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Hierarchical energy management control for islanding DC microgrid with electric-hydrogen hybrid storage system

机译:氢-氢混合存储系统对岛状微电网的分级能量管理控制

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In this paper, a hierarchical state machine energy management control method based on minimum cost algorithm is proposed. This method consists two layers, the bottom layer is responsible for the control of each devices while the top layer uses state machine strategy and minimum utilization algorithm to distribute power for each micro sources. Combining the minimum utilization cost theory with the state machine control method, the control system can optimize the utilization cost and energy storage level of the electric-hydrogen hybrid energy storage system under the premise of meeting the requirements of the basic operation of the microgrid. Through the centralized management of the top layer and the control of the bottom layer, the method completes the operation target of the microgrid, thus improving the energy utilization rate and reducing the utilization cost of the system. The real time simulation is carried out through the RT-LAB semi physical system. By a 72 h online operation under actual conditions, the effectiveness of the proposed method is verified, which ensures the low cost and stability of the island DC microgrid with electric hydrogen hybrid energy system. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种基于最小成本算法的分层状态机能量管理控制方法。该方法由两层组成,底层负责控制每个设备,而顶层则使用状态机策略和最小利用率算法为每个微源分配功率。将最小利用成本理论与状态机控制方法相结合,在满足微网基本运行要求的前提下,控制系统可以优化氢-氢混合储能系统的利用成本和储能水平。通过顶层的集中管理和底层的控制,完成了微电网的运行目标,从而提高了能源利用率,降低了系统的使用成本。实时仿真是通过RT-LAB半物理系统进行的。通过在实际条件下在线运行72小时,验证了所提方法的有效性,从而确保了带有氢电混合能源系统的岛式直流微电网的低成本和稳定性。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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