Generation-side power scheduling in a grid-connected DC microgrid

A. Luna, N. Díaz, L. Meng, M. Graells, J. Vasquez, J. Guerrero
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引用次数: 14

Abstract

In this paper, a constrained mixed-integer programming model for scheduling the active power supplied by the generation units in storage-based DC microgrids is presented. The optimization problem minimizes operating costs taking into account a two-stage mode operation of the energy storage system so that a more accurate model for optimization of the microgrid operation can be obtained. The model is used in a particular grid-connected DC microgrid that includes two renewable energy sources and an energy storage system which supply a critical load. The results of the scheduling process are including in simulation by establishing a MATLAB/Simulink model of the microgrid and setting several initial conditions of the state of charge of the energy storage system. As a result, we obtain reductions in costs and at the same time guarantee safe levels of state of charge to increase the life-time of the energy storage system.
并网直流微电网的发电侧电力调度
提出了基于存储的直流微电网中发电机组有功功率调度的约束混合整数规划模型。优化问题考虑了储能系统的两阶段模式运行,使运行成本最小化,从而得到更精确的微网运行优化模型。该模型应用于一个特定的并网直流微电网,该微电网包括两个可再生能源和一个提供临界负荷的储能系统。通过建立微电网的MATLAB/Simulink模型,并设置储能系统充电状态的若干初始条件,将调度过程的结果纳入仿真。因此,我们在降低成本的同时保证了安全的充电状态,从而增加了储能系统的使用寿命。
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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