Microgrid Power Flow Control with Integrated Battery Management Functions

Q. Long, Hui Yu, Fuhong Xie, Wente Zeng, S. Lukic, N. Lu, D. Lubkeman
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引用次数: 3

Abstract

This paper presents a microgrid power flow control for islanded microgrids consisting of photovoltaic (PV) system, battery energy storage system (BESS) and diesel generator. The proposed control ensures automatic coordination among the microgrid units. To achieve the coordination, the local control of PV system and BESS are configured to regulate power flow without relying on communications. The generator is controlled as the back-up source and its connection depends on battery state of charge (SOC). A state machine with hysteresis settings is used to trigger smooth transition among operation modes. Not only does the proposed controller consider battery SOC and power limits, but also integrates three-stage charging control as battery charging mechanism, which is not considered in the existing literature. The proposed control is validated for an islanded hybrid microgrid using an OPAL-RT real-time simulator.
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集成电池管理功能的微电网潮流控制
针对由光伏系统、电池储能系统和柴油发电机组成的孤岛微电网,提出了一种微电网潮流控制方法。所提出的控制保证了微网单元之间的自动协调。为了实现协调,配置光伏系统和BESS的局部控制,不依赖通信来调节潮流。发电机被控制为备用电源,其连接取决于电池充电状态(SOC)。使用具有滞后设置的状态机触发操作模式之间的平滑转换。该控制器不仅考虑了电池SOC和功率限制,而且集成了三级充电控制作为电池充电机制,这是现有文献中没有考虑的。利用OPAL-RT实时模拟器对孤岛混合微电网的控制进行了验证。
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