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Transient Stability of Voltage-Source Converters With Grid-Forming Control: A Design-Oriented Study

机译:电压源转换器具有网格形成控制的瞬态稳定性:设计为导向的研究

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摘要

Driven by the large-scale integration of distributed power resources, grid-connected voltage-source converters (VSCs) are increasingly required to operate as grid-forming units to regulate the system voltage/frequency and emulate the inertia. While various grid-forming control schemes have been reported, their transient behaviors under large-signal disturbances are still not fully explored. This article addresses this issue by presenting a design-oriented transient stability analysis of the grid-forming VSCs. First, four typical grid-forming control schemes, namely, the power-synchronization control (PSC), the basic droop control, the droop control with low-pass filters (LPFs), and the virtual synchronous generator (VSG) control, are systematically reviewed, whose dynamics are characterized by a general large-signal model. Based on this model, a comparative analysis on the transient stabilities of different control schemes is then carried out. It reveals that the PSC and the basic droop control can retain a stable operation as long as there are equilibrium points, due to their noninertial transient responses, while the droop control with LPFs and the VSG control can be destabilized even if the equilibrium points exist, due to the lack of damping on their inertial transient responses. With the phase portrait, the underlying stability mechanism is explicitly elaborated, and the quantitative impacts of the controller gains and the virtual inertia are clearly identified. Subsequently, controller design guidelines are proposed to enhance the system damping as well as the transient stability. Finally, experimental results are provided to verify the theoretical analysis.
机译:由分布式电力资源的大规模集成驱动,越来越需要电网连接电压 - 源转换器(VSC)作为网格形成单元,以调节系统电压/频率并模拟惯性。虽然已经报道了各种网格形成控制方案,但在大信号干扰下的瞬态行为仍未完全探索。本文通过呈现GRID形成VSC的设计导向的瞬态稳定性分析来解决此问题。首先,四个典型的网格形成控制方案,即功率同步控制(PSC),基本下垂控制,具有低通滤波器(LPF)的下垂控制和虚拟同步发电机(VSG)控制,是系统的审查的是,其动态的特征在于一般的大信号模型。基于该模型,然后进行了对不同控制方案的瞬态稳定性的比较分析。它揭示了PSC和基本下垂控制可以保持稳定的操作,只要由于它们的非线性瞬态响应,即使存在LPF和VSG控制的下垂控制也可能不稳定,即使存在均衡点,由于缺乏阻尼的惯性瞬态反应。利用相位肖像,明确地阐述了潜在的稳定机制,并清楚地识别了控制器增益和虚拟惯性的定量影响。随后,提出了控制器设计指南以增强系统阻尼以及瞬态稳定性。最后,提供了实验结果来验证理论分析。

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