基于混合储能系统的直流微电网能源管理

M. Ahmed, Sufian Kuriry, M. Shafiullah, M. A. Abido
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引用次数: 6

摘要

微电网因其有效利用可再生能源而在世界范围内变得非常流行。由于主导RER的间歇性,引入不同类型的储能系统来提高微电网的可靠性、稳定性和性能。提出了一种采用混合储能系统(HESS)的直流微电网的有效控制和能量管理策略。模型微电网的主要组成部分是间歇性RER、可变负荷、HESS、备用柴油发电机和电力电子变流器。电流模式控制器设法对HESS进行充放电,以克服RER的间歇性和负载变化。提出了利用备用柴油发电机弥补RER发电不足的有效能量管理策略。此外,它还利用最大功率点跟踪器(MPPT)使光伏电站的发电量最大化。最后,本研究通过仿真验证了该系统在负载变化和RER间歇下直流电压水平不超过±5%限值的有效性。
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DC Microgrid Energy Management with Hybrid Energy Storage Systems
Microgrids are becoming very popular nowadays throughout the world as they utilize renewable energy resources (RER) effectively. Due to the intermittent nature of the dominant RER, different kind of energy storage systems are introduced to enhance reliability, stability, and performance of the microgrids. This paper presents an effective control and energy management strategy of a direct current (DC) microgrid employing hybrid energy storage systems (HESS). The main components of the modeled microgrid are intermittent RER, variable load, HESS, backup diesel generator, and power electronic converters. The current-mode controller manages to charge and discharge the HESS to overcome the intermittency of the RER and load variation. Besides, it proposes an effective energy management strategy that compensate for the energy generation shortage of the RER by utilizing the backup diesel generator. Furthermore, it maximizes the power generation from the photovoltaic (PV) plant employing maximum power point tracker (MPPT). Finally, this research verifies the effectiveness of the proposed system through simulation where the DC voltage level never crosses ± 5% limit under load variation and RER intermittency.
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