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Isolation Microgrid Design for Remote Areas with the Integration of Renewable Energy: A Case Study of Con Dao Island in Vietnam

机译:可再生能源集成的偏远地区隔离微电网设计 - 以越南Con Dao Island为例

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In remote areas, extending a power line to the primary electricity grid can be very expensive and power losses are high, making connections to the grid almost impossible. A well-designed microgrid that integrates renewable energy resources can help remote areas reduce investment costs and power losses while providing a reliable power source. Therefore, investigating the design of an independent and economically practical microgrid system for these areas is necessary and plays an important role. This paper introduces a design procedure to design an isolated microgrid using HOMER software (HOMERPro 3.14.5) for remote areas. In Vietnam, due to the obstruction of the mountainous terrain or the isolated island location, many remote areas or islands need electrification. A simple case study of a hybrid system with a 60 kW peak load demand on Con Dao island in Vietnam is used to illustrate the proposed design method. Specifically, a hybrid system that includes a PV system, batteries, and a diesel generator is designed. To provide the full information of the designed hybrid system designed, each solution is analyzed and evaluated in detail according to the sensitivity parameters.
机译:在偏远地区,将电源线延伸到初级电网可以非常昂贵,功率损耗高,使网格连接几乎不可能。一款设计精心设计的MicroGrid,可集成可再生能源资源,可以帮助偏远地区降低投资成本和功率损耗,同时提供可靠的电源。因此,为这些区域调查独立和经济实用的微电网系统的设计是必要的,并且起到重要作用。本文介绍了一种设计程序,用于使用Homer软件(HomerPro 3.14.5)为偏远地区设计孤立的微电网。在越南,由于山地地形或孤岛地区的障碍,许多偏远地区或岛屿需要电气化。在越南Con Dao Island上具有60 kW峰值负荷需求的混合系统的简单案例研究,用于说明所提出的设计方法。具体地,设计了包括PV系统,电池和柴油发电机的混合系统。为了提供所设计的设计混合系统的全部信息,根据灵敏度参数详细分析和评估每个解决方案。

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