并网/离网直流微电网优化及需求响应管理

Wenshuai Bai, Manuela Sechilariu, F. Locment
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引用次数: 1

摘要

微电网将可再生能源整合到电力和能源管理中,是未来智能供电系统中一项先进而有前景的技术。功率管理可以使微网保持恒定的功率平衡,而能量管理可以实现微网的最优潮流,其中需要考虑功率预测,利用受影响的元数据对微网潮流进行预调度。本文提出了一种结合光伏、储能、公用并网、柴油发电机、超级电容器等电源,提供动态负荷的并网/离网直流微电网能源与电源管理监控系统。此外,针对电力系统的需求响应问题,提出了一种减载优化算法。基于混合整数线性规划的能源管理层用于技术经济调度优化,而电源管理层用于保持公共直流母线的稳定。基于实际数据的仿真结果证明:(1)直流微电网连续运行,并在约束条件下自动在并网/离网模式之间切换;(ii) 24小时日前潮流优化实现了电力预调度,降低了直流微电网的运行成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-grid/off-grid DC microgrid optimization and demand response management
Microgrid tends to be an advanced and promising technology in the future smart power supply system, which integrates renewable energy sources under power and energy management. The power management can keep the constant power balance while the energy management can achieve the optimal power flow of a microgrid, where the power prediction should be considered by using the influenced metadata to pre-schedule the power flow of a microgrid. This paper proposes a supervisory system for energy and power management in on-grid/off-grid DC microgrid, which combines sources such as: photovoltaic, storage, public grid connection, diesel generator, and supercapacitor, and supplies a dynamic load. In addition, a load shedding optimization algorithm is proposed to solve the demand response problem. Based on mixed-integer linear programming the energy management layer is used for techno-economic dispatching optimization whereas the power management layer keeps the common DC bus stable. The simulation results, based on real data, prove that: (i) the DC microgrid operates continuously while automatically switching between on-grid/off-grid modes following constraints; (ii) the 24 hours day-ahead power flow optimization achieves a power pre-schedule to decrease the operation cost of the DC microgrid.
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