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New power electronic interface combining DC transmission, a medium-frequency bus and an AC-AC converter to integrate deep-sea facilities with the AC grid

机译:新型电力电子接口,结合了直流传输,中频总线和交流-交流转换器,将深海设施与交流电网集成在一起

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A new bidirectional dc-ac power electronic interface (PEI) consisting of a dc link, an HVdc terminal based on modular multilevel converters (MMCs), medium-frequency transformers (MF-XFMRs) — higher frequencies are also possible — and ac-ac converters is proposed for interconnecting two ac systems, or dc and ac systems. The advantages of each component make the proposed topology convenient for applications that require compactness, flexibility, and reliability. For example, integration of offshore and onshore wind farms with the power grid, ac and/or dc grids interconnections, and supplying power to conventional and future deep-sea oil and gas facilities. The PEI main overall topology, operating principles and design equations are described. Size and efficiency are evaluated for the proposed topology for different operating frequencies and compared with the conventional approach. A case study of a deep-sea electric power system (DEPS) is illustrated through timedomain simulations for different operating conditions to demonstrate the feasibility of the proposed ideas.
机译:一个新的双向dc-ac电力电子接口(PEI),包括一个dc链路,一个基于模块化多电平转换器(MMC)的HVdc端子,中频变压器(MF-XFMRs)-也可以使用更高的频率-以及ac-ac提出了将两个交流系统或直流和交流系统互连的变流器。每个组件的优点使所建议的拓扑结构便于需要紧凑性,灵活性和可靠性的应用程序。例如,将海上和陆上风电场与电网,交流和/或直流电网互连整合在一起,并为常规和未来的深海石油和天然气设施供电。描述了PEI的主要总体拓扑,工作原理和设计公式。针对不同工作频率的拟议拓扑评估了尺寸和效率,并与常规方法进行了比较。通过在不同操作条件下进行时域仿真,对一个深海电力系统(DEPS)进行了案例研究,以证明所提出的想法的可行性。

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