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Optimal sample size and plot size or point sampling factor based on cost-plus-loss using the Fairfield Smith relationship for plot size

机译:基于使用Fairfield Smith关系的绘图尺寸的Fairfield Smith关系,最佳样本大小或点采样系数或点采样系数

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摘要

The principle of minimizing the cost-plus-loss is used to simultaneously find optimal plot size and sample size for forest sampling using the Fairfield Smith relationship between plot size and the variance among cubic metre volumes per hectare. Loss is defined as the United States Dollar (USD) value of the expected value of the absolute value of the difference between the sample mean and true mean volumes per hectare. Under the assumption of a normal distribution, this loss is a function of the standard error of the mean. Sampling costs include USD values of fixed costs, plot measurement and establishment costs and travel costs; however, fixed costs do not affect the determination of minimum cost-plus-loss. By differentiating the cost-plus-loss function with respect to plot and sample size, equations are derived that can be used to determine plot and sample sizes that minimize cost-plus-loss. Example solutions for fixed-sized plot and point sampling are presented using costs and stumpage values typical for the southern USA. These examples indicate that the cost-plus-loss criterion results in higher rates of sampling intensity than would be typical for the southern USA for the example scenarios. However, since sampling costs under the cost-plus-loss criterion were only around half a percent of timber value, the cost-plus-loss sampling plans might be justified in cases where very precise valuations are required.
机译:最小化成本加损失的原则用于同时使用绘图大小与立方米立方米卷之间的差异之间的Fairfield Smith关系来查找最佳的绘图尺寸和样本量。损失被定义为美国美元(USD)的预期价值的绝对值的预期价值,样品均值和真正平均均值的差异。在正常分布的假设下,这种损失是平均值的标准误差的函数。采样费用包括固定成本的USD值,策划测量和建立成本和旅行费用;但是,固定成本不会影响最小成本加损失的确定。通过将成本加损失函数与图谱和样本大小区分区别,导出了方程,其可用于确定最小化成本加损失的绘图和样本尺寸。使用典型的美国南部典型的成本和Stumpage值呈现了固定尺寸图和点采样的示例解决方案。这些示例表明,成本加损失标准导致比例的采样强度的速度更高,而不是典型的示例场景。然而,由于成本加损失标准下的采样​​成本仅为木材价值的百分比左右,因此在需要非常精确的估值的情况下,成本 - 加损失计划可能是合理的。

著录项

  • 来源
    《Forestry》 |2017年第5期|共13页
  • 作者

    Lynch Thomas B.;

  • 作者单位

    Oklahoma State Univ Dept Nat Resource Ecol &

    Management Stillwater OK 74078 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业;
  • 关键词

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