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Control Strategy of Three-Phase Battery Energy Storage Systems for Frequency Support in Microgrids and with Uninterrupted Supply of Local Loads

机译:用于微电网频率支持和本地负载不间断供电的三相电池储能系统的控制策略

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Frequency control in autonomous microgrids (MG) with high penetration of renewable energy sources represents a great concern to ensure the system stability. In this regard, this paper presents an enhanced control method for battery energy storage systems (BESS) to support the frequency of MG and with the ability of disconnecting from the MG to supplying in the island mode a local consumer. A frequency controller, combining a conventional droop control with an inertia emulation function, governs the BESS active power transfer during the primary frequency control level. The BESS may also provide voltage support in the point of common coupling with the MG. Moreover, the proposed BESS may compensate, partially or totally, the power absorbed by the local loads in order to improve the MG frequency response. When the MG power quality worsens below a certain level, in terms of voltage and frequency, the BESS detaches from the MG and continues to operate islanded. The reconnection is accomplished following a smoothly resynchronization of the local voltage with the MG, without disturbing the local loads supply. Additionally, this paper also discusses about the aspects related to the BESS management and its integration within the proposed system. The simulation and experimental results assess the feasibility of the proposed control solutions.
机译:具有高度可再生能源渗透能力的自治微电网(MG)的频率控制是确保系统稳定性的重要考虑因素。在这方面,本文提出了一种用于电池能量存储系统(BESS)的增强控制方法,以支持MG的频率并具有与MG断开连接的能力,从而可以以孤岛模式向本地消费者供电。频率控制器结合了常规的下垂控制和惯性仿真功能,可在主频率控制级别控制BESS有功功率传输。 BESS还可以在与MG共同耦合的点上提供电压支持。而且,提出的BESS可以部分或全部补偿由局部负载吸收的功率,以改善MG频率响应。当MG的电能质量恶化到一定水平以下时,就电压和频率而言,BESS会脱离MG并继续孤岛运行。重新连接是在本地电压与MG平稳重新同步之后完成的,而不会干扰本地负载电源。此外,本文还讨论了与BESS管理及其在拟议系统中的集成有关的方面。仿真和实验结果评估了提出的控制解决方案的可行性。

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