基于电力半实物试验台的成网逆变器动态模型仿真

J. Hernandez-Alvidrez, A. Summers, M. Reno, J. Flicker, N. Pragallapati
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引用次数: 11

摘要

现代电网包括各种可再生分布式能源(DERs)作为一种策略,以遵守州和联邦机构实施的新的环境和可再生组合标准(RPSs)。通常,分布式电源包括使用电力电子(PE)接口与电网进行交互。最近,这种相互作用不仅集中在提供最大可用能量上,而且还集中在支持电网在异常条件下,如低电压/频率条件或非单位功率因数。在过去的几年中,电网跟随逆变器(gfli)在提供住宅或公用事业规模的辅助电网支持服务时已经证明了它们的价值。然而,随着DERs穿透水平的提高和系统惯性的减小,电网形成逆变器(GFMIs)的使用正在获得动力。在异常运行条件下,gfmi具有无需协调控制就能平衡负载的内在能力,能够更好地保持电网的稳定性。为了获得并提出GFMI与实时仿真接口的基本见解,本文使用电源硬件在环(PHIL)仿真试验台分析了两种不同GFMI仿真模型在稳定性和负载变化方面的动态。
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Simulation of Grid-Forming Inverters Dynamic Models using a Power Hardware-in-the-Loop Testbed
Modern power grids include a variety of renewable Distributed Energy Resources (DERs) as a strategy to comply with new environmental and renewable portfolio standards (RPSs) imposed by state and federal agencies. Typically, DERs include the use of power electronic (PE) interfaces to interact with the power grid. Recently this interaction has not only been focused on supplying maximum available energy, but also on supporting the power grid under abnormal conditions such as low voltage/frequency conditions or non-unity power factor. Over the last few years, grid-following inverters (GFLIs) have proven their value while providing these ancillary grid-support services either at residential or utility scale. However, the use of grid-forming inverters (GFMIs) is gaining momentum as the penetration-level of DERs increases and system inertia decreases. Under abnormal operating conditions, GFMIs tend to better preserve grid stability due to their intrinsic ability to balance loads without the aid of coordination controls. In order to gain and propose fundamental insights into the interfacing of GFMIs to real time simulation, this paper analyzes the dynamics of two different GFMI simulation models in terms of stability and load changes using a Power Hardware-in-the-Loop (PHIL) simulation testbed.
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