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Optimum design of hybrid renewable energy systems: Overview of different approaches

机译:混合可再生能源系统的最佳设计:不同方法的概述

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Public awareness of the need to reduce global warming and the significant increase in the prices of conventional energy sources have encouraged many countries to provide new energy policies that promote the renewable energy applications. Such renewable energy sources like wind, solar, hydro based energies, etc. are environment friendly and have potential to be more widely used. Combining these renewable energy sources with back-up units to form a hybrid system can provide a more economic, environment friendly and reliable supply of electricity in all load demand conditions compared to single-use of such systems. One of the most important issues in this type of hybrid system is to optimally size the hybrid system components as sufficient enough to meet all load requirements with possible minimum investment and operating costs. There are many studies about the optimization and sizing of hybrid renewable energy systems since the recent popular utilization of renewable energy sources. In this concept, this paper provides a detailed analysis of such optimum sizing approaches in the literature that can make significant contributions to wider renewable energy penetration by enhancing the system applicability in terms of economy.
机译:公众意识到减少全球变暖的必要性以及常规能源价格的大幅上涨,鼓励了许多国家提供促进可再生能源应用的新能源政策。这样的可再生能源,例如风能,太阳能,水能等,对环境友好,并有可能被更广泛地使用。与一次性使用此类系统相比,将这些可再生能源与备用单元结合在一起形成混合系统可以在所有负载需求条件下提供更经济,环境友好和可靠的电力供应。这种类型的混合系统中最重要的问题之一是优化混合系统组件的大小,使其足以满足所有负载需求,同时可能需要最小的投资和运营成本。自从最近广泛使用可再生能源以来,已有许多关于混合可再生能源系统的优化和规模确定的研究。在这种概念下,本文对此类最佳尺寸确定方法进行了详细分析,这些方法可以通过提高系统在经济方面的适用性来为更广泛的可再生能源渗透做出重大贡献。

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