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Decentralized Power Management of a PV/Battery Hybrid Unit in a Droop-Controlled Islanded Microgrid

机译:下降控制的孤岛微电网中光伏/电池混合动力装置的分散电源管理

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摘要

In this paper, a control strategy is proposed to achieve decentralized power management of a PV/battery hybrid unit in a droop-controlled islanded microgrid. In contrast to the common approach of controlling the PV unit as a current source, in the proposed strategy, the PV unit is controlled as a voltage source that follows a multi-segment adaptive power/frequency characteristic curve. The proposed power/frequency characteristics, of the hybrid unit and of the whole microgrid, adapt autonomously to the microgrid operating conditions so that the hybrid unit may supply the maximum PV power, match the load, and/or charge the battery, while maintaining the power balance in the microgrid and respecting the battery state-of-charge limits. These features are achieved without relying on a central management system and communications, as most of the existing algorithms do. The control strategy is implemented using multi-loop controllers, which provide smooth and autonomous transitions between the operating scenarios. Small-signal stability of the proposed control loops is investigated, and the system performance is experimentally validated on a 3.5 kVA microgrid.
机译:在本文中,提出了一种控制策略,以在下垂控制的孤岛微电网中实现光伏/电池混合单元的分散电源管理。与将PV单元控制为电流源的常规方法相反,在所提出的策略中,将PV单元控制为遵循多段自适应功率/频率特性曲线的电压源。混合单元和整个微电网的建议功率/频率特性可以自动适应微电网的运行条件,以便混合单元可以提供最大的PV功率,匹配负载和/或对电池充电,同时保持微电网中的功率平衡,并遵守电池的充电状态限制。像大多数现有算法一样,无需依赖中央管理系统和通信即可实现这些功能。该控制策略是使用多回路控制器实现的,该多回路控制器可在运行方案之间提供平稳且自主的过渡。研究了所提出的控制回路的小信号稳定性,并在3.5 kVA微电网上通过实验验证了系统性能。

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