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Intelligent DC Microgrid With Smart Grid Communications: Control Strategy Consideration and Design

机译:具有智能电网通信功能的智能直流微电网:控制策略的考虑与设计

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Aiming at photovoltaic (PV)—storage urban building integrated system, this paper proposes a DC microgrid with multi-layer control and smart grid communications. The paper focuses on power balancing, with load shedding and PV constrained production, and takes into account the grid availability and grid vulnerability by smart grid messages. The system behavior modeling by MATLAB Stateflow leads to the whole control strategy design, which concerns the power balancing and imposed power limits by the utility grid, while providing interface for energy management. Experimental results evaluate the feasibility of the proposed control strategy. As further development of this control design, an intelligent multi-layer supervision is suggested. This supervision, able to exchange data with the smart grid, deals with the end-user demand, forecast of photovoltaic production, prediction of load consumption, and energy management. The major technical contribution of this paper is linked to the proposed control design that permits better DC microgrid integration (avoids undesired injection, mitigates fluctuations in grid power, reduces grid peak consumption) and provides possibility to reduce the negative impact on the utility grid thanks to the supervision interface. The power balancing control interface provides possibility for advanced energy management with low speed communication.
机译:针对光伏(PV)—存储城市建筑集成系统,本文提出了一种具有多层控制和智能电网通信功能的直流微电网。本文着重于功率平衡,负载减少和光伏发电受限,并考虑了智能电网消息带来的电网可用性和电网脆弱性。通过MATLAB Stateflow进行的系统行为建模可导致整个控制策略设计,其中涉及电力平衡和由公用电网施加的功率限制,同时为能源管理提供了接口。实验结果评估了所提出的控制策略的可行性。随着这种控制设计的进一步发展,提出了一种智能的多层监控。这种监督能够与智能电网交换数据,处理最终用户的需求,光伏产量的预测,负载消耗的预测以及能源管理。本文的主要技术贡献与提出的控制设计有关,该控制设计可实现更好的DC微电网集成(避免不必要的注入,减轻电网功率波动,降低电网峰值能耗),并有可能减少对公用电网的负面影响监督界面。功率平衡控制接口可通过低速通信进行高级能源管理。

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