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PHIL Test Bench for Online-Identification Methods of Complex Power Grid

机译:用于复杂电网在线识别方法的PHIL测试台

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Power generation is shifting towards renewable and distributed energy production due to increased awareness of climate change and the recent advancements in renewable technologies. Distributed energy generation typically consists of wind and solar power plants, virtually all of which are connected to power grid by an inverter. As a consequence, the stability issues generated by the active power electronic devices are continuously increasing. The increased requirements for the functionality of the grid-connected inverters require a sophisticated test bench for experimentation. Power hardware-in-the-loop methods allow combining of the simulations to actual hardware, and thus, enable running experiments on real devices in time-varying conditions. This paper presents the use of a power hardware-in-the-loop test bench for stability studies of grid-connected systems. Experimental MIMO measurements based on pseudo-random sequences injected with a three-phase grid-connected inverter are presented and used to demonstrate the effectiveness of the proposed method.
机译:由于人们对气候变化的意识增强以及可再生技术的最新发展,发电正朝着可再生和分布式能源生产的方向发展。分布式能源发电通常由风力发电厂和太阳能发电厂组成,实际上所有发电厂都通过逆变器连接到电网。结果,由有源电力电子设备产生的稳定性问题不断增加。对并网逆变器的功能提出的更高要求要求使用复杂的试验台进行试验。强大的硬件在环方法可以将仿真与实际硬件结合起来,从而可以在时变条件下在真实设备上运行实验。本文介绍了使用电源硬件在环测试台进行并网系统稳定性的研究。提出了基于伪随机序列注入三相并网逆变器的实验MIMO测量,并用于证明该方法的有效性。

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