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Autonomous operation of wind-battery hybrid power system with maximum power extraction capability

机译:具有最大功率提取能力的风电混合动力系统的自主运行

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摘要

The hybrid operation of a remote area power system consisting of a Doubly Fed Induction Generator (DFIG) based wind turbine, a battery storage unit and a dummy load is investigated in this paper. The battery storage unit operates as a source or load, depending on the wind power output and loading conditions of the system. The battery storage is connected to the AC side of the wind energy system through a three phase inverter to supply both active and reactive power. A dummy load is also incorporated into the AC side of the system. The design criteria of the controllers for each component (ie. DFIG, battery storage system and dummy load) and an approach for control coordination of the entire system are presented in this paper. The suitability of the proposed control coordination strategy and individual system controllers are tested in relation to the system voltage, frequency and DC link stability of the DFIG under variable wind and changing load conditions. The maximum power extraction capability from wind is also achieved throughout the operation.
机译:本文研究了基于双馈感应发电机(DFIG)的风力涡轮机,电池存储单元和虚拟负载组成的偏远地区电力系统的混合运行。电池存储单元根据系统的风力输出和负载情况作为电源或负载运行。电池存储器通过三相逆变器连接到风能系统的交流侧,以提供有功和无功功率。虚拟负载也被并入系统的交流侧。本文介绍了每个组件(即DFIG,电池存储系统和虚拟负载)的控制器的设计准则以及整个系统的控制协调方法。在风量变化和负载条件变化的情况下,针对DFIG的系统电压,频率和直流链路稳定性,测试了所提出的控制协调策略和各个系统控制器的适用性。在整个操作过程中,还可以实现最大的风能提取能力。

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