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Comparative Analysis of Synchronization Stability Domain for Power Systems Integrated with PMSG Based on the Direct Method

机译:基于直接方法的PMSG集成的电力系统同步稳定域的比较分析

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The traditional time-domain simulation method evaluates the system stability according to the trajectory during and after the fault. In contrast, the direct method only integrates the trajectory during the fault without considering the dynamics of the trajectory after the fault. The nearest unstable equilibrium point (UEP) method, the controlling unstable equilibrium point (CUEP) method and the potential energy boundary surface (PEBS) method are the classical direct methods. This paper presents the energy function to approximate the boundary of the synchronization stability domain of PMSG in the single PMSG-Infinite bus system, and the three direct methods are analyzed from the perspective of the stability domain. First, a reduced-order nonlinear model describing the dynamic synchronization characteristics of PMSG is established. Based on this model, the transient energy function of PMSG is derived by first integration method. Then, the boundary of the synchronization stability domain is approximated by the nearest UEP method, the CUEP method and the PEBS method. Finally, both simulation and experimental results are presented and thoroughly discussed so that it is possible to establish a fair comparison for the three direct methods.
机译:传统的时域仿真方法根据故障期间和之后根据轨迹评估系统稳定性。相比之下,直接方法仅在故障期间集成轨迹而不考虑故障后轨迹的动态。最接近的不稳定平衡点(UEP)方法,控制不稳定的平衡点(CUEP)方法和势能边界表面(PEBB)方法是经典的直接方法。本文介绍了近似PMSG中PMSG同步稳定域的边界的能量功能,并且从稳定域的角度分析了三种直接方法。首先,建立描述PMSG的动态同步特性的阶数非线性模型。基于该模型,PMSG的瞬态能量函数通过第一积分法导出。然后,通过最近的UEP方法,CUEP方法和PEB方法近似于同步稳定域的边界。最后,展示和彻底讨论了模拟和实验结果,以便可以为三种直接方法建立公平的比较。

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