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Economics of grid-tied household solar panel systems versus grid-only electricity

机译:并网型家用太阳能电池板系统与纯电网电的经济性

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Photovoltaic (PV) technology is available for purchase and use to provide households with electricity. The objective of this research is to determine the economic consequences of installing microgeneration grid-tied solar panel systems (4 kW; 12 kW), given alternative pricing structures for households, at five locations with different solar radiation resources. Twenty years of hourly solar radiation and temperature data, and hourly electricity use data for representative households, were obtained for each location. These data, electricity pricing rate schedules, and purchase prices and power output response functions for each solar panel system are used to address the objective. The annual household electricity cost among the five locations ranges from $845 to $1128 for smart meter rates and from $870 to $1191 for traditional accumulation meter rates. The estimated annual cost of $2148 for the least costly household grid-tied 4 kW solar panel system with net metering is two-times greater than the annual cost of purchasing from the grid. If external consequences of electricity generation and distribution are ignored, given region specific rate structures and prices, household solar panel electricity generation systems are not economically competitive in the region studied. A major finding is that the economic consequences of grid-tied household solar systems differ substantially among locations that are relatively close in proximity.
机译:可以购买和使用光伏(PV)技术来为家庭供电。这项研究的目的是确定在给定替代价格结构的家庭中,在五个具有不同太阳辐射资源的地点安装微型发电并网太阳能电池板系统(4 kW; 12 kW)的经济后果。每个位置都获得了二十年的每小时太阳辐射和温度数据以及代表家庭的每小时用电量数据。这些数据,电价表,购买价格以及每个太阳能电池板系统的功率输出响应功能均用于解决该目标。在五个地点中,智能电表费的年家庭电费范围从845美元到1128美元,传统累积电表费的家庭年电费从870美元到1911美元。成本最低的带净计量的家用并网捆绑式4 kW太阳能电池板系统的年度成本估计为2148美元,是从电网购买的年度成本的两倍。如果忽略发电和分配的外部后果,则在给定区域特定的费率结构和价格的情况下,家用太阳能电池板发电系统在所研究的区域中在经济上没有竞争力。一个主要发现是,并网的家用太阳能系统的经济后果在相对较近的位置之间存在很大差异。

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