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Impact of DFIG with phase lock loop dynamics on power systems small signal stability

机译:具有锁相环动态特性的DFIG对电力系统小信号稳定性的影响

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With increased penetration of wind power, the impact of doubly fed induction generator (DFIG) on small signal stability of power systems gains more and more attention. Control of DFIGs depends on accurate phase lock information of DFIG terminal voltage from phase lock loop (PLL). This paper carefully evaluates the influence of PLL dynamics and steady-state error on low frequency oscillation using an analytical approach based on eigenvalue analysis. Simulation results show that PLL's steady-state error hardy influences the small signal stability while dynamics of PLL could change electromechanical eigenvalues of power systems with certain PI parameters. PLL's state variables could participate in low frequency oscillation.
机译:随着风力发电的普及,双馈感应发电机(DFIG)对电力系统小信号稳定性的影响越来越受到关注。 DFIG的控制取决于来自锁相环(PLL)的DFIG端子电压的准确锁相信息。本文采用基于特征值分析的分析方法,仔细评估了锁相环动力学和稳态误差对低频振荡的影响。仿真结果表明,PLL的稳态误差很难影响小信号的稳定性,而PLL的动力学特性可以改变具有一定PI参数的电力系统的机电特征值。 PLL的状态变量可能会参与低频振荡。

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