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PV Utilization Analysis for a Canadian Small Arctic PV-Diesel Hybrid Microgrid

机译:加拿大小北极PV-柴油杂交微电网的PV利用分析

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Canadian remote arctic communities are mostly supplied electricity by diesel generators. The electricity price in these communities is high due mostly to the transportation cost of the diesel fuel to these remote locations. A large portion of the financial budget from the government or local community is allocated to cover the electricity cost. Diesel power plants are also major emitters of greenhouse gases (GHGs). The annual solar photovoltaic (PV) potential in the Canadian arctic region ranges from 850 to 1150 kWh/kWp. Therefore, a significant portion of the community energy requirement can be supplied by PV systems thus reducing diesel fuel consumption and associated GHG emissions. This paper presents the impact of PV integration on the system annual energy performance at various levels of PV penetration. The modelling of a typical small arctic PV-Diesel hybrid microgrid is addressed with the specifications of a small representative community. The PV utilization analysis establishes the low PV penetration regime up to 40% of peak load. Then two technical alternatives are presented that allow medium PV penetration up to 70% of peak load with associated PV energy contribution up to 23% of the community energy requirement.
机译:加拿大远程北极社区主要由柴油发电机提供电力。这些社区的电价大多是柴油燃料的运输成本到这些远程位置。政府或地方社区的一大部分财务预算被分配,以涵盖电力成本。柴油发电厂也是温室气体(GHG)的主要发射器。加拿大北极地区的年度太阳能光伏(PV)电位从850到1150 kWh / kWp。因此,可以通过PV系统提供群组能源需求的重要部分,从而减少柴油燃料消耗和相关的温室气体排放。本文介绍了PV集成对各级PV渗透率的系统年能绩效的影响。典型的小北极PV-柴油杂交微电网的建模与小型代表群落的规格进行了解决。光伏利用率分析建立了低于峰值负荷的低至40%的低光伏渗透制度。然后提出了两种技术替代方案,使培养基PV渗透高达70%的峰值负荷,PV能量贡献高达23%的社区能源需求。

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