A hierarchical energy management strategy for grid-connected microgrid

Xingpeng Li, Guangchao Geng, Q. Jiang
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引用次数: 13

Abstract

A novel hierarchical energy management strategy for grid-connected microgird is proposed in this paper. The proposed concept follows the idea of multiple time-scale coordination and consists of day-ahead layer, adjustment layer, and real-time layer. The day-ahead layer is based on look-ahead multi-step optimization techniques and the predicted availability of renewable energy sources. Future operational states of the controllable units in the microgrid could be determined ahead of time. The adjustment layer adjusts power output of online units by using the data at the dispatch time. Then, real-time layer is utilized to maintain the exchange power between the external macrogrid and the microgrid constant. In addition, energy storage plays a critical role in three dispatch and control layers. A typical microgrid system is simulated to demonstrate the performance and effectiveness of the proposed hierarchical energy management strategy.
并网微电网分层能量管理策略
提出了一种新的并网微电网分层能量管理策略。提出的概念遵循多时间尺度协调的思想,由日前层、调整层和实时层组成。日前层是基于前瞻性多步优化技术和预测可再生能源的可用性。可以提前确定微电网中可控单元的未来运行状态。调节层利用调度时的数据对在线机组的输出功率进行调节。然后,利用实时层保持外部大电网与微电网之间的交换功率恒定。此外,储能在三个调度控制层中起着至关重要的作用。通过一个典型的微电网系统仿真,验证了所提出的分层能量管理策略的性能和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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