采用分布式发电技术的孤岛住宅设计

A. Alzughayyar
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引用次数: 0

摘要

在这项研究中,我们设计了一座岛屋,它可以自己产生能量。房子配备了分布式发电资源,如微型热电联产和太阳能电池板。房子还配备了热和电缓冲器来储存产生的能量。另一项引进的技术是Power Router机器。基于孤岛住宅模型,设计了不同的配置来模拟不同的场景。模拟是针对不同的电力和热需求曲线进行的。我们使用了四种不同的需求概况,代表了四个季节。我们研究了缓冲器大小对输入和输出电量的影响。进一步的模拟和分析进行了配置和场景,包括网格连接房屋模型,以分析孤岛房屋和网格连接房屋之间的差异。在并网仿真中使用了相同的需求曲线。在这些情况下,从电网输出和输入电力是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Islanded house design using distributed generation technology
In this research we designed an islanded house which is supposed to generate its own energy. The house is equipped with distributed generation sources, like microCHP and solar panels. The house is also equipped with heat and electricity buffers to store the generated energy. Another technology which is introduced to the house is the Power Router machine. Based on the islanded house model, different configurations have been developed to simulate different scenarios. The simulation is done for different electricity and heat demand profiles. We used four different demand profiles which represents four seasons. We studied the effect of buffer sizes on the amount of the imported and exported electricity. Further simulations and analysis were carried out for configurations and scenarios that include a grid connected house model to analyse the differences between an islanded house and a grid connected house. The same demand profiles have been used in the grid connected simulation. In these scenarios it was possible to export and import electricity from grid.
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