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Power management control strategy in photovoltaic and energy storage for off-grid power systems

机译:离网电力系统光伏和储能中的电源管理控制策略

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The recent development of smart converters with integrated advanced control features in off-grid power systems enables an effective integration of renewable energy and storage elements. In particular, this paper presents a power management control strategy that is implemented in smart converters operating with photovoltaic (PV), battery energy storage (BES) and ac loads, and that is intended for off-grid applications. The power management control strategy that is implemented within a combined dc- and ac-centric power system architecture, which provides complementary advantages and viable solutions for residential and commercial PV-BES installations. The benefits of dc- and ac-centric architectures are combined to achieve BES management and flexibility in the placement of energy sources within the ac network. The power management control strategy presented in this work circumvents the BES overcharge and undercharge issues. The control methods are implemented in a grid-forming battery converter and a grid-feeding PV inverter capable of transmitting and receiving the communications for any chemistry-based BES multi-stage charge battery requirements. Communications are transmitted through the ac power line, without extra communication protocols for energy balancing. The proposed ac load shedding feature provides power rationalization in the event of insufficient energy supply from PV and battery ports. The power management control strategy is validated by the experimental results obtained using 6kVA power converters with traditional lead-acid and lithium-ion in a BES multi-stage charge profile.
机译:离网电源系统中集成了高级控制功能的智能转换器的最新发展使可再生能源和存储元件得以有效集成。特别是,本文提出了一种电源管理控制策略,该策略在以光伏(PV),电池能量存储(BES)和交流负载运行的智能转换器中实现,并且旨在用于离网应用。在以直流和交流为中心的电力系统组合架构中实施的电源管理控制策略,为住宅和商用PV-BES安装提供了互补的优势和可行的解决方案。结合了以直流和交流为中心的体系结构的优点,以实现BES管理和在交流网络中放置能源的灵活性。本工作中提出的电源管理控制策略可以规避BES的过充和欠充问题。该控制方法在能够形成网格的电池转换器和能够馈送和接收任何基于化学的BES多级充电电池的通信的并网PV逆变器中实现。通信通过交流电源线传输,无需额外的通信协议即可实现能量平衡。如果光伏和电池端口的能量供应不足,建议的交流减载功能可以使功率合理化。通过使用具有传统铅酸和锂离子的6kVA电源转换器在BES多级充电曲线中获得的实验结果验证了电源管理控制策略。

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