Cooperative Control of Flywheel Energy Storage System and Diesel Generator for Frequency Regulation of Microgrids Using Digital FIR Filters

M. Faraji, M. S. Mahdavi, G. B. Gharehpetian, Roya Ahmadiahangar, A. Rosin
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Abstract

In islanded microgrids (MGs), due to the low level of inertia, it is particularly important to establish a balance between the power generation and consumption at any moment. Any power imbalance in an islanded MG can increase or decrease the frequency and even cause instability. This problem has led to ever-increasing attention to energy storage systems (ESSs) to control the frequency and voltage of MGs. One of the most important ESSs in MGs is the Flywheel Energy Storage System (FESS). In this study, a cooperative control system is proposed for FESS and diesel generator emulator to control the frequency of an islanded MG. Considering a sudden load change, a new frequency distribution-based digital control system is proposed to share the required power between diesel generator and FESS. The proposed method is able to automatically assign high and low frequency terms of the mismatch power to FESS and diesel generator, respectively. To evaluate the performance of the proposed control scheme, simulation results are carried out using MATLAB/Simulink software, while a programmable load emulator is employed for dynamic load emulation. To confirm the performance of the proposed method, the simulation results are also tested with a real-time simulator.
基于数字FIR滤波器的飞轮储能系统与柴油发电机协同控制微电网调频
在孤岛微电网(MGs)中,由于惯性水平低,在任何时刻建立发电和用电之间的平衡尤为重要。孤岛MG中的任何功率不平衡都可能增加或减少频率,甚至导致不稳定。这一问题引起了人们对储能系统(ess)的关注,以控制mg的频率和电压。飞轮储能系统(FESS)是MGs中最重要的储能系统之一。本文提出了一种FESS与柴油发电机仿真器的协同控制系统,以控制孤岛MG的频率。针对负荷的突然变化,提出了一种基于频率分布的数字控制系统,实现了柴油发电机与FESS的功率共享。该方法能够自动将失配功率的高频项和低频项分别分配给FESS和柴油发电机。为了评估所提出的控制方案的性能,使用MATLAB/Simulink软件进行了仿真,并使用可编程负载模拟器进行了动态负载仿真。为了验证所提方法的性能,还在实时模拟器上对仿真结果进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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