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A Critical Assessment of Oscillatory Modes in Multi-Microgrids Comprising of Synchronous and Inverter-Based Distributed Generation

机译:多微电网中振荡模式的关键评估,包括同步和基于逆变器的分布式生成

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摘要

This paper provides a critical assessment of oscillatory modes for a droop-controlled multi-microgrid (MMG) consisting of inverter-based and synchronous-based distributed generation (DG). Local and inter-microgrid oscillatory modes similar to conventional interconnected power systems are observed. However, an additional new and more "dominant" oscillatory mode caused by interactions between close-by coherent synchronous-based and inverter-based DGs in the MMG is identified. Sensitivity analysis is employed to assess the impact of various MMG configurations and parameters such as: interconnecting line length, droop gain, exciter gain, and governor gain on MMG oscillatory modes. Parametric studies are conducted to highlight the impact of oscillatory modes on MMG transient and dynamic performances. Consequently, power system stabilizers (PSSs) are developed for both inverter-based and synchronous-based DGs to improve the transient and dynamic performances of the MMG. Residues are calculated and therefore utilized to determine the effect of PSS placement on the MMG oscillatory modes. Finally, small-signal stability analysis results and the performances of the PSSs are validated through time domain simulations on MATLAB/Simulink.
机译:本文提供了由基于逆变器和同步的分布生成(DG)组成的下垂控制的多微电网(MMG)的振荡模式的关键评估。观察到类似于传统的互连电力系统的本地和微电网间振荡模式。然而,识别由MMG中的紧密相干基于同步和基于逆变器的基于逆变器的DGS之间的相互作用引起的额外新的和更多的“主导”振荡模式。使用敏感性分析来评估各种MMG配置和参数的影响:互连线长度,下垂增益,激励器增益和静电振荡模式上的调速器增益。进行参数研究以突出振荡模式对MMG瞬态和动态性能的影响。因此,为逆变器和同步的DGS开发了电力系统稳定器(PSS),以改善MMG的瞬态和动态性能。计算残基并因此利用来确定PSS放置对MMG振荡模式的影响。最后,通过Matlab / Simulink上的时域仿真验证了小信号稳定性分析结果和PSS的性能。

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