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Supervisory Control of an Adaptive-Droop Regulated DC Microgrid with Battery Management Capability

机译:具有电池管理能力的自适应下垂稳压直流微电网的监控

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摘要

DC power systems are gaining an increasing interest in renewable energy applications because of the good matching with dc output type sources such as photovoltaic (PV) systems and secondary batteries. In this paper, several distributed generators (DGs) have been merged together with a pair of batteries and loads to form an autonomous dc Microgrid (MG). To overcomethe control challenge associated with coordination of multiple batteries within one stand-alone MG, a double-layer hierarchical control strategy was proposed; 1) The unit-level primary control layer was established by an adaptive voltage-droop (VD) method aimed to regulate the common bus voltage and to sustain thestates of charge (SOCs) of batteries close to each other during moderate replenishment. The control of every unit was expanded with unit-specific algorithm, i.e. finish-of-charging for batteries and maximum power point tracking (MPPT) for renewable energy sources (RESs), with which a smooth on-line overlap was designed; 2) the supervisory control layer was designed touse the low bandwidth communication interface between the central controller and sources in order to collect data needed for adaptive calculation of virtual resistances (VRs) as well as transit criteria for changing unit-level operating modes. A small-signal stability for the whole range of VRs. The performance of developed control was assessed through experimental results.
机译:由于直流电源系统与直流输出型电源(例如光伏(PV)系统和二次电池)的良好匹配,因此在可再生能源应用中越来越受到关注。在本文中,几台分布式发电机(DG)已与一对电池和负载合并在一起,形成一个自治的直流微电网(MG)。为了克服与一个独立MG内多个电池协调相关的控制挑战,提出了一种双层分层控制策略。 1)通过自适应电压降(VD)方法建立单位级别的主控制层,该方法旨在调节公共总线电压并在适度补充期间维持彼此接近的电池电荷(SOC)状态。通过特定于单元的算法扩展了每个单元的控制,即电池的充电完成和可再生能源(RES)的最大功率点跟踪(MPPT),从而设计了平滑的在线重叠; 2)监控层被设计为使用中央控制器和源之间的低带宽通信接口,以便收集虚拟电阻(VR)的自适应计算所需的数据以及用于更改单元级别操作模式的传输标准。整个VR的小信号稳定性。通过实验结果评估了发达对照的性能。

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