微电网
能源管理系统
风力发电
能源管理
光伏系统
可再生能源
时间范围
柴油发电机
数学优化
计算机科学
电力系统仿真
储能
工程类
经济调度
运筹学
控制工程
汽车工程
电力系统
柴油
能量(信号处理)
电气工程
功率(物理)
数学
物理
统计
量子力学
作者
Fausto Calderón-Obaldía,Amjad M Anvari-Moghaddam,Josep M Guerrero,Jordi Badosa,Anne Migan‐Dubois,Vincent Bourdin
标识
DOI:10.1109/tsg.2012.2231440
摘要
A novel energy management system (EMS) based on a rolling horizon (RH) strategy for a renewable-based microgrid is proposed. For each decision step, a mixed integer optimization problem based on forecasting models is solved. The EMS provides online set points for each generation unit and signals for consumers based on a demand-side management (DSM) mechanism. The proposed EMS is implemented for a microgrid composed of photovoltaic panels, two wind turbines, a diesel generator and an energy storage system. A coherent forecast information scheme and an economic comparison framework between the RH and the standard unit commitment (UC) are proposed. Solar and wind energy forecasting are based on phenomenological models with updated data. A neural network for two-day-ahead electric consumption forecasting is also designed. The system is tested using real data sets from an existent microgrid in Chile (ESUSCON). The results based on different operation conditions show the economic sense of the proposal. A full practical implementation of the system for ESUSCON is envisioned.
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