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Fitting Wind Speed to a Two Parameter Distribution Model Using Maximum Likelihood Estimation Method

机译:使用最大似然估计方法将风速拟合到两个参数分配模型

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Kenya is among the countries that are continuously investing in wind energy to meet her electricity demand. Kenya is working towards its vision 2030 of achieving a total of 2GW of energy from wind industry. To achieve this, there is a need that all the relevant data on wind characteristics must be available. The purpose of this study is, therefore, to find the most efficient two-parameter model for fitting wind speed distribution for Narok County in Kenya, using the maximum likelihood method. Hourly wind speed data collected for a period of three years (2016 to 2018) from five sites within Narok County was used. Each of the distribution's parameters was estimated and then a suitability test of the parameters was conducted using the goodness of fit test statistics, Kolmogorov-Smirnov, and Anderson-Darling. An efficiency test was determined using the Akaike's Information Criterion (AIC) and the Bayesian Information Criterion (BIC) values, with the best decision taken based on the distribution having a smaller value of AIC and BIC. The results showed that the best distributions were the gamma distribution with the shape parameter of 2.47634 and scale parameter of 1.25991, implying that gamma distribution was the best distribution for modeling Narok County wind speed data.
机译:肯尼亚是在不断投资风能的国家之一,以满足她的电力需求。肯尼亚正在努力实现2030年,以实现来自风力行业的2GW能源。为实现这一目标,必须有需要的所有相关数据都可以使用。因此,本研究的目的是使用最大似然法找到肯尼亚的纳罗县风速分布的最有效的双参数模型。每小时风速数据从纳洛克县的五个站点中收集三年(2016年至2018年)。估计每个分布的参数,然后使用适合测试统计,Kolmogorov-Smirnov和Anderson-Darling的善良进行参数的适用性测试。使用Akaike的信息标准(AIC)和贝叶斯信息标准(BIC)值确定效率测试,基于具有较小值AIC和BIC的分布的最佳决定。结果表明,最佳分布是伽玛分布,带有2.47634的形状参数和1.25991的比例参数,这意味着伽玛分布是纳里科县风速数据建模的最佳分配。

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