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Photovoltaic and Diesel Power Plant Optimization for Isolated Island

机译:隔离岛的光伏和柴油发电厂优化

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Photovoltaic (PV) and Diesel Generator (DG) hybrid power plant system could be one of the solutions to increase the renewable energy share and to reduce the fuel consumption in isolated Island. Especially in Indonesia, where most of the island supplied by DG. The goal of this study is to have the optimized solution of the PV Diesel system without a battery in Nusa Penida Island. It is assumed that new PV without a battery will be installed to work with six existing DG with a capacity of 1600 kW each to cover an average of 112 MWh/day load. By having the irradiance data, load data, diesel, and PV specification, the optimization can be done in HOMER Pro software. The sensitivity analysis is focused on the minimum load ratio where in this study it ranges from 25% to 80%. The result shows that the optimized PV size for the system is 6150 kW and it could cover 21% of the load, while the DG covers 79% of the total load. The sensitivity analysis indicates that different minimum load ratio affects the overall system performance. In the simple case shown, the different number of DG minimum load ratios can reduce fuel consumption by 5%.
机译:光伏(PV)和柴油发电机(DG)混合发电厂系统可以是增加可再生能源份额的解决方案之一,并降低孤立岛中的燃料消耗。特别是在印度尼西亚,其中大多数岛屿由DG提供。本研究的目的是在没有Nusa Penida岛的电池中具有PV柴油系统的优化解决方案。假设没有电池的新型PV将安装使用六个现有的DG,其容量为1600 kW,平均覆盖112米/天负荷。通过辐照数据,负载数据,柴油和PV规范,可以在Homer Pro软件中完成优化。灵敏度分析专注于本研究中的最小载荷比率,其范围为25%至80%。结果表明,系统的优化PV尺寸为6150千瓦,它可以覆盖载荷的21%,而DG占总负载的79%。灵敏度分析表明,不同的最小负荷比率影响整体系统性能。在所示的简单情况下,不同数量的DG最小负载比可以将燃料消耗降低5%。

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