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Converting existing Internal Combustion Generator (ICG) systems into HESs in standalone applications

机译:在独立应用程序中将现有的内燃发电机(ICG)系统转换为HES

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摘要

Expanding existing internal Combustion Generator (ICG) systems by combining renewable energy sources is getting popular due to global concern on emission of green house gases (GHG) and increasing fossil fuel costs. Life cycle cost, initial capital cost (ICC), power supply reliability of the system, and GHG emission by ICG are factors to be considered in this process. Pareto front of Levelized Energy Cost (LEC)-Unmet Load Fraction (ULF)-GHG emission was taken in this study for four different expansion scenarios. Furthermore, Pareto front of ICC-LE-ULF was taken for three different expansion scenarios in order to analyze the impact of renewable energy integration. The results clearly depict that characteristics of the Pareto front varies with the scale of expansion and objectives taken for the optimization. A detailed analysis was conducted for a scale up problem with a 4 kVA ICG by using the Pareto fronts obtained.
机译:由于全球对温室气体(GHG)排放的关注和化石燃料成本的上升,通过结合可再生能源来扩展现有的内部燃烧发生器(ICG)系统变得越来越普遍。生命周期成本,初始资本成本(ICC),系统的电源可靠性以及ICG排放的温室气体是此过程中要考虑的因素。在本研究中,针对四种不同的扩展方案,采用了均等化能源成本(LEC)-未满足负荷率(ULF)-GHG排放的帕累托前沿。此外,ICC-LE-ULF的Pareto前端用于三种不同的扩展方案,以分析可再生能源整合的影响。结果清楚地表明,帕累托前沿的特征随扩展规模和优化目标而变化。通过使用获得的Pareto前沿对4 kVA ICG的放大问题进行了详细分析。

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