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Analysis of PLL Parameters' influence on the Stability of DFIG System under Weak Grid Conditions and its Active Configuration

机译:PLL参数对弱电网条件下DFIG系统稳定性的影响分析及活性配置

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摘要

In modern power systems with high penetration rates of renewable energy, its grids impedance cannot be ignored and varies dramatically in response to the changes of grid operation mode. The doubly-fed induction generator (DFIG) connected to this type of weak grid easily suffers from stability and performance problems. This is due to the increased interaction between the traditional phase-locked loop (PLL) and the weak grid. However, in practical applications, the control parameters of the traditional PLL are usually constant parameters designed under strong grid conditions, which greatly hinders the grid adaptability of DFIG and affects the stability of DFIG in weak grids. In order to reveal the interaction mechanism between the PLL and the weak grid, this paper focuses on the influence of the PLL bandwidth parameter on the impedance characteristics of the DFIG based on the sequence impedance model of DFIG system considering PLL. Then the safe and stable operating area of DFIG is obtained and deduced. Based on this, an adaptive PLL parameter control strategy is proposed. Finally, time-domain simulation (MATLAB / Simulink) verifies the validity of the theoretical analysis.
机译:在具有高可再生能源的高渗透率的现代电力系统中,其网格阻抗不能被忽略,响应于电网操作模式的变化而显着变化。连接到这种弱电网的双馈感应发电机(DFIG)容易受到稳定性和性能问题。这是由于传统锁相环(PLL)与弱网格之间的相互作用增加了。然而,在实际应用中,传统PLL的控制参数通常是在强大的电网条件下设计的恒定参数,这极大地阻碍了DFIG的电网适应性,并影响DFIG在弱网格中的稳定性。为了揭示PLL和弱电网之间的相互作用机制,本文重点介绍PLL带宽参数对考虑PLL的DFIG系统序列阻抗模型的DFIG阻抗特性的影响。然后获得DFIG的安全和稳定的操作面积并推导出来。基于此,提出了一种自适应PLL参数控制策略。最后,时间域模拟(MATLAB / SIMULINK)验证了理论分析的有效性。

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