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Dual-axis tracked vs. fixed PV: Energetic response of one-year testing period in Romania

机译:双轴跟踪与固定PV:罗马尼亚一年测试期的能量响应

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摘要

The purpose of the current paper is to present and analyze the energetic results obtained from a stand-alone photovoltaic system, consisting of two differently orientated PV modules, over a period of one year of functioning. One of the modules is being pseudo-equatorially oriented along two axes based on an annual orientation program which will be described in the paper. The second PV module is installed on a fixed and optimally tilted frame orientated towards South. The paper also describes the electrical and the monitoring system used for measuring the parameters of the electrical energy produced. In the end of the paper a comparative analysis is made regarding the energetic response of the two tested photovoltaic systems in the geographical and meteorological conditions of the Braşov, Romania location during three most relevant day types (sunny, normal and cloudy days). Two main conclusions can be stated: firstly, non-deterministic orientation programs need to be developed, able to adapt themselves to the instantaneous ratio between direct and diffuse solar radiation; and secondly, the resistance of the consumer has the main role in transforming the whole incident solar radiation into electricity or only a part of it resulting in the need of using control systems capable of adapting the consumer resistance to the maximal power of the PV module.
机译:本文的目的是介绍和分析从独立的光伏系统获得的能量结果,该系统由两个不同方向的光伏模块组成,运行一年。其中一个模块是根据年度定位程序沿两个轴伪赤道定位的,该程序将在本文中进行介绍。第二个PV模块安装在朝向南方的固定且倾斜最佳的框架上。本文还介绍了用于测量所产生电能参数的电力和监控系统。最后,对三种最相关的白天类型(晴天,正常和阴天),在罗马尼亚布拉索夫的地理和气象条件下,对这两个经过测试的光伏系统的能量响应进行了比较分析。可以得出两个主要结论:首先,需要开发非确定性的定向程序,使其能够适应直接和间接太阳辐射之间的瞬时比率。其次,用户的电阻在将整个入射太阳辐射转换成电能或仅将其一部分转化方面具有主要作用,导致需要使用能够使用户的电阻适应PV模块最大功率的控制系统。

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