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Nowadays the distributed generation is being vastly implemented due to its various advantages. It is made more promising by connecting it in parallel with a non renewable source. Normally Photo Voltaic (PV) generation gives the power required by the load. The output of the PV is varying due to various reasons like temperature, irradiation, etc. Distributed generation using micro turbine is a potential...
Recently, global attention to distributed generation (DG) is increasing due to their potential advantages and merits. Between various sources, microturbines (MTs) as one of the most reliable have a significant contribution in this regard. This paper is presented dynamic modeling of a microturbine generation (MTG) system with a new passive filter topology. MTG configuration is consists of a permanent...
In this paper, the mathematical analysis of proton exchange membrane fuel cell (PEMFC) is discussed, which is helpful to investigate the behavior and modeling of PEMFC. For the investigation of parametric effects, some of the important operating parameters such as temperature, reactants flow pressures (hydrogen and oxygen), membrane internal resistance etc. are considered. The parametric effects of...
Distributed diesel generation is still widely used to supply electric power in a variety of applications. These applications range from backup power supply systems and combined wind-diesel generation to providing power in places where grid connection is either technically impractical or financially uneconomic. Due to the ever increasing cost of diesel fuel and the environmental issues associated with...
Distributed generation (DG) technology has drawn increasing attention for its tremendous benefits to customers, utilities and the environment. Furthermore, microturbine based power generation has become the most promising DG for its excellent record of improving system stability and economy. In this paper we develop a complete mathematic model, which includes the microturbine, a permanent magnet synchronous...
This paper reports the study of dynamic behaviour of an integrated distributed generation (DG) system comprising wind turbines (WTs), solid-oxide fuel cell (SOFC) and microturbine (MT) under variable loading profile. WTs coupled to permanent magnet generators (PMGs) are combined with the SOFC and the MT to meet the total load demand. The fluctuations in the output of the WTs due to wind speed variations...
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