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Current-type Power Hardware in the Loop (PHIL) evaluation for smart transformer application

机译:电流型电源硬件在环(PHIL)评估,用于智能变压器应用

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摘要

The development of power electronics and power systems due to the massive integration of renewable energy sources is challenging the distribution grids. Among several concepts, the Smart Transformer (ST), a solid-state transformer with advanced control and communication capabilities, has been investigated by several researchers. A great challenge of this kind of system is the possibility to test the effectiveness of the physical system under a broad spectrum of operating conditions. For this reason, the Power Hardware in the Loop (PHIL) concept can be adopted to emulate the behavior of a distribution grid connected to the ST. In this case, because the low-voltage stage of the ST is voltage controlled, the test setup must be current-controlled. In this paper, the current-controlled PHIL setup is analyzed. The theorethical analysis is carried out and preliminary results obtained with the PHIL facilities are presented, highlighting how the current-controlled PHIL can be an effective means to study the ST.
机译:由于可再生能源的大规模整合,电力电子和电力系统的发展正在挑战配电网。在几个概念中,智能变压器(ST)是一种具有先进控制和通信功能的固态变压器,已经由几位研究人员进行了研究。这种系统的最大挑战是在广泛的运行条件下测试物理系统有效性的可能性。因此,可以采用“环路中的电源硬件”(PHIL)概念来模拟连接到ST的配电网的行为。在这种情况下,因为ST的低压级是电压控制的,所以测试设置必须是电流控制的。在本文中,分析了电流控制的PHIL设置。进行了理论分析,并介绍了使用PHIL装置获得的初步结果,突出了电​​流控制的PHIL如何成为研究ST的有效手段。

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