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A novel anti islanding detection method for grid connected fuel cell power generation systems

机译:并网燃料电池发电系统的防孤岛检测新方法

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摘要

Renewable energy sources have been developed rapidly all around the world, and one of these green energy sources is hydrogen energy. The fuel cell systems have become prominent in renewable energy sources because of its minimal dimensions and energy conversion method. There have been developed, some applications, especially in domestic and automotive areas, and fuel cell systems are also have been started to use in grid connected systems. Fuel cell systems must have some electrical connection standards while they connected to an electrical grid. One of these electrical conditions and may be the most important one is unplanned islanding condition. Islanding is a very dangerous situation because it can damage to the fuel cell and related electrical systems and also working people have been at risk in islanding situation on the grid. In this study, a novel islanding detection method was introduced for grid connected fuel cell systems. 0.5 kW solid oxide fuel cell (SOFC) system used in developed experimental system and a novel anti islanding detection method was researched by using an effective method. The proposed method was also developed by using Matlab Simulink and its useful tools. The developed islanding detection method is robust, reliable and has a fast response time, according to present methods. The results confirm the suggested conditions, and it can be seen in this method, it can also be adapted easily to the grid connected fuel cell systems.
机译:可再生能源在世界范围内得到了迅速发展,其中的绿色能源之一就是氢能。燃料电池系统由于其最小的尺寸和能量转换方法而在可再生能源中变得越来越重要。已经开发了一些应用,特别是在家庭和汽车领域,并且燃料电池系统也已经开始在并网系统中使用。燃料电池系统连接到电网时必须具有一些电气连接标准。这些电气状况之一可能是最重要的一种是计划外的孤岛状况。孤岛是非常危险的情况,因为它可能损坏燃料电池和相关的电气系统,并且工作人员也面临着电网孤岛的危险。在这项研究中,一种新颖的孤岛检测方法被引入到并网的燃料电池系统中。在开发的实验系统中使用了0.5 kW的固体氧化物燃料电池(SOFC)系统,并通过一种有效的方法研究了一种新型的反孤岛检测方法。还通过使用Matlab Simulink及其有用的工具开发了该方法。根据当前方法,开发的孤岛检测方法是鲁棒的,可靠的并且具有快速的响应时间。结果证实了建议的条件,并且在该方法中可以看出,它也可以轻松地适用于并网的燃料电池系统。

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