Hybrid renewable energy systems for energy security using optimization technique

A. Afzal, H. Kumar, V. Sharma
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引用次数: 7

Abstract

The initial cost of a stand-alone renewable energy (RE) option is higher than a conventional fuel-driven engine, but has less or negligible operating cost. Due to advantages of RE on the technology reliability and cost front, system designers are looking for ways to combine both generators - renewable and fossil fuel based into one system known as hybrid power system. Therefore, hybrid power system is used to reduce the dependency either on conventional energy or RE systems (RES). This paper deals with the sizing, generator running hours, sensitivity analysis, optimization, and green house gas (GHG) emission. For this purpose two different locations have been selected where feasibility of hybrid renewable energy systems (HRES) is analyzed for the same load demand using different suitable RES. One site is a small remote community of Amini in Lakshadweep Islands, located in southern India in the Arabian Sea, where solar or wind energy is always available throughout the year to provide energy security. Another place is a rural township of Hathras, in northern Indian State of Uttar Pradesh, where agricultural biomass is found in abundance for whole year. For optimizing and simulating the system requirements, practical data is used in the HOMER software of National Renewable Energy laboratory, USA.
混合可再生能源系统的能源安全优化技术
一个独立的可再生能源(RE)选项的初始成本比传统的燃料驱动发动机高,但运行成本更低或可以忽略不计。由于可再生能源在技术可靠性和成本方面的优势,系统设计师正在寻找将可再生能源和化石燃料发电机结合到一个称为混合动力系统的系统中的方法。因此,混合动力系统被用于减少对传统能源或可再生能源系统(RES)的依赖。本文讨论了机组规模、机组运行时数、灵敏度分析、优化和温室气体排放等问题。为此,选择了两个不同的地点,使用不同的合适的可再生能源系统来分析混合可再生能源系统(HRES)的可行性,以满足相同的负载需求。一个地点是位于印度南部阿拉伯海的Lakshadweep群岛的Amini小偏远社区,那里全年都有太阳能或风能提供能源安全。另一个地方是印度北方邦北部的哈特拉斯镇,那里的农业生物质全年都很丰富。为了优化和模拟系统需求,采用了美国国家可再生能源实验室的HOMER软件中的实际数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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