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- W1497674633 abstract "The electric energy is directly correlated with vital elements for countries of today’s world. These elements can be divided into four sub-titles of production, national income, health and education. It is almost impossible for countries that lack of electric energy to ensure positive developments in such parameters. It is known that, even these days, at least 1.6-2 million people not to consume electricity in the world. Besides, in some countries, there exist great differences between the poor and the rich in obtaining energy (Belfkira et al., 2008). In that situation, the most benefit in the future of electricity generation sources, expected to be renewable energy sources especially solar and wind. It is also expected that the technical, economic, social and political barriers of widespread use of these resources will decline over time and these resources will own a very important share in the production of electricity at the end of this century. In this chapter, features of sustainable energy production and sustainability parameters of photovoltaic (PV) systems are summarized. This chapter focused on a life cycle cost analysis (LCCA) method that used in PV system design. In this point, apart from conventional cost analysis, calculable “external costs and benefits” are taken into account. In addition, effect of the capacity utilization (CU) on unit energy cost is explained particularly in stand-alone PV systems. Thus, detailed analysis of life cycle and unit energy costs -which the most disadvantaged parameter of PV within the parameters of sustainabilitywas, carried out. The topics discussed are supported with sample applications at the end of chapter." @default.
- W1497674633 created "2016-06-24" @default.
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- W1497674633 date "2010-11-30" @default.
- W1497674633 modified "2023-09-27" @default.
- W1497674633 title "Cost Calculation Algorithm for Photovoltaic Systems" @default.
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- W1497674633 doi "https://doi.org/10.5772/13306" @default.
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