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Energy management strategy of AC/DC hybrid microgrid based on power electronic transformer

机译:基于电力电子变压器的交直流混合微电网能源管理策略

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Owing to the intermittent output power and variable load variability of distributed generation (DG), voltage fluctuation and power mismatch tend to occur during AC/DC hybrid microgrid operation with power electronic transformers (PET). Therefore, a distributed energy coordination strategy is proposed in this paper. This strategy can coordinate the power exchange between PET, AC microgrid, DC microgrid and energy storage to effectively suppress the fluctuation of DC bus voltage. At the same time, the proposed hybrid mode control method, only with on local information, can ensure the full utilization of all subsystems and buffer the energy fluctuations of hybrid microgrids. The simulation results show that the proposed control strategy can accurately control the bidirectional flow of power between the PET interfaces and regulate the power distribution between the main network, the AC microgrid and the DC microgrid to achieve the stable operation of the AC/DC hybrid microgrid.
机译:由于间歇性输出功率和分布式发电(DG)的可变负载可变性,在使用电力电子变压器(PET)的AC / DC混合微电网运行期间,往往会发生电压波动和功率失配。因此,本文提出了一种分布式能源协调策略。该策略可以协调PET,AC微电网,DC微电网和能量存储之间的功率交换,从而有效地抑制DC总线电压的波动。同时,所提出的混合模式控制方法仅具有本地信息,就可以确保所有子系统的充分利用,并能缓冲混合微电网的能量波动。仿真结果表明,所提出的控制策略能够准确控制PET接口之间的双向功率流,并调节主网,交流微电网和直流微电网之间的功率分配,从而实现交流/直流混合微电网的稳定运行。 。

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