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Modelling and Analysis Fuel Cell with Battery Storage Microgrid System Based on Green Energy

机译:基于绿色能源的电池储能微电网系统对燃料电池的建模与分析

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Objectives: This study is aimed at analyzing the characteristics of an 11 kV microgrid system when connected to a combination source of fuel cell and battery storage. Methods/Statistical Analysis: To do so, Matlab Simulink software was used as simulation platform. Three types of connection were simulated which are first; fuel cell to grid, second; battery storage to grid and lastly; combination of fuel cell and battery storage to grid1. Findings: For each connection type, parameters such voltage, current, active power and reactive power are recorded when the grid is either in connected or disconnected mode. Simulation results have shown positive values of active power and reactive power which flows from the source to the grid side in both modes. Application/Improvements: This implies that the combination of fuel cell and battery storage is a reliable source for a particular constructed microgrid system to be successful. If implemented in real application, the suggested microgrid system will be a dependable alternative to supply electricity to rural areas which are too remote and unfeasible to be connected to a conventional grid system.
机译:目的:本研究旨在分析11 kV微电网系统在连接到燃料电池和蓄电池组的组合电源时的特性。方法/统计分析:为此,使用Matlab Simulink软件作为仿真平台。模拟了三种类型的连接,第一种;第二种。燃料电池到电网,第二;电池存储到电网,最后;燃料电池和蓄电池组到电网的组合1。结果:对于每种连接类型,当电网处于连接或断开模式时,都会记录电压,电流,有功功率和无功功率等参数。仿真结果显示了在两种模式下从电源流向电网侧的有功功率和无功功率为正值。应用/改进:这意味着燃料电池和蓄电池组的组合是成功构建特定的微电网系统的可靠来源。如果在实际应用中实施,建议的微电网系统将是向农村地区供电的可靠替代方案,因为农村地区太偏远且无法与常规电网系统连接。

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