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Transient droop control strategy for parallel operation of voltage source converters in an islanded mode microgrid

机译:孤岛模式MicroGrid中电压源转换器的并联操作的瞬态下垂控制策略

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This paper investigates the small signal analysis of paralleled voltage source converters (VSCs) in an islanded multi-bus microgrid. Studying small signal stability of a microgrid, it can be observed that dominant low-frequency modes of the system are highly sensitive to network configuration and the parameters of power sharing controller of VSCs. These low-frequency modes are highly dependent to system parameters as well as operating points and as the demanded power increases, they drift to new locations that may eventually cause instability. To have a better transient characteristic in a microgrid, a novel transient control strategy based on the static droop characteristics is presented in this paper. To provide the active damping of the low-frequency power sharing modes at different loading conditions, the derivative terms of active and reactive powers have been added to droop functions. The transient droop gains are scheduled by small signal analysis of the power sharing mechanism in such a way that yield to desired transient and steady-state response. The proposed controller ensures a stable and robust performance of paralleled VSCs.
机译:本文研究了孤岛多总线微电网中的并联电压源转换器(VSC)的小信号分析。研究微电网的小信号稳定性,可以观察到系统的主导低频模式对网络配置和VSC的电力共享控制器的参数非常敏感。这些低频模式高度依赖于系统参数以及操作点,随着所需的功率增加,它们漂移到最终可能导致不稳定的新位置。为了在微电网中具有更好的瞬态特性,本文提出了一种基于静垂体特性的新型瞬态控制策略。为了在不同的负载条件下提供低频功率共享模式的主动阻尼,已添加主动和无功功率的衍生方术语来垂直。瞬态下垂增益通过功率共享机制的小信号分析来调度,从而产生所需的瞬态和稳态响应。建议的控制器确保了并联VSC的稳定和稳健性。

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