FLEXIBLE LV NETWORK INTERFACE FOR DYNAMIC POWER FLOW AND VOLTAGE CONTROL

FLEXIBLE LV NETWORK INTERFACE FOR DYNAMIC POWER FLOW AND VOLTAGE CONTROL
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用于动态功率流和电压控制的灵活低压网络接口

DOI:
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发表时间:
2015
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影响因子:
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通讯作者:
Tu Eindhoven
Tu Eindhoven
中科院分区:
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文献类型:
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作者:
Yin Sun;E. Jong;A. Yanushkevich;J. Cobben;Tu Eindhoven

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设想未来的电气化情景,其中来自供热和运输的能源需求由电力供应。在这种情况下,目前的电网必须适应可再生能源和新能源应用的高渗透水平,所有这些都连接到中压和低压网络。本文重点介绍了相关的低压网络的挑战,包括屋顶光伏板,Plugin电动汽车,热泵,可能会显着影响未来的低压网络的设计和运行。提出了一种基于电力电子技术的创新概念,称为“柔性低压网络接口”。在这篇文章中,它的能力,以科普迫在眉睫的挑战,电压调节进行了讨论。在Powerfactory®中执行的时域仿真结果作为“灵活低压网络接口”控制概念的证明进行了介绍和讨论。
A future electrification scenario is envisaged where the energy demand from heat and transportation is supplied by electricity. In this scenario the current electricity network must adapt to prepare for high penetration levels of renewable energy sources and new energy applications, all connected to the MV and LV networks. This paper focuses on the associated LV network challenges, including roof-top Photovoltaic panels, Plugin electric vehicles, Heat pumps that could significantly influence the future LV network design and operation. An innovative power electronics based concept called “Flexible LV Network Interface” is proposed. In this article, its capability to cope with the imminent challenge of voltage regulation is discussed. Time domain simulation results, performed in Powerfactory®, are presented and discussed as proof of control concept for “Flexible LV Network Interface”.