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A hierarchical control strategy of micro-grid based on grid-friendly distributed generation technology

机译:基于网格友好分布式发电技术的微电网分层控制策略

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To solve the operation and control problems of islanded micro-grid better, this paper proposed a novel hierarchical control strategy according to different time scales. In the primary control, proposed a novel grid-friendly DG topology structure, the power of the islanded system is automatically shared between micro-sources. In the secondary control, the no-load frequency and voltage set points of droop characteristics are adjusted according to different output power range of the DG, which can effectively improve the power quality and stability of the islanded system. In the tertiary control, the slop of droop characteristics are adjusted according to power forecasting and state of charge (SOC) of storage system, implementing economic operation of the system. Finally, to verify the validity of the proposed theory, a distributed renewable energy generation digital/physical hybrid simulation platform based on NI-PXI is designed and implemented. Experimental results demonstrate the effectiveness of the control strategy.
机译:为了更好地解决孤岛微电网的运行和控制问题,本文针对不同的时间尺度,提出了一种新颖的分级控制策略。在主控制中,提出了一种新颖的网格友好型DG拓扑结构,孤岛系统的功能在微源之间自动共享。在二次控制中,根据DG的不同输出功率范围调整空载特性的空载频率和电压设定点,可以有效提高孤岛系统的电能质量和稳定性。在第三级控制中,根据功率预测和存储系统的荷电状态(SOC)调整下垂特性的斜率,以实现系统的经济运行。最后,为验证所提理论的有效性,设计并实现了基于NI-PXI的分布式可再生能源发电数字/物理混合仿真平台。实验结果证明了该控制策略的有效性。

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