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High-Bandwidth Distributed Virtual-Inertia Converters for AC Microgrids

机译:用于交流微电网的高带宽分布式虚拟惯性转换器

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In the modern power grid, the increasing level of penetration of renewable energy generation is creating a need for the augmentation of power system inertia as conventional synchronous machines are unable to provide this feature alone. Virtual synchronous generators (VSGs) make power converters to emulate the dynamic frequency response of traditional synchronous generators. In this paper, the emulated virtual inertia of a VSG is applied to improve the frequency response of a model predictive-controlled (MPC) distributed AC microgrid (MG) system. The simulated proposed control was demonstrated to be effective for high-inertia frequency response and high bandwidth voltage tracking after the occurrence of sudden active power and reactive power load changes at the common bus of the MG system.
机译:在现代电网中,可再生能源发电的普及程度不断提高,因此需要增加电力系统的惯性,因为常规同步电机无法单独提供此功能。虚拟同步发电机(VSG)使电源转换器模拟传统同步发电机的动态频率响应。在本文中,VSG的仿真虚拟惯性被用于改善模型预测控制(MPC)分布式交流微电网(MG)系统的频率响应。在MG系统的公共总线上突然出现有功功率和无功功率负载变化后,仿真的拟议控制方法被证明对高惯性频率响应和高带宽电压跟踪有效。

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