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Stability Assessment of DFIG Subsynchronous Oscillation Based on Energy Dissipation Intensity Analysis

机译:基于能量耗散强度分析的DFIG子同步振荡稳定性评估

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Concerning the subsynchronous oscillation caused by the integration of doubly-fed induction generator (DFIG) to the power grid via the series compensation circuit, a method to assess the stability of subsynchronous oscillation based on the dissipation intensity is proposed in this article. First, the transient energy that DFIG generates in one oscillation period is defined as the dynamic energy of DFIG, and the model of DFIG dynamic energy containing internal control and external networks is constructed. And then, according to the Lyapunov stability theory, the negative gradient of dynamic energy is defined as the dissipation intensity, which reflects the dissipation effect of DFIG on the energy generated during oscillation. On this basis, the effect of the series compensation degree, phase-locked loop, and converter control parameters on subsynchronous oscillation is assessed, and real-time assessment of the stability level of DFIG-integrated power system is realized. Finally, a simulation model is built in RT-LAB to verify the proposed method. Simulation results demonstrate that the stability level of the system can be assessed accurately according to the value of dissipation intensity. When the value of dissipation intensity is positive, system oscillation converges. When the dissipation intensity is zero, the system oscillates with constant-amplitude oscillation. When the value of dissipation intensity is negative, system oscillation diverges.
机译:关于通过串联补偿电路集成了由双馈感应发电机(DFIG)集成到电网引起的子同步振荡,在本文中提出了一种评估基于耗散强度的下同步振荡稳定性的方法。首先,DFIG在一个振荡周期内产生的瞬态能量被定义为DFIG的动态能量,并且构造了包含内部控制和外部网络的DFIG动态能量的模型。然后,根据Lyapunov稳定性理论,动态能量的负梯度定义为耗散强度,这反映了DFIG对振荡期间产生的能量的耗散效果。在此基础上,评估了串联补偿度,锁相环和转换器控制参数的效果,并实现了DFIG集成电系统的稳定水平的实时评估。最后,建模模型内置在RT-Lab中,以验证所提出的方法。仿真结果表明,可以根据耗散强度的值准确地评估系统的稳定性水平。当耗散强度的值为正,系统振荡会聚。当耗散强度为零时,系统以恒定幅度振荡振荡。当耗散强度的值为负数时,系统振荡发散。

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