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Optimization of Energy Management of a Microgrid Based on Solar-Diesel-Battery Hybrid System

机译:基于太阳能-柴油-电池混合系统的微电网能源管理优化

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Hybrid systems, which are composed of combinations of diesel generators, battery energy storage system and renewable energy resources such as photovoltaic, are outlined as a recommended approach for off grid power supply options for remote areas applications. Since these systems are not connected to an infinite source of energy, they must be well designed and controlled to satisfy the demand load. This study presents an efficient battery management strategy for the charging and discharging of the batteries in a hybrid renewable energy systems by controlling the energy flow between different components of the system. In order to simulate the developed battery management strategy, the components of the hybrid system are studied and modeled using mathematical models. During modeling of the battery storage system, the effects of aging and capacity degradation were taken into consideration. The simulation of the strategy was based on a case study, where it is validated to be functional. Finally, the optimization of the strategy has been done by working on its critical parameters.
机译:概述了由柴油发电机,电池储能系统和可再生能源(例如光伏)组成的混合系统,是偏远地区应用的离网电源选择的推荐方法。由于这些系统没有连接到无限的能源,因此必须对它们进行精心设计和控制,以满足需求负载。这项研究提出了一种有效的电池管理策略,可通过控制系统不同组件之间的能量流来对混合可再生能源系统中的电池进行充电和放电。为了模拟已开发的电池管理策略,使用数学模型对混合动力系统的组件进行了研究和建模。在电池存储系统建模期间,考虑了老化和容量降低的影响。该策略的仿真基于一个案例研究,该案例经验证可正常运行。最后,通过对策略的关键参数进行操作来完成该策略的优化。

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