印尼偏远离网地区混合可再生能源系统最优规模及技术经济分析

Didik Sudarmadi, I. Garniwa
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引用次数: 0

摘要

数百个离网小型电力系统位于印度尼西亚的偏远地区,由柴油发电机(DG)供电。将DG转换为可再生能源(RES)发电的计划对于提高可靠性、经济价值和环境无害性至关重要。通过对Gili Ketapang岛混合可再生能源系统(HRES)利用预可行性的简短研究,讨论了该项目的一个实例。采用Homer Pro软件进行技术经济分析和规模优化。在研究的HRES上,假设燃料成本为0.472 ${\$}$/L,得到计算结果。与现有系统相比,优化后的配置在净当前成本(NPC)、电力成本(COE)、投资回报率(ROI)、可再生比例(RF)和二氧化碳排放等指标上表现出更好的性能。该研究还提供了使用1.1 ${\$}$/L的非补贴燃料成本假设的计算。后一种结果具有不同的优化配置,其ROI和环境绩效优于前一种结果的优化配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Sizing and Techno-economic Analysis of Hybrid Renewable Energy System for Off-grid Remote Areas in Indonesia
Hundreds of off-grid small power systems are located in a remote area of Indonesia, supplied by Diesel Generator (DG). The conversion plan of DG to Renewable Energy Sources (RES) generation becomes essential in increasing reliability, economic value, and environmental soundness. An example of the project is discussed through a short study on the pre-feasibility of Hybrid Renewable Energy System (HRES) utilization in Gili Ketapang island. The study considers techno-economic analysis and size optimization by using Homer Pro software. The calculation result is obtained using an assumption of fuel cost at 0.472 ${\$}$/L on the studied HRES. The optimized configuration shows a better performance in the following indicators: net present cost (NPC), cost of electricity (COE), return on investment (ROI), renewable fraction (RF), and CO2 emission compared to the existing system. The study also provides the calculation that uses a nonsubsidized fuel cost assumption at 1.1 ${\$}$/L. The latter result has a different optimized configuration in which ROI and environmental performances are better than the optimized configuration in the previous result.
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