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Modeling and Control Strategy for Multiterminal Flexible DC Distribution Network with Echelon Utilization Power Battery

机译:利用梯队利用电力电池模拟柔性直流配电网的建模与控制策略

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With the integration of distributed renewable energy to the distribution network and the development of multiterminal flexible DC transmission technology, multiterminal flexible DC distribution network has broad application prospects. At the same time, with the rapid development of new energy vehicles, the echelon utilization of power battery has become a research hotspot. By analyzing the characteristics of flexible DC distribution network and echelon utilization battery, the structure and control strategy of modular multilevel converter (MMC), DC solid-state transformer, photovoltaic power generation, wind power generation, and echelon utilization battery energy storage system are established, respectively, in this paper. To achieve a DC network connection of various types of power supply and load, this paper proposes a starting method of multiterminal flexible DC distribution network and a cooperative control strategy of the wind-solar-storage system. A six-terminal ring-shape DC distribution network model is built in real-time digital simulation (RTDS) platform. The simulation results show that the modeling methods and control strategies of each component in the real-time simulation model meet the operation requirements of the multiterminal flexible DC distribution network, which provides a reference for the construction and research of the flexible DC distribution network.
机译:随着分布式可再生能源的集成到分销网络和多级柔性直流传输技术的开发,多立面性柔性直流配电网络具有广泛的应用前景。与此同时,随着新能源汽车的快速发展,电池利用率的梯队已成为研究热点。通过分析灵活直流配电网络和梯形利用电池的特性,建立了模块化多级转换器(MMC),DC固态变压器,光伏发电,风力发电和梯队利用电池储能系统的结构和控制策略分别在本文中。为了实现各种类型的电源和负载的直流网络连接,本文提出了一种多立体柔性DC分配网络的起始方法及风光储存系统的协作控制策略。六末端环形直流配电网络模型内置于实时数字仿真(RTDS)平台。仿真结果表明,实时仿真模型中每个组件的建模方法和控制策略符合MultiTarminal柔性DC分配网络的操作要求,为柔性DC分配网络的构造和研究提供了参考。

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