智能变压器与传统变压器馈电低压电网的同步

Stefano Giacomuzzi, Giovanni de Carne, S. Pugliese, G. Buja, M. Liserre, A. Kazerooni
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引用次数: 0

摘要

智能变压器(ST)是一种基于电力电子的变压器,它在低压馈电电网中作为电网形成转换器运行。它独立于主电源系统合成具有幅值、相位和频率的电压波形。如果需要使用传统变压器对ST进行网格化操作,为了改善功率流控制和控制电压分布,两个电网之间的电压波形必须同步。在不同电压幅值、相位或频率下的开关,会产生较大的电源涌流。这项工作提出了一种同步策略,可以使ST无缝过渡到与传统变压器并联运行。与传统的基于通信的方法不同,这项工作解决了一个更现实的实现案例,即有限的通信基础设施。ST仅依赖于本地测量和其先进的控制能力,以确定有效切换到并行操作。通过PLECS/Matlab环境的分析和仿真验证了该策略的性能,并通过电源-硬件在环(Power-Hardware-In-Loop, PHIL)评估进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronization of Low Voltage Grids Fed by Smart and Conventional Transformers
The Smart Transformer (ST) is a power electronicsbased transformer, which operates as grid-forming converter in the low voltage-fed grid. It synthesizes the voltage waveform with magnitude, phase and frequency independently from the main power system. If a meshed operation of the ST with a conventional transformer is required, to improve the power flow control and to control the voltage profile, the voltage waveforms between the two grids have to be synchronized. The switching under different voltage magnitude, phase or frequency, can lead to a large power in-rush. This work proposes a synchronization strategy that enables a seamless transition of the ST to parallel operations with conventional transformers. Differently from classical communication-based methods, this work addresses a more realistic implementation case with limited communication infrastructure. The ST relies only on local measurements and on its advanced control capability to determine the effective switch to parallel operations. The performance of the proposed strategy has been proved analytically and through simulations in a PLECS/Matlab environment, and validated experimentally by means of Power-Hardware-In-Loop (PHIL) evaluation.
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