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首页> 外文期刊>IEEE Transactions on Power Electronics >Large-Signal Stability of Grid-Forming and Grid-Following Controls in Voltage Source Converter: A Comparative Study
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Large-Signal Stability of Grid-Forming and Grid-Following Controls in Voltage Source Converter: A Comparative Study

机译:电压源转换器中的网格形成和网格控制的大信号稳定性:比较研究

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摘要

The grid-forming and grid-following controls are adopted in three-phase voltage source converters according to different grid conditions. However, the basic operation principle of the two kinds of control is different and will lead to the instability of the grid-connected system through various paths. In this article, the energy function model of the grid-forming and grid-following controlled converters are established and compared in detail. The influence of system parameters is studied, and the large-signal stability boundaries are derived through a general method. Moreover, compared to the grid-forming controlled converter, the grid-following converter will lose stability by exhibiting a varying damping coefficient transient. The equivalent damping coefficient can be used as a criterion of whether the grid-forming/following control is suitable for the weak/strong grid condition. The simulation and experiment results show the difference of the transient process and validate the control criterion for different grid strength under large-signal disturbance.
机译:根据不同的电网条件,在三相电压源转换器中采用网格形成和电网。然而,两种控制的基本操作原理是不同的,并将导致网格连接系统的不稳定性通过各种路径。在本文中,建立并比较了网格形成和电网跟随控制转换器的能量功能模型。研究了系统参数的影响,并且通过一般方法导出了大信号稳定边界。此外,与网格形成控制转换器相比,电网跟随转换器将通过表现出不同的阻尼系数瞬态而失去稳定性。等效阻尼系数可以用作网格形成/后控制是否适合弱/强的网格状况的标准。模拟和实验结果显示了瞬态过程的差异,并在大信号干扰下验证不同电网强度的控制标准。

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