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首页> 外文期刊>Canadian Journal of Forest Research >Comparison of taper functions applied to eucalypts of varying genetics in Brazil: application and evaluation of the penalized mixed spline approach
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Comparison of taper functions applied to eucalypts of varying genetics in Brazil: application and evaluation of the penalized mixed spline approach

机译:对巴西不同遗传学桉树桉树术的比较:惩罚混合清晰曲线方法的应用与评价

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摘要

Taper functions have been widely used with an existing array of model forms and methods; however, comparisons of contrasting statistical methods have been more limited. This study aimed to assess contrasting statistical approaches for achieving accurate stem taper and individual-tree volume predictions, with a focus on the novel penalized mixed spline (PMS) approach. The approaches were tested using four different eucalyptus genetic families planted in Brazil. For comparison, the predictions of diameter outside bark (dob) and volume using a 5th-degree polynomial, the polynomial of integer and fractional powers, a segmented taper function, a variable exponent taper function, and a semi-parametric PMS were conducted. Comparisons using the generalized functions of every stem taper function with genetic family as an extra random component were also conducted. Data splitting was used to test the accuracy of each taper function. PMS and the generalized PMS were the most accurate for both dob and volume, while the generalized PMS approach displayed more stable volume predictions along the stem. The other approaches were more variable across the tree size classes examined. Overall, this study highlights the applicability of the PMS methodology for predicting tree taper and volume that warrants future assessment and application.
机译:锥度的功能已被广泛用于现有的模型形式和方法阵列;然而,对比度统计方法的比较已经更有限。本研究旨在评估对比实现精确茎锥度和个体树卷预测的对比统计方法,重点是新的惩罚混合样条曲线(PMS)方法。使用在巴西种植的四种不同的桉树遗传家庭进行测试。为了比较,进行使用5度多项式的直径外部树皮(DOB)和体积的预测,进行整数和分数功率,分段锥形功能,可变指数锥度和半导体PM。还进行了使用遗传家族作为额外随机组分的每种茎锥体功能的广义功能的比较。数据拆分用于测试每个锥形功能的准确性。 PMS和广义PMS对DOB和体积最准确,而广义PMS方法沿杆显示出更稳定的体积预测。在检查的树大小类中,其他方法是更具变量。总体而言,本研究强调了PMS方法的适用性,以预测认证未来评估和应用的树锥度和卷。

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