不确定约束下微电网的随机能量管理

Jianzhe Liu, G. Rizzoni, B. Yurkovich
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引用次数: 3

摘要

本文研究了两个具有不确定性约束的微电网能量管理问题。第一个能源管理问题对某些部件的利用有限制。它可以用来保证可再生能源发电或插电式电动汽车的渗透水平。第二个能量管理问题是控制微电网的输出功率。峰值功率剃须和仪器保护等应用都需要它。随着光伏板和插电式电动汽车等具有随机输出功率的组件在微电网中的集成,这两个问题在约束条件上具有不确定性。本文提出了这两个问题的统一的机会约束规划公式。该公式为约束条件的满足提供了概率保证,并将这两个问题转化为可有效求解的凸规划。实例分析验证了该方法的有效性。
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Stochastic energy management for microgrids with constraints under uncertainty
This paper studies two energy management problems for microgrids with constraints involving uncertainty. The first energy management problem has constraints on the utilization of certain components. It can be used to ensure the penetration level of renewable generation or plug-in electric vehicles. The second energy management problem aims at refraining the output power of the microgrid. It is required by applications such as peak power shaving and instrument protection. With the integration of components having random output power such as photovoltaic panels and plug-in electric vehicles in the microgrid, the two problems have uncertainty in the constraints. A unified chance constrained programming formulation of the two problems is proposed in the paper. This formulation provides probabilistic guarantees on the satisfaction of the constraints and transforms the two problems into convex programs that can be solved efficiently. A practical case study verifies the effectiveness of the proposed approach.
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