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Transient Angle Stability of Paralleled Synchronous and Virtual Synchronous Generators in Islanded Microgrids

机译:孤岛微电网中并联同步发电机的瞬态角度稳定性

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摘要

With the development of virtual synchronous generator (VSG) techniques, parallel operations of synchronous generators (SGs) and VSGs become increasingly common in a microgrid. The differences between paralleled systems will affect the transient stability of the system, which probably threatens stable operation of the system, especially under fault conditions. In this article, the transient angle stability of a paralleled synchronous and virtual synchronous generators (SG-VSG) system is investigated by comparing it with that of the paralleled VSGs system. It is observed that the paralleled SG-VSG system is more prone to transient instability due to the differences between their speed governors. Then, a control method is proposed to improve the transient stability of the paralleled SG-VSG system. Furthermore, a Lyapunov method is employed to establish the nonlinear model of islanded microgrid, by which the attraction domain of paralleled system is quantified. The hardware-in-loop experiment is performed to validate the theoretical analysis.
机译:随着虚拟同步发电机(VSG)技术的开发,同步发电机(SGS)和VSG的并行操作在微电网中越来越常见。并联系统之间的差异将影响系统的瞬态稳定性,这可能威胁系统的稳定运行,尤其是在故障条件下。在本文中,通过将并联VSGS系统的比较来研究并行同步和虚拟同步发电机(SG-VSG)系统的瞬态角度稳定性。观察到,由于其速度调节器之间的差异,并联的SG-VSG系统更容易发生瞬态不稳定性。然后,提出了一种控制方法来改善并联SG-VSG系统的瞬态稳定性。此外,采用Lyapunov方法来建立孤岛微电网的非线性模型,通过该非线性模型量化并联系统的吸引域。执行硬件在线实验以验证理论分析。

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