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Selection Method for Kernel Function in Nonparametric Extrapolation Based on Multicriteria Decision-Making Technology

机译:基于多铁路决策技术的非参数外推的核函数的选择方法

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摘要

Selecting the most appropriate kernel function to extrapolate a load set is the paramount step in compiling load spectrum, as it affects the results of nonparametric extrapolation largely. Aiming at this issue, this paper provides a new approach in selecting kernel function for the nonparametric extrapolation. To solve the complexity and uncertainty of nonparametric extrapolation, characteristics of four kernel functions and their effects on the results are explained in the “from-to” diagram obtained by rainflow counting. Multicriteria decision-making (MCDM) is then applied to solve the selection problem of kernel function. To evaluate the dispersion degrees of the mean and amplitude of a load set accurately, their range, standard deviation, and interquartile range are selected as the evaluation criteria. The weight of each criterion, which represents the impact degree on the selection of the kernel function, is calculated separately using the eigenvector and entropy method. The comprehensive weights are obtained by applying the optimization theory and Jaynes’ maximum entropy principle. Finally, the importance of each criterion is discussed according to their calculated comprehensive weights, and the selection method for kernel functions is obtained, which is illustrated by extrapolating the output torque of the power split device of hybrid electrical vehicles.
机译:选择最合适的内核功能以推断负载集是编译负载频谱的最重要步骤,因为它影响了非参数外推的结果。针对此问题,本文提供了一种在选择非参数外推的内核功能的新方法。为了解决非参数外推的复杂性和不确定性,在通过雨流程计数获得的“从至”图中,解释了四个内核功能的特征及其对结果的影响。然后应用多标准决策(MCDM)以解决内核功能的选择问题。为了评估精确地设置载荷的平均值和幅度的分散度,选择它们的范围,标准偏差和胎面范围作为评估标准。每个标准的权重,其代表核心函数选择对核心函数的影响程度,是用特征向量和熵方法分别计算的。通过应用优化理论和jaynes的最大熵原理来获得全面的重量。最后,根据其计算的综合权重讨论了每个标准的重要性,获得了内核功能的选择方法,通过外推混合动力电气车辆的输出扭矩来示出。

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