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Discharge rate balancing control strategy based on dynamic consensus algorithm for energy storage units in AC microgrids

机译:基于动态共识算法在AC微电网中的能量存储单元的排放率平衡控制策略

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A dynamic consensus algorithm-based coordinated secondary control with an autonomous current-sharing control strategy is proposed in this paper for balancing discharge rate of energy storage systems (ESSs) in an islanded AC microgrid. The dynamic consensus algorithm is applied for information sharing between distributed generation (DG) units in order to regulate the output power of DGs according to ESS capacities and state-of-charge (SoC). The proposed controller can not only effectively prevent operation failure caused by over current and unintentional outage of DGs by means of balanced discharge rate control, but also provide fast response and accurate current sharing performance due to an autonomous current-sharing controller at primary level. In addition, expandability, flexibility and high reliability can be obtained thanks to the distributed architecture. Based on the developed linearized state-space model in z-domain, both the system stability and parameter sensitivity were analyzed. A comparison between experimental results obtained from using the conventional power sharing control and those obtained from the proposed coordinated control using a setup with three 2.2 kW DG units are presented to verify the effectiveness of the proposed controller.
机译:本文提出了一种基于动态共识算法的基于自主共享控制策略的协调二次控制,用于平衡岛立的AC微电网中的能量存储系统(ESS)的放电速率。应用动态共识算法用于分布式生成(DG)单元之间的信息共享,以便根据ESS容量和充电状态(SOC)调节DGS的输出功率。所提出的控制器不仅可以通过平衡的放电率控制有效地防止由电流和无意中中继引起的操作失败,而且还提供了由于初级级别的自主电流共享控制器而提供快速响应和准确的电流共享性能。此外,由于分布式架构,可以获得可扩展性,灵活性和高可靠性。基于Z域的开发线性化状态空间模型,分析了系统稳定性和参数灵敏度。提出了使用传统功率共享控制获得的实验结果与使用具有三个2.2kW的DG单元的建议的协调控制获得的实验结果的比较,以验证所提出的控制器的有效性。

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