基于可再生能源的分散式发电系统的能源管理

A. Tani, M. Camara, B. Dakyo
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引用次数: 18

摘要

多源系统中的直流分布似乎是一个合理的解决方案,因为提供的能量是几个源的直流形式,如光伏板(PV)、电池和超级电容器。此外,建筑物中使用的电子设备的主要部分使用直流电流,例如计算机,空调和多媒体。在此基础上,提出了一种分布式发电系统的能量管理方法。所研究的系统包括可再生能源(风能和光伏板),能量存储设备(锂电池和超级电容器),用于柴油发电机行为仿真的可编程直流电源,以及模拟建筑物电能消耗的电子负载。与以往的研究不同,本文提出的控制方法侧重于根据电源的动态响应及其可用性对住宅微电网进行能量管理。通过仿真和实验验证了该方法的性能,并将其应用于住宅微电网。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy management in the decentralized generation systems based on renewable energy sources
The DC distribution in the multisource systems seems to be a reasonable solution because the supplied energy is in the DC form for several sources, such as the photovoltaic panels (PV), the batteries, and the Ultracapacitors. Additionally, the major parts of the used electronics devises in the buildings operate with the DC current, such as computers, air conditioning, and multimedia. Based on these remarks, the authors propose an energy management method for the decentralized energy generation systems. The studied system includes the renewable energy sources (wind energy, and photovoltaic panels), the energy storage devices (lithium-battery, and Ultracapacitors), a programmable DC-Source for the Diesel generator behavior emulation, and the electronics load which emulate the electrical energy consumption in the building. Contrary to the previously works, the proposed control method is focused on the residential micro-grid energy management according to the dynamic responses of the sources and their availability. The performances of the method are evaluated through some simulations and the experimental tests, dedicated to residential micro-grid applications.
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