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Solid state transformer control aspects for various smart grid scenarios

机译:各种智能电网场景的固态变压器控制方面

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The power distribution networks can be classified as active/passive and stiff/weak based on the nature of loads and network impedances. As an alternative to the conventional iron- and-copper based passive transformer, a solid state transformer (SST) can be used for interfacing such distribution networks to the medium voltage AC grids. Although the power architectures of SST for distribution grids are studied in detail, the control schemes for SST considering the nature of network is yet to be explored. In this paper, the control aspects for the popular three-stage cascaded multilevel solid state transformer (CMSST) are studied for the following grid scenarios: (i) SST interfacing two stiff grids, (ii) SST interfacing a stiff grid and a weak grid, and (iii) SST interfacing a stiff grid with a passive network. In this context, an average model of the CMSST is developed by replacing the basic switching cell (H-bridge) with its equivalent average model. It is shown that the control aspects are network specific and are not interchangeable.
机译:根据负载和网络阻抗的性质,配电网络可以分为主动/被动和刚性/弱。作为基于铁和铜的常规无源变压器的替代方案,可以使用固态变压器(SST)将此类配电网络连接到中压交流电网。尽管详细研究了配电网SST的电源架构,但仍需探索考虑网络性质的SST控制方案。在本文中,针对以下网格场景研究了流行的三级级联多级固态变压器(CMSST)的控制方面:(i)SST连接两个刚性网格,(ii)SST连接一个刚性网格和一个弱网格(iii)SST将刚性网格与无源网络连接起来。在这种情况下,通过用等效等效平均模型替换基本交换单元(H桥)来开发CMSST的平均模型。结果表明,控制方面是特定于网络的,并且不能互换。

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