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Comparative analysis of Weibull parameters for wind data measured from met-mast and remote sensing techniques

机译:气象台风和遥感技术测得的威布尔参数的对比分析

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AbstractThe remote sensing techniques are gaining attention worldwide for the comprehensive assessment of wind resource in flat, complex, and mountainous terrain. This paper presents an attempt to increase the confidence on remote sensing technique to compute Weibull parameters at higher heights for assessment of wind energy resource. The measurement campaign was conducted at Kayathar, Tamil Nadu, India. The 10 min average time series wind speed data for the period of one month (September 2014) were recorded simultaneously at 80 m and 100 m using cup anemometer installed in the proximity of 120 m meteorological mast, Second Wind Triton SODAR (Sound Detection and Ranging) and Continuous-wave wind LIDAR (Light Detection and Ranging). The data obtained from this measurement were analyzed and Weibull parameters were evaluated using nine different methods. The applicability of nine methods for calculation of Weibull parameters is analyzed based on statistical analysis i.e. Root Mean Square Error Test, Coefficient of Determination, Mean Absolute Percentage Error, and Chi-square Test for both measuring techniques. This study also shows the performance of remote sensing technology by comparing with result obtained from met mast. The outcome of this study is expected to encourage the deployment of remote sensing techniques at Indian sites.Graphical abstractDisplay OmittedHighlightsEstimation of Weibull parameter by nine different methods at higher heights is presented.The performance of nine methods at higher heights is examined based on statistical indicators.Remote sensing instruments SODAR and LIDAR based measured data is used for analysis.The performance of remote sensing instrument is presented.Comparing with met mast measurement, SODAR instrument shows better performance compared to LIDAR.
机译: 摘要 遥感技术在平坦,复杂和多山的地形上对风资源进行综合评估正在引起全球关注。本文提出了一种尝试,以提高对遥感技术的信心,以在更高的高度计算威布尔参数以评估风能资源。测量活动是在印度泰米尔纳德邦的Kayathar进行的。使用安装在120 m气象桅杆附近的风速计,第二风Triton SODAR(声音检测和测距)在80 m和100 m处同时记录一个月(2014年9月)的10分钟平均时间序列风速数据)和连续波风激光雷达(光检测和测距)。分析了从该测量获得的数据,并使用九种不同方法评估了威布尔参数。基于统计分析,即两种测量技术的均方根均方根检验,测定系数,绝对绝对百分比误差和卡方检验,分析了九种计算威布尔参数的方法的适用性。通过与从气象桅杆获得的结果进行比较,该研究还显示了遥感技术的性能。预期这项研究的结果将鼓励在印度站点上部​​署遥感技术。 图形摘要 省略显示< / ce:simple-para> 突出显示 将Weibull参数的估算值减9更高的方法 根据统计指标检查了九种方法在更高高度上的性能。 基于SODAR和LIDAR的遥感仪器的测量数据用于分析。 介绍了遥感仪器的性能。 与气象桅杆测量相比,SODAR仪器的性能优于LIDAR。

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