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Multi-port Energy Router for DC Grid Clusters

机译:用于直流电网簇的多端口能量路由器

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DC micro-grid comes an increasingly popular solution for local energy integration and dispatch. Individual DC micro-grid can operate in both island and grid-tie mode. The past research mainly focused on the DC-AC grid-tie power management while DC-DC tie mode might dominate future smart power distribution networks. This paper proposed a multi-port energy router concept to multiplex DC power from multiple DC communities whose bus voltage is operated at very close levels. The proposed partial power energy router works as a Kirchhoff’s current law (KCL) “super node”. It includes a partial power topology which can direct the DC current flow between any two buses or to the local energy storage by only taking the bus voltage differences. To fit the modulation and control into industrial standard framework, also considering the flexibility of controlling the energy storage current, multidimension space vector modulation and modified instantaneous power theory are proposed to regulate the DC power flow. The power transfer efficiency of standard half-bridges partial power topology is verified experimentally. Multiple operation scenarios are investigated to prove the feasibility of the energy router through simulation and experiments.
机译:DC Micro-GRID是局部能源集成和派遣的越来越流行的解决方案。单个DC微电网可以在岛和网格连接模式下运行。过去的研究主要集中在DC-AC电网领带电源管理,而DC-DC TIE模式可能主导未来的智能配电网络。本文提出了一种多端口能量路由器概念,从多个DC社区复用DC电力,其总线电压在非常接近的水平下操作。所提出的部分电源路由器作为Kirchhoff的当前法律(KCL)“超级节点”。它包括一个部分功率拓扑,其可以通过仅采用总线电压差异来指示任何两个总线之间或局部能量存储之间的直流电流。为了将调制和控制符合工业标准框架,还考虑了控制能量存储电流的灵活性,提出了多电极空间矢量调制和改进的瞬时功率理论来调节直流电流。实验验证了标准半桥部分功率拓扑的功率传输效率。研究了多种操作场景,以通过模拟和实验证明能量路由器的可行性。

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