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Detailed analysis of grid connected distributed generation based hybrid system under different fault conditions

机译:不同故障条件下网格连接分布式基因混合系统的详细分析

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With the increase in population, the demand for electric power is also growing. And it cannot be fulfilled by using finite sources only. So the renewable energy sources are going to play a key role in the future. Now-a-days DGs are also used for supplying power to the consumers. DGs are connected normally to the primary distribution network. It works along with the supply from main grid, but when supply is cut off from the main grid due to some fault, these DGs operates in islanding mode. Combination of a number of DGs to form a low scale power system is called a microgrid (μ-grid). This paper involves modeling and study of grid connected distributed generation based hybrid system under different fault conditions. The modeling and simulation of hybrid PV generation system and wind generation based hybrid system has been done in this paper. And outputs of these models under different fault conditions are compared. These studies are done for two situations. First when the DGs are operating in normal condition along with the main grid. And the second situation is when the DGs are operating in islanding mode. The developed models are built in MATLAB/ SIMULINK environment.
机译:随着人口的增加,对电力的需求也在增长。只需使用有限来源就无法满足。因此,可再生能源将来会在未来发挥关键作用。现在,DGS也用于向消费者提供电力。 DGS正常连接到主要分配网络。它与主电网的电源一起使用,但由于由于某些故障而从主电网切断电源时,这些DGS在岛屿模式下运行。多个DG的组合形成低级功率系统称为MicroGrid(μ-Grid)。本文涉及在不同故障条件下基于网格连接分布式产生的混合系统的建模和研究。本文已经完成了混合PV生成系统与风力产生的混合系统的建模与仿真。比较了在不同故障条件下的这些模型的输出。这些研究是为两种情况完成的。首先,当DGS以正常条件和主网格运行时。第二种情况是当DGS在岛屿模式下运行时。开发模型内置于Matlab / Simulink环境中。

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