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Assessment of an improved droop control scheme for DG inverter based microgrids

机译:基于DG逆变器的微电网改进的下垂控制方案评估

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In this paper an improved droop control strategy is proposed. The droop method allows inverter interfaced power units to independently feed loads according to variables measured only at the inverter connection point. The conventional droop method is however affected by an inherent issue regarding the power measurement that is necessary to deviate frequency and voltage magnitude in order to reach optimal power sharing. The conventional power measurement strategy is often based on a first order low pass filter. This implies a trade-off between a suitable power ripple rejection and the bandwidth limitation on the overall control scheme due to the inherent low frequency pole. In this paper a different filtering scheme is proposed and investigated through an analytical approach. A comparison between the conventional and the proposed control schemes is discussed through a detailed analysis. A case study of a microgrid fed by two inverters is also presented to show the improvements in dynamic performances using the proposed control architecture.
机译:本文提出了一种改进的下垂控制策略。下垂方法允许逆变器接口电源单元根据仅在逆变器连接点处测量的变量独立地馈送负载。然而,传统的下垂方法受到关于偏离频率和电压幅度所必需的功率测量的固有问题的固有问题,以达到最佳的电力共享。传统的功率测量策略通常基于第一阶低通滤波器。这意味着由于固有的低频杆,适当的功率纹波抑制和整体控制方案的带宽限制之间的折衷。在本文中,提出了一种不同的过滤方案,并通过分析方法研究。通过详细分析讨论了传统和所提出的控制方案之间的比较。还提出了由两个逆变器喂养的微电网的案例研究以显示使用所提出的控制架构的动态性能的改进。

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