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Peer-to-Peer Control for Networked Microgrids: Multi-Layer and Multi-Agent Architecture Design

机译:网络微电网的点对点控制:多层和多功能架构设计

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The integration of microgrids (MGs) in distribution networks forms the networked microgrids (NMGs). The peer-to-peer (P2P) control architecture is able to fully exploit the flexibility and resilience of NMGs. This paper proposes a multi-layer and multi-agent architecture to achieve P2P control of NMGs. The control framework is fully distributed and contains three control layers operated in the agent of each MG. For primary control, a droop control is adopted by each MG-agent for localized power sharing. For secondary control, a distributed consensus algorithm is proposed for frequency/voltage restoration and arbitrary power sharing among MGs. For tertiary control, the power loss in the NMG system is minimized by using alternating direction method of multipliers (ADMM). The architecture of the MG agent are designed, which processes the three control layers via information exchange among neighbouring agents. The proposed framework is validated in a hardware-in-the-loop test-bed, where NMG system with six buses and three MGs is emulated in the OPAL-RT, while the control algorithms are realized by a multi-agent system. The experimental results verify the effectiveness and advantages of the proposed framework, which demonstrates a practical control framework design for NMG systems.
机译:微电网(MGS)在分发网络中的集成形成网络微电网(NMG)。点对点(P2P)控制架构能够充分利用NMGS的灵活性和弹性。本文提出了一种多层和多代理架构,实现了NMG的P2P控制。控制框架完全分布,包含在每个MG的代理中操作的三个控制层。对于主要控制,每个MG-Agent采用DROOP控制以进行局部电力共享。对于二次控制,提出了一种用于MGS之间的频率/电压恢复和任意电力共享的分布式共识算法。对于三级控制,通过使用乘法器(ADMM)的交替方向方法,最小化NMG系统中的功率损耗。设计了MG代理的架构,其通过相邻代理之间的信息交换来处理三个控制层。所提出的框架在硬件在循环试验床中验证,其中具有六个总线和三个MGS的NMG系统在欧宝-TT中仿真,而控制算法由多算术系统实现。实验结果验证了所提出的框架的有效性和优点,该框架展示了NMG系统的实用控制框架设计。

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