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Transient Stability Analysis and Control Design of Droop-Controlled Voltage Source Converters Considering Current Limitation

机译:考虑电流限制的下垂电压源变换器的暂态稳定性分析与控制设计

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In the modern power grid, distributed generators are widely connected to the grid via voltage source converters (VSCs). Analyzing the transient stability of VSCs under large disturbances is useful for maintaining the security of the grid. However, this topic is very little studied. In this paper, the transient stability behavior of the droop-controlled VSC is theoretically explained. In particular, it is shown that transient instability can occur to the droop-controlled VSC when its current is saturated under large disturbances. In addition, the dynamics of the VSC under voltage sags that could incur instability problem is elaborately studied to consider special non-fault disturbances. To deal with this instability problem, a stability enhanced P-f droop control is proposed. Simulations and hardware-in-the-loop experiments verify the validity of the transient stability analysis and the effectiveness of the proposed control scheme.
机译:在现代电网中,分布式发电机通过电压源转换器(VSC)广泛连接到电网。分析大干扰下的VSC的暂态稳定性对于维护电网的安全性很有用。但是,对该主题的研究很少。本文从理论上解释了下垂控制的VSC的暂态稳定行为。特别地,已经表明,当下垂控制的VSC的电流在大的干扰下达到饱和时,会出现瞬态不稳定性。此外,针对可能引起不稳定问题的电压骤降下的VSC动力学进行了精心研究,以考虑特殊的非故障干扰。为了解决该不稳定性问题,提出了一种稳定性增强的P-f下垂控制。仿真和硬件在环实验证明了暂态稳定分析的有效性以及所提出控制方案的有效性。

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