Techno-economic analysis of an off-grid hybrid system for a remote island in Malaysia: Malawali island, Sabah

Alvin Ming Kai See , Kamyar Mehranzamir , Shahabaldin Rezania , Negar Rahimi , Hadi Nabipour Afrouzi , Ateeb Hassan
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引用次数: 4

Abstract

As a developing country, Malaysia has always faced the problem of rural electrification in its islands. Rural islands cannot be connected to the grid as it is economically not feasible due to the low number of residents. The high greenhouse gas emission of the diesel generator is unfavorable to the residents. This study aims to assess hybrid system implementation in a remote community on Malawali island in Sabah, Malaysia, to provide the lowest price of electricity. Four scenarios, including diesel generator (DG) (A), PV/WT/Battery/DG (B), PV/Battery/DG (C), and PV/WT/Battery (D), are developed. A Techno-economic analysis is carried out to determine the most competitive system. Emissions are also observed to choose the optimum system. Results show that scenario B, with the net present cost (NPC) of 188,814$ and the cost of energy (COE) of 0.198$/kWh, is reliable in delivering the electricity required while having a reasonable cost relatively low emission. Sensitivity analysis is also carried out with different parameters to examine its effects on the system's sustainability throughout its lifetime.

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马来西亚沙巴州马拉瓦利岛离网混合系统的技术经济分析
作为一个发展中国家,马来西亚一直面临着岛屿农村电气化的问题。农村岛屿无法接入电网,因为居民数量少,在经济上不可行。柴油发电机组温室气体排放量大,对居民不利。本研究旨在评估混合系统在马来西亚沙巴州马拉瓦利岛偏远社区的实施情况,以提供最低的电价。分为柴油发电机(DG) (A)、PV/WT/Battery/DG (B)、PV/Battery/DG (C)、PV/WT/Battery (D)四种场景。通过技术经济分析来确定最具竞争力的制度。同时对排放进行观测,以选择最优系统。结果表明,方案B的净当前成本(NPC)为188,814美元,能源成本(COE)为0.198美元/千瓦时,能够可靠地提供所需的电力,同时具有合理的成本和较低的排放。采用不同参数进行敏感性分析,考察其对系统全寿命可持续性的影响。
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