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Flexible Control Structure of a Smart Transformer for Universal Operation

机译:智能变压器的灵活控制结构,用于通用操作

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The smart transformer (ST) is considered as one of the key technologies for modernizing distribution grids and facilitating large-scale integration of distributed generation and battery energy storage systems into them. The new grid scenarios demand that the ST will not be merely a substitute for the conventional transformer operating as a power transmitter, but that it plays a key role in providing both ac and dc connectivity and advanced grid support, and in modifying the functionality of its AC-side converters. Under different control objectives and varying grid configurations, an approach based on a different control structure for each objective presents critical aspects such as smooth transition and flexible reconfiguration of network. To overcome these aspects, in this work, a three-level hierarchical control approach based on the virtual-synchronous generator (VSG) and the stored energy model of the DC links capacitors provides a unified and flexible control structure that allows responding to different control objectives without modifying the control structure and parameters. The control has been validated under different grid scenarios and control objectives.
机译:智能变压器(ST)被认为是现代化分配网格的关键技术之一,并促进分布式发电和电池储能系统的大规模集成。新的网格方案要求ST不仅仅是作为电力传输运行的传统变压器的替代品,而且它在提供AC和DC连接和高级网格支持方面发挥着关键作用,以及修改其功能交流侧转换器。在不同的控制目标和不同的电网配置下,基于每个物品的不同控制结构的方法具有如此的关键方面,例如平滑的转换和灵活的网络重新配置。为了克服这些方面,在这项工作中,基于虚拟同步发电机(VSG)的三级分层控制方法和DC链路电容器的存储能量模型提供了统一和灵活的控制结构,允许响应不同的控制目标不修改控制结构和参数。该控件已在不同的网格方案和控制目标下验证。

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