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Optimal sizing of multi-generation set for off-grid rural electrification

机译:离网农村电气化的多机组优化尺寸

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This study deals with the optimal sizing of an off-grid hybrid systems with multi generation set architectures that could be used to satisfy the energy load requirements of a typical rural community. In order to assess the techno-economic feasibility and to obtain the optimal sizing of components, the economic performances of each hybrid system are compared to those achievable with a traditional stand-alone diesel supply system and with the alternative possibility of a grid extension. The designed hybrid system could include renewable sources as a photovoltaic plant, a wind turbine, as well as an energy storage system and a diesel generator. In addition, a smart energy management system able to achieve the maximum benefits from the combined operation of the different energy resources is taken into account. Different hybrid system designs are considered and, for each potential configuration, the technical aspects, costs and environmental impact are evaluated, to identify the optimal energy supply option. Sensitivity analysis are implemented on parameters typically affected by uncertainty, with the aim of assess the impact of their variation on the entire system performances.
机译:这项研究研究了具有多代发电机组体系结构的离网混合系统的最佳规模,该体系可用于满足典型农村社区的能源负荷要求。为了评估技术经济可行性并获得组件的最佳尺寸,将每个混合动力系统的经济性能与传统的独立柴油机供应系统以及可扩展电网的可替代性能进行了比较。设计的混合动力系统可以包括可再生能源,例如光伏电站,风力涡轮机,储能系统和柴油发电机。此外,还考虑了一种智能能源管理系统,该系统能够从不同能源的组合运行中获得最大收益。考虑了不同的混合动力系统设计,并针对每种可能的配置,评估了技术方面,成本和环境影响,以确定最佳的能源供应方案。对通常受不确定性影响的参数进行灵敏度分析,旨在评估其变化对整个系统性能的影响。

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