定的工作电压的能力相关。本文打算检查这个方面,以便在VSC HVDC互连器的电力传输限制问题上阐明作为AC网格特性的函数。

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