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Mixed-Integer-Linear-Programming-Based Energy Management System for Hybrid PV-Wind-Battery Microgrids:Modeling, Design, and Experimental Verification

机译:基于混合整数线性规划的混合光伏 - 风电池微电网能量管理系统:建模,设计和实验验证

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摘要

Microgrids are energy systems that aggregate distributed energy resources, loads and power electronics devices in a stable and balanced way. They rely on energy managementsystems to schedule optimally the distributed energy resources. Conventionally, many scheduling problems have been solved by using complex algorithms that, even so, do not consider the operation of the distributed energy resources. This paper presents the modeling and design of a modular energy management system and its integration to a grid-connected battery-based microgrid. The scheduling model is a power generation-side strategy, defined as a general mixed-integer linear programming by taking intoaccount two stages for proper charging of the storage units. This model is considered as a deterministic problem that aims to minimize operating costs and promote self-consumption based on 24-hour ahead forecast data. The operation of the microgrid is complemented with a supervisory control stage that compensates any mismatch between the offline scheduling process and the real time microgrid operation. The proposal has been tested experimentally in a hybrid microgrid at the Microgrid ResearchLaboratory in Aalborg University.
机译:微电网是一种能源系统,可以稳定,平衡地聚合分布式能源,负载和电力电子设备。他们依靠能源管理系统来最佳地调度分布式能源。常规上,已经通过使用复杂算法解决了许多调度问题,即使这样,它们也没有考虑分布式能源的运行。本文介绍了模块化能源管理系统的建模和设计,以及如何将其集成到基于电池的电网连接微电网中。调度模型是发电侧策略,定义为通用混合整数线性规划,其中考虑了两个阶段以对存储单元进行正确充电。该模型被认为是确定性问题,旨在基于24小时提前预报数据来最小化运营成本并促进自我消费。微电网的运行辅以监督控制阶段,该阶段可补偿离线调度过程与实时微电网运行之间的任何不匹配。该提案已在奥尔堡大学微电网研究实验室的混合微电网中进行了实验测试。

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