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3D sustainable renewable micro power station for smart grid industrial applications

机译:适用于智能电网工业应用的3D可持续可再生微型发电站

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摘要

The supply of clean energy and its security is becoming a global issue for all countries across the world, due to the limitations of fossil fuels resources usages for energy generations, the relative high dependency on imported fuels, their ever climbing prices and its environmental impacts. Power supply must increase as rapidly as demand to ensure sustained growth. This is the rationale upon which Governments, international organizations, researchers are accelerating investments in expanding the power system, its generation and transmission. This paper presents the preliminary research undertaken to design and develop a 3Dimentional (3D) sustainable renewable micro power station model for smart grid industrial applications. It introduces a solution to challenges in the energy generation sector which do not only refrain only to the safe supply of clean Energy. A major importance for the theoretical study of hybrid systems, based on renewable energy (photovoltaic, wind, hydro system) is the availability of the models that can be utilized to study the behavior of hybrid systems and most important, computer aided design simulation tools. As the available tools are quite limited, this paper would present the most current and up to date model which can be used for the simulation purposes of the 3D sustainable renewable micro power station for smart grid applications as well as for educational purposes.
机译:由于化石燃料资源在能源生产中的使用受到限制,对进口燃料的依赖程度较高,价格不断攀升及其对环境的影响,清洁能源的供应及其安全性已成为全球所有国家的全球性问题。电力供应必须与需求一样快地增长,以确保持续增长。这是各国政府,国际组织,研究人员加速投资以扩大电力系统,其发电和输电的理由。本文介绍了为智能电网工业应用设计和开发3维(3D)可持续可再生微型电站模型而进行的初步研究。它介绍了解决能源生产领域挑战的解决方案,这些挑战不仅限制了清洁能源的安全供应。基于可再生能源(光伏,风能,水力系统)的混合动力系统的理论研究的一个重要重点是模型的可用性,该模型可用于研究混合动力系统的行为以及最重要的计算机辅助设计仿真工具。由于可用工具十分有限,因此本文将介绍最新的模型,该模型可用于智能电网应用以及教育目的的3D可持续可再生微型电站的仿真目的。

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