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Intelligent Distributed Generation and Storage Units for DC Microgrids—A New Concept on Cooperative Control Without Communications Beyond Droop Control

机译:直流微电网的智能分布式发电和存储单元—一种无需下垂控制即可进行通信的协作控制新概念

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摘要

Low voltage dc microgrids have been widely used for supplying critical loads, such as data centers and remote communication stations. Consequently, it is important to ensure redundancy and enough energy capacity in order to support possible increments in load consumption. This is achieved by means of expansion of the energy storage system by adding extra distributed energy storage units. However, using distributed energy storage units adds more challenges in microgrids control, since stored energy should be balanced in order to avoid deep discharge or over-charge in one of the energy storage units. Typically, voltage droop loops are used for interconnecting several different units in parallel to a microgrid. This paper proposes a new decentralized strategy based on fuzzy logic that ensures stored energy balance for a low voltage dc microgrid with distributed battery energy storage systems by modifying the virtual resistances of the droop controllers in accordance with the state of charge of each energy storage unit. Additionally, the virtual resistance is adjusted in order to reduce the voltage deviation at the common dc bus. The units are self-controlled by using local variables only, hence, the microgrid can operate without relying on communication systems. Hardware in the loop results show the feasibility of the proposed method.
机译:低压直流微电网已被广泛用于提供关键负载,例如数据中心和远程通信站。因此,重要的是要确保冗余和足够的能量容量,以支持负载消耗的可能增加。这可以通过添加额外的分布式储能单元来扩展储能系统来实现。然而,使用分布式能量存储单元在微电网控制中增加了更多的挑战,因为应该平衡存储的能量以避免在一个能量存储单元中的深度放电或过度充电。通常,电压下降回路用于将几个不同的单元并联到微电网。本文提出了一种基于模糊逻辑的新的分散策略,该策略通过根据每个储能单元的充电状态修改下垂控制器的虚拟电阻,来确保分布式电池储能系统的低压直流微电网的储能平衡。此外,为了减小公共直流总线上的电压偏差,可以调整虚拟电阻。这些单元仅通过使用局部变量进行自我控制,因此,微电网可以在不依赖通信系统的情况下运行。硬件在循环中的结果表明了该方法的可行性。

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