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An improved droop controller for grid-connected voltage source inverter in microgrid

机译:用于微电网电压电压源逆变器的改进的下垂控制器

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This paper addresses the low-frequency relative stability problem of the grid-connected voltage source inverter (VSI) based distributed generation (DG) unit in microgrid, in which the conventional active power-frequency (P-ω) and reactive power-voltage (Q-E) droop controllers are commonly used to share the loads. In the sense of the characteristic equation and eigenvalues, the relative stability and the transient response are remarkably affected by the change of the droop gains and/or stable operating points, resulting in the poor damping and eventually instability. An improved P-ω and Q-E droop scheme based on the static droop characteristics combined with a derivative term is presented to preserve the system stability and obtain an improved damping performance. Subsequently, the dynamic performance of the system can be adjusted without affecting the static droop gains to damp the oscillatory modes of the power sharing controllers. Finally, the desired transient and steady-state responses can be obtained.
机译:本文介绍了微电网中基于电网连接电压源逆变器(VSI)的分布式发电(DG)单元的低频相对稳定性问题,其中传统的有源电力频率(P-Ω)和无功功率电压( QE)垂直控制器通常用于共享负载。在特征方程和特征值的意义上,相对稳定性和瞬态响应受到下垂增益和/或稳定的操作点的变化的显着影响,导致阻尼差,最终不稳定。提出了一种基于静态下垂特性的改进的P-Ω和Q-E下垂方案与衍生术语组合以保持系统稳定性并获得改进的阻尼性能。随后,可以调整系统的动态性能而不会影响静态下垂增益来阻尼电力共享控制器的振荡模式。最后,可以获得所需的瞬态和稳态响应。

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