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Development of new monthly global and diffuse solar irradiation estimation methodologies and comparisons

机译:制定新的每月全球和漫射太阳辐射估计方法并进行比较

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摘要

In assessing and deciding the prediction schemes of solar irradiation countrywide, better the accuracy means better the management of energy transition toward renewables. Consequently, the present study is on the development of new models to make the most accurate possible estimations of the global and diffuse solar irradiation based on ground measurements. Such analysis produces the most accurate estimations for the input of solar energy systems. This is utmost significant for deciding the investments on solar energy systems and their design periods. Turkey is a high-potent country whose solar energy market has been growing rapidly. She doesn't have adequate reliable measurement network and there is no estimation methodology developed for each and every point within its territory. Moreover, installing such a measurement system network doesn't seem to be economically feasible and technically possible, inter alia. Accordingly, this study defines a methodology to make the most accurate estimations of monthly mean daily solar irradiation on horizontal surface and its diffuse and beam components. For the global and diffuse estimations, new methodologies in linear and quadratic forms are developed, compared, and discussed. The comparison is applied by using mean bias error and root mean square error statistical comparison methods. The measured data values used for modeling and comparisons are provided from the State Meteorological Service of Turkey responsible authority for solar irradiation measurements. The results revealed that the methodologies explained in this study give very high accurate values of total solar irradiation on a horizontal surface and its diffuse component.
机译:在评估和确定全国太阳辐射的预测方案时,更好的准确性意味着更好地管理向可再生能源过渡的能源。因此,本研究正在开发新模型,以便基于地面测量对全球太阳辐射和漫射太阳辐射做出最准确的估计。此类分析可为太阳能系统的输入产生最准确的估计。这对于决定对太阳能系统及其设计周期的投资至关重要。土耳其是一个高效能的国家,其太阳能市场一直在快速增长。她没有足够的可靠的测量网络,也没有针对其范围内的每个点开发估算方法。此外,安装这样的测量系统网络似乎在经济上和技术上都不可行。因此,这项研究定义了一种方法,可以对水平面上的月平均日太阳辐射量及其扩散和光束分量进行最准确的估计。对于全局和分散估计,开发,比较和讨论了线性和二次形式的新方法。通过使用均值偏差误差和均方根误差统计比较方法进行比较。用于建模和比较的测量数据值由土耳其国家气象局负责太阳辐射测量的主管部门提供。结果表明,在这项研究中解释的方法给出了在水平表面上的总太阳辐射及其扩散分量的非常高的准确值。

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